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skills/partnerprof-guide/references/composer_catalog.json
220 KB · Sep 30, 2026 · 23:11 UTC
{
"cml_ax_profiles": [
{
"key": "targeted_generic",
"label_cs": "Cílová interpretace",
"label_en": "Targeted interpretation",
"mode": "target"
},
{
"key": "combinatorial_objective",
"label_cs": "Kombinatorický cíl",
"label_en": "Combinatorial objective",
"mode": "objective"
},
{
"key": "quantum_energy",
"label_cs": "Energie / vlastní hodnota",
"label_en": "Energy / eigenvalue",
"mode": "energy"
},
{
"key": "quantum_phase",
"label_cs": "Fáze / QPE",
"label_en": "Phase / QPE",
"mode": "phase"
},
{
"key": "quantum_time_evolution",
"label_cs": "Časová evoluce",
"label_en": "Time evolution",
"mode": "trajectory"
},
{
"key": "quantum_correlation",
"label_cs": "Korelace / Bell-CHSH",
"label_en": "Correlation / Bell-CHSH",
"mode": "correlation"
},
{
"key": "quantum_tunneling",
"label_cs": "Tunelování / bariéra",
"label_en": "Tunnelling / barrier",
"mode": "projection"
},
{
"key": "combinatorial_packed_objective",
"label_cs": "Velký kombinatorický cíl",
"label_en": "Packed large combinatorial objective",
"mode": "objective"
}
],
"cml_ax_selection": "automatic_from_problem_family; explicit override is accepted only when the family allows that profile",
"demo": {
"enabled": true,
"limits": {
"cml_q_gain_max": 0.25,
"max_auto_clones": 14,
"max_concurrent_runs": 24,
"max_constraints": 48,
"max_dimension": 65539,
"max_mesh_points": 100000,
"max_request_bytes": 1048576,
"max_runtime_s": 600,
"max_steps": 100000,
"max_variables": 24
}
},
"dimension_policy": {
"default": 64,
"max": 65536,
"min": 4,
"mode": "exact_bounded_slice"
},
"encoding": {
"ai_interpretation": false,
"candidate_local_realities": "explicit_non_ranked_blocks_in_remaining_vector_capacity",
"constraint_block_size": 8,
"constraint_layout": "immediately_after_variable_blocks",
"failure_contract": "FAIL(G)=(C_fail,V_fail,H_break); fields are never fabricated when the core does not expose them",
"goal_block_size": 8,
"goal_semantic": "goal_admissible_iff_coherent_continuation_exists_from_current_reality; rules remain fixed",
"header_slots": 16,
"invariant_block_size": 8,
"layer_block_size": 16,
"max_constraints": 128,
"max_goals": 64,
"max_invariants": 256,
"max_layers": 32,
"max_relations": 256,
"max_variables": 96,
"optimization_objectives": [
"cost",
"custom",
"distance",
"energy",
"none",
"risk",
"time"
],
"question_and_optimization_excluded_from_evo_vector": true,
"question_modes": [
"ADMISSIBILITY",
"CONFLICT_DIAGNOSTIC",
"FULL_CYCLE",
"NEAREST_ADMISSIBLE_GOAL",
"REALIZATION"
],
"relation_block_size": 8,
"text_projection": false,
"unused_slots": "explicit_schema_zero",
"variable_block_size": 12,
"worker_gate_semantic": "worker_request_is_deferred_until_E_EvO(G|H_t)=1"
},
"geometries": [
{
"code": 1,
"help_cs": "Běžný pravoúhlý prostor. Hodí se pro délky, polohy, směry a většinu laboratorních úloh.",
"icon": "⌗",
"key": "cartesian",
"label_cs": "Kartézský prostor x, y, z"
},
{
"code": 2,
"help_cs": "Pole se popisuje hlavně vzdáleností od středu a směrem.",
"icon": "◎",
"key": "radial",
"label_cs": "Radiální / kulový prostor"
},
{
"code": 3,
"help_cs": "Vhodné pro cívky, válce a systémy se společnou osou.",
"icon": "↕",
"key": "axial",
"label_cs": "Osově souměrné pole"
},
{
"code": 4,
"help_cs": "Hlavní proměnnou je čas a změny stavu v čase.",
"icon": "◷",
"key": "temporal",
"label_cs": "Časový průběh"
},
{
"code": 5,
"help_cs": "Pro úlohy, kde není důležitá konkrétní geometrie prostoru.",
"icon": "◇",
"key": "abstract",
"label_cs": "Obecné stavové pole"
},
{
"code": 6,
"help_cs": "Konečná výpočetní výseč bez předepsaných sousedností a bez globální hranice prostoru.",
"help_en": "A finite computational slice with no prescribed neighbourhood topology and no claimed global boundary.",
"icon": "∞",
"key": "unbounded_slice",
"label_cs": "Výseč neohraničeného prostoru bez topologie",
"label_en": "Finite slice of unbounded topology-free space"
}
],
"ok": true,
"operator_manifest": {
"equations": [
"E_EvO(G|H_t)=1 iff exists Gamma: R_t ~> G",
"G in Omega(H_t) iff coherent continuation exists from current realized reality",
"E_EvO asks JE TO PRIPUSTNE?; Worker asks JAK TO REALIZOVAT?",
"Gamma* = argmin_{Gamma in P(R_t,G)} J(Gamma), only if E_EvO=1",
"FAIL(G)=(C_fail,V_fail,H_break)",
"forall k C_k(G)=1 and no Gamma:R_t~>G => UNREACHABLE_FROM_CURRENT_REALITY",
"G* = argmin_{G' in Omega(H_t)} d(G',G)",
"C_(t+1)=C_t"
],
"input_contract": [
"current_reality",
"local_realities",
"relations",
"constraints",
"invariants",
"realized_history",
"declared_goal",
"question_mode",
"worker_optimization_request_optional"
],
"name_cs": "Evoluční operátor přípustných stavů nad aktuální realitou",
"name_en": "Evolutionary operator of admissible states over current reality",
"negative_results": {
"DIRECT_CONFLICT": "one or more explicit C_k(G)=0",
"UNREACHABLE_FROM_CURRENT_REALITY": "isolated G satisfies local constraints but no coherent continuation exists from the realized history/current reality"
},
"output_contract": [
"goal_admissibility",
"negative_class_if_any",
"FAIL(C_fail,V_fail,H_break)_when_proven",
"worker_gate",
"realization_result_only_after_worker",
"nearest_admissible_goal_only_when_requested_and_supported"
],
"principle_cs": "Přípustnost cíle není totožná se splněním jeho izolovaných lokálních omezení. Cíl G je přípustný právě tehdy, když ze současné realizované reality R_t v poli H_t existuje alespoň jedna koherentní návaznost k G. Existence cesty neznamená, že EvO tuto cestu počítá. Worker smí optimalizovat realizaci až po kladném výsledku EvO.",
"principle_en": "Goal admissibility is not the same as satisfying isolated local constraints. G is admissible exactly when at least one coherent continuation from the current realized reality R_t to G exists in H_t. Existence does not mean EvO computes that path. A Worker may optimize realization only after EvO returns admissible.",
"symbols": {
"C": "fixed rules, conditions and invariants",
"C_fail": "conflicting constraints",
"G": "declared goal",
"Gamma": "a coherent realization path whose existence is tested, not necessarily materialized by EvO",
"H_break": "point/context where coherent continuation ceases when exposed by the core",
"H_t": "current shared field including realized history/context",
"Omega(H_t)": "admissible states of the current field",
"P(R_t,G)": "admissible realization paths available to Worker after EvO admission",
"R_t": "current realized reality",
"V_fail": "relations causing or carrying the conflict when exposed by the core"
},
"worker_rule": "Worker never receives a realization/optimization task before E_EvO(G|H_t)=1"
},
"presets": [
{
"compute_slice": {
"extent": 1e-13,
"initial_perturbation": 0.2,
"max_steps": 10000,
"pixel_grain": 1e-15,
"resolution": 1e-15,
"step_size": 1e-15,
"timeout_s": 60
},
"constraints": [],
"description_cs": "Přednastavené číselné pole pro ověření přípustné realizace průchodu přes energetickou bariéru. Nejde o slovní úlohu ani o AI odhad.",
"description_en": "Preset numeric field demonstrating a tunnelling configuration across an energy barrier. It is a structured numeric input, not a word problem or an AI estimate.",
"dimension": 128,
"explanation_cs": {
"input": "Aktuální vzdálenost jader je 8 fm, efektivní šířka bariéry 5 fm, výška bariéry 400 keV a teplota 100 MK. Cílem je zjistit, zda pole připouští pokračování k oblasti rₙ ≤ 5 fm.",
"result_rule": "CML rozhoduje pouze o přípustnosti realizace v zadaném poli. Kladný stav není automaticky důkazem dosažení cíle. CML_Ax může po realizaci zobrazit samostatnou WKB projekci tunelování; tato projekce výsledek CML_A nemění.",
"title": "Co demonstrační úloha ověřuje"
},
"explanation_en": {
"input": "Current nuclear distance 8 fm, effective barrier width 5 fm, barrier height 400 keV, and temperature 100 MK. The declared target region is rₙ ≤ 5 fm.",
"result_rule": "The primary result is the public CML state for the exact approved field. Goal attainment is reported separately. A WKB projection is shown only when the returned audit contains its numeric parameters.",
"title": "What the demonstration verifies"
},
"geometry": "unbounded_slice",
"goals": [
{
"confirmed": true,
"op": "<=",
"unit": "fm",
"value": "5",
"variable": "nuclear_distance"
}
],
"invariants": [],
"key": "quantum_tunneling_demo",
"label_cs": "Kvantové tunelování — demonstrační zadání",
"label_en": "Quantum tunnelling — default demonstration input",
"optimization": {
"custom": "",
"objective": "none"
},
"problem_family": "quantum_tunneling",
"question": {
"mode": "ADMISSIBILITY"
},
"relations": [
{
"bidirectional": false,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "nuclear_distance",
"target": "barrier_energy",
"weight": 1.0
},
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
"relation": "couples",
"source": "barrier_width",
"target": "nuclear_distance",
"weight": 1.0
}
],
"variables": [
{
"confirmed": true,
"key": "nuclear_distance",
"max": "20",
"min": "1",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "observed",
"unit": "fm",
"value": "8"
},
{
"confirmed": true,
"key": "barrier_width",
"max": "10",
"min": "1",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "fm",
"value": "5"
},
{
"confirmed": true,
"key": "barrier_energy",
"max": "800",
"min": "100",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "keV",
"value": "400"
},
{
"confirmed": true,
"key": "temperature",
"max": "200000000",
"min": "10000000",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "observed",
"unit": "K",
"value": "100000000"
}
]
},
{
"cml_ax": {
"profile": "combinatorial_objective"
},
"compute_slice": {
"extent": 1,
"initial_perturbation": 0.2,
"max_steps": 128,
"pixel_grain": 0.01,
"resolution": 0.01,
"step_size": 0.01,
"timeout_s": 30
},
"constraints": [],
"description_cs": "Pět uzlů a šest hran podle IBM QAOA tutorialu; cílem je jediný řez C≥5.",
"description_en": "Five nodes and six edges from the IBM QAOA tutorial; target is one cut with C≥5.",
"dimension": 512,
"geometry": "unbounded_slice",
"goals": [
{
"confirmed": true,
"op": ">=",
"unit": "edge",
"value": "5",
"variable": "cut5_value"
}
],
"invariants": [],
"key": "ibm_maxcut_5_demo",
"label_cs": "IBM Max-Cut 5 — přímé srovnání",
"label_en": "IBM Max-Cut 5 — direct comparison",
"optimization": {
"custom": "",
"objective": "none"
},
"problem_family": "ibm_maxcut_5",
"question": {
"mode": "REALIZATION"
},
"relations": [
{
"bidirectional": false,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "cut5_x0",
"target": "cut5_x1",
"weight": 1
},
{
"bidirectional": false,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "cut5_x0",
"target": "cut5_x2",
"weight": 1
},
{
"bidirectional": false,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "cut5_x0",
"target": "cut5_x4",
"weight": 1
},
{
"bidirectional": false,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "cut5_x1",
"target": "cut5_x2",
"weight": 1
},
{
"bidirectional": false,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "cut5_x2",
"target": "cut5_x3",
"weight": 1
},
{
"bidirectional": false,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "cut5_x3",
"target": "cut5_x4",
"weight": 1
}
],
"variables": [
{
"confirmed": true,
"key": "cut5_x0",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "bit",
"value": "0"
},
{
"confirmed": true,
"key": "cut5_x1",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "bit",
"value": "0"
},
{
"confirmed": true,
"key": "cut5_x2",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "bit",
"value": "0"
},
{
"confirmed": true,
"key": "cut5_x3",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "bit",
"value": "0"
},
{
"confirmed": true,
"key": "cut5_x4",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "bit",
"value": "0"
},
{
"confirmed": true,
"key": "cut5_value",
"max": "6",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "edge",
"value": "0"
}
]
},
{
"cml_ax": {
"profile": "quantum_energy"
},
"compute_slice": {
"extent": 6.283185307179586,
"initial_perturbation": 0.2,
"max_steps": 128,
"pixel_grain": 0.04908738521234052,
"resolution": 0.04908738521234052,
"step_size": 0.04908738521234052,
"timeout_s": 30
},
"constraints": [],
"description_cs": "Redukovaný jednoqubitový Hamiltonián H₂ při 0.735 Å.",
"description_en": "Reduced one-qubit H₂ Hamiltonian at 0.735 Å.",
"dimension": 512,
"geometry": "unbounded_slice",
"goals": [
{
"confirmed": true,
"op": "<=",
"unit": "Ha",
"value": "-1.143476212658907",
"variable": "h2_energy"
}
],
"invariants": [],
"key": "ibm_h2_vqe_demo",
"label_cs": "IBM H₂ VQE — energie",
"label_en": "IBM H₂ VQE — energy",
"optimization": {
"custom": "",
"objective": "energy"
},
"problem_family": "quantum_vqe_h2",
"question": {
"mode": "REALIZATION"
},
"relations": [
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
"relation": "couples",
"source": "h2_theta",
"target": "h2_energy",
"weight": 1
}
],
"variables": [
{
"confirmed": true,
"key": "h2_cI",
"max": "0",
"min": "-2",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "Ha",
"value": "-1.04886087"
},
{
"confirmed": true,
"key": "h2_cZ",
"max": "0",
"min": "-2",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "Ha",
"value": "-0.7967368"
},
{
"confirmed": true,
"key": "h2_cX",
"max": "1",
"min": "-1",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "Ha",
"value": "0.18121804"
},
{
"confirmed": true,
"key": "h2_nuclear_repulsion",
"max": "2",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "Ha",
"value": "0.71997"
},
{
"confirmed": true,
"key": "h2_theta",
"max": "3.141592653589793",
"min": "-3.141592653589793",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "rad",
"value": "0"
},
{
"confirmed": true,
"key": "h2_energy",
"max": "0",
"min": "-2",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "Ha",
"value": "-1.0"
}
]
},
{
"cml_ax": {
"profile": "quantum_phase"
},
"compute_slice": {
"extent": 1,
"initial_perturbation": 0.2,
"max_steps": 64,
"pixel_grain": 0.015625,
"resolution": 0.015625,
"step_size": 0.015625,
"timeout_s": 30
},
"constraints": [],
"description_cs": "Binární zpřesnění fáze 1/6 na 35 bitů.",
"description_en": "Binary refinement of phase 1/6 to 35 bits.",
"dimension": 512,
"geometry": "unbounded_slice",
"goals": [
{
"confirmed": true,
"op": ">=",
"unit": "bit",
"value": "35",
"variable": "qpe_bits_resolved"
},
{
"confirmed": true,
"op": "<=",
"unit": "fraction",
"value": "2.9103830456733704e-11",
"variable": "qpe_error"
}
],
"invariants": [],
"key": "ibm_qpe_35_demo",
"label_cs": "IBM QPE — φ=1/6, 35 bitů",
"label_en": "IBM QPE — φ=1/6, 35 bits",
"optimization": {
"custom": "",
"objective": "none"
},
"problem_family": "quantum_qpe_phase",
"question": {
"mode": "FULL_CYCLE"
},
"relations": [
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
"relation": "couples",
"source": "qpe_prefix",
"target": "qpe_phase_estimate",
"weight": 1
},
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
"relation": "opposes",
"source": "qpe_phase_estimate",
"target": "qpe_error",
"weight": 1
}
],
"variables": [
{
"confirmed": true,
"key": "qpe_phase",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "fraction",
"value": "0.16666666666666666"
},
{
"confirmed": true,
"key": "qpe_bits",
"max": "52",
"min": "1",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "fixed",
"unit": "bit",
"value": "35"
},
{
"confirmed": true,
"key": "qpe_bits_resolved",
"max": "52",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "observed",
"unit": "bit",
"value": "0"
},
{
"confirmed": true,
"key": "qpe_prefix",
"max": "34359738367",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "observed",
"unit": "code",
"value": "0"
},
{
"confirmed": true,
"key": "qpe_phase_estimate",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "observed",
"unit": "fraction",
"value": "0"
},
{
"confirmed": true,
"key": "qpe_error",
"max": "1",
"min": "0",
"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "observed",
"unit": "fraction",
"value": "0.16666666666666666"
}
]
},
{
"cml_ax": {
"profile": "quantum_correlation"
},
"compute_slice": {
"extent": 2,
"initial_perturbation": 0.2,
"max_steps": 64,
"pixel_grain": 0.01,
"resolution": 0.01,
"step_size": 0.01,
"timeout_s": 30
},
"constraints": [],
"description_cs": "Korelační úloha s cílem |S|≥2.8.",
"description_en": "Correlation task targeting |S|≥2.8.",
"dimension": 256,
"geometry": "unbounded_slice",
"goals": [
{
"confirmed": true,
"op": ">=",
"unit": "value",
"value": "2.8",
"variable": "chsh_s"
}
],
"invariants": [],
"key": "ibm_chsh_demo",
"label_cs": "Bell/CHSH — kvantová mez",
"label_en": "Bell/CHSH — quantum bound",
"optimization": {
"custom": "",
"objective": "none"
},
"problem_family": "quantum_chsh",
"question": {
"mode": "REALIZATION"
},
"relations": [
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
"relation": "couples",
"source": "chsh_e00",
"target": "chsh_s",
"weight": 1.0
},
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
"relation": "couples",
"source": "chsh_e01",
"target": "chsh_s",
"weight": 1.0
},
{
"bidirectional": true,
"confirmed": true,
"origin": "system_preset",
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"previous_value": "",
"state": "bounded",
"unit": "count",
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{
"confirmed": true,
"key": "mc156_w02",
"max": "4294967295",
"min": "0",
"origin": "system_preset",
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"previous_value": "",
"state": "bounded",
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{
"confirmed": true,
"key": "mc156_w03",
"max": "4294967295",
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"origin": "system_preset",
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"previous_value": "",
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{
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"key": "mc156_w04",
"max": "4294967295",
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"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
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{
"confirmed": true,
"key": "mc156_cut",
"max": "234",
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"previous_value": "",
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{
"confirmed": true,
"key": "mc156_step",
"max": "1000",
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"origin": "system_preset",
"prefilled": true,
"previous_value": "",
"state": "bounded",
"unit": "count",
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]
}
],
"problem_families": [
{
"code": 1,
"domain": "custom",
"equation_note_cs": "Běžná referenční rovnice mechaniky. Je pouze orientační; CML ani CML_A se jí neřídí.",
"icon": "⚙",
"key": "mechanics",
"label_cs": "Mechanika",
"reference_equation": "F = m · a",
"task_type": "CUSTOM_SCIENTIFIC_MODEL"
},
{
"code": 2,
"domain": "custom",
"equation_note_cs": "Běžná referenční Maxwellova rovnice. Slouží jen k porovnání s klasickým postupem; není řídicí rovnicí CML/CML_A.",
"icon": "⌁",
"key": "electromagnetism",
"label_cs": "Elektřina a magnetismus",
"reference_equation": "∇×B = μ₀J + μ₀ε₀ ∂E/∂t",
"task_type": "CUSTOM_SCIENTIFIC_MODEL"
},
{
"code": 3,
"domain": "custom",
"equation_note_cs": "Běžný klasický vztah pro teplo. PartnerProf jej zobrazuje jako referenci, ne jako předpis pro CML_A.",
"icon": "♨",
"key": "thermal",
"label_cs": "Teplo a termodynamika",
"reference_equation": "Q = m · c · ΔT",
"task_type": "CUSTOM_SCIENTIFIC_MODEL"
},
{
"code": 4,
"domain": "materials",
"equation_note_cs": "Typický termodynamický vztah používaný při posuzování stavů materiálu. CML/CML_A používají vlastní nastavení.",
"icon": "◇",
"key": "materials",
"label_cs": "Materiály",
"reference_equation": "G = H − T · S",
"task_type": "MATERIAL_DISCOVERY"
},
{
"code": 5,
"domain": "condensed_matter",
"equation_note_cs": "Běžná podmínka fázové rovnováhy. Je zobrazena jen jako klasická reference.",
"icon": "◫",
"key": "phase",
"label_cs": "Fázové stavy",
"reference_equation": "G₁(T,P) = G₂(T,P)",
"task_type": "PHASE_TRANSITION_MAP"
},
{
"code": 6,
"domain": "metrology",
"equation_note_cs": "Obecný klasický model měření. Neurčuje evoluci CML_A.",
"icon": "⌖",
"key": "metrology",
"label_cs": "Měření a kalibrace",
"reference_equation": "y = f(x, p)",
"task_type": "METROLOGY_CALIBRATION"
},
{
"code": 7,
"domain": "cosmology",
"equation_note_cs": "Referenční Friedmannův vztah. CML a CML_A se jím při svém výpočtu neřídí.",
"icon": "◎",
"key": "cosmology",
"label_cs": "Kosmologie",
"reference_equation": "H² = (8πG/3)ρ − k/a²",
"task_type": "COSMOLOGY_FIT"
},
{
"code": 8,
"domain": "custom",
"equation_note_cs": "Obecný symbolický zápis klasické úlohy. Není to náhradní solver ani předpis pro CML_A.",
"icon": "∑",
"key": "custom",
"label_cs": "Obecné číselné pole",
"reference_equation": "F(x, c) = 0",
"task_type": "CUSTOM_SCIENTIFIC_MODEL"
},
{
"cml_ax_profile": "combinatorial_objective",
"code": 24,
"domain": "quantum",
"equation_note_cs": "Rovnice jsou klasická/standardní referenční formulace stejného problému. Umožňují kontrolovat význam vstupů a výsledku, ale neurčují realizaci EvO.",
"equation_note_en": "These are the conventional/reference equations for the same problem. They make the meaning of the inputs and result auditable, but they do not prescribe the EvO realization.",
"icon": "✂",
"key": "ibm_maxcut_4",
"label_cs": "IBM Max-Cut – 4 uzly",
"label_en": "IBM Max-Cut – 4 nodes",
"reference_equation": "C(x) = Σ_(i,j)∈E [xᵢ + xⱼ − 2xᵢxⱼ]",
"reference_equations": [
{
"equation": "C(x) = Σ_(i,j)∈E [xᵢ + xⱼ − 2xᵢxⱼ]",
"meaning_cs": "Počet hran vedoucích mezi dvěma částmi řezu.",
"meaning_en": "Counts edges crossing between the two partitions.",
"name_cs": "Cílová funkce Max-Cut",
"name_en": "Max-Cut objective"
},
{
"equation": "Ĥ_C = 1/2 Σ_(i,j)∈E (I − ZᵢZⱼ)",
"meaning_cs": "Běžný kvantový zápis stejné kombinatorické cílové funkce.",
"meaning_en": "Standard quantum representation of the same combinatorial objective.",
"name_cs": "QAOA nákladový Hamiltonián",
"name_en": "QAOA cost Hamiltonian"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_time_evolution",
"code": 20,
"domain": "condensed_matter",
"equation_note_cs": "Rovnice jsou klasická/standardní referenční formulace stejného problému. Umožňují kontrolovat význam vstupů a výsledku, ale neurčují realizaci EvO.",
"equation_note_en": "These are the conventional/reference equations for the same problem. They make the meaning of the inputs and result auditable, but they do not prescribe the EvO realization.",
"icon": "ψ",
"key": "quantum",
"label_cs": "Kvantová simulace",
"label_en": "Quantum simulation",
"reference_equation": "iℏ ∂ψ/∂t = Ĥψ",
"reference_equations": [
{
"equation": "iℏ ∂ψ/∂t = Ĥψ",
"meaning_cs": "Standardní časový vývoj kvantového stavu.",
"meaning_en": "Standard time evolution of a quantum state.",
"name_cs": "Časová Schrödingerova rovnice",
"name_en": "Time-dependent Schrödinger equation"
},
{
"equation": "U(t) = exp(−iĤt/ℏ)",
"meaning_cs": "Běžný formální zápis časového kroku uzavřeného systému.",
"meaning_en": "Conventional formal time step for a closed quantum system.",
"name_cs": "Unitární propagátor",
"name_en": "Unitary propagator"
},
{
"equation": "⟨A⟩ = ⟨ψ|Â|ψ⟩",
"meaning_cs": "Standardní převod kvantového stavu na měřitelnou střední hodnotu.",
"meaning_en": "Standard mapping from a quantum state to an observable expectation.",
"name_cs": "Střední hodnota pozorovatelné",
"name_en": "Observable expectation value"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_tunneling",
"code": 21,
"domain": "nuclear",
"equation_note_cs": "Rovnice jsou klasická/standardní referenční formulace stejného problému. Umožňují kontrolovat význam vstupů a výsledku, ale neurčují realizaci EvO.",
"equation_note_en": "These are the conventional/reference equations for the same problem. They make the meaning of the inputs and result auditable, but they do not prescribe the EvO realization.",
"icon": "☀",
"key": "fusion_plasma",
"label_cs": "Jaderná fúze a plazma",
"label_en": "Nuclear fusion and plasma",
"reference_equation": "T ≈ exp(−2∫κ(r)dr)",
"reference_equations": [
{
"equation": "T ≈ exp(−2∫κ(r)dr)",
"meaning_cs": "Klasická semiklasická aproximace průchodu bariérou.",
"meaning_en": "Classical semiclassical approximation for barrier penetration.",
"name_cs": "WKB tunelování",
"name_en": "WKB tunnelling"
},
{
"equation": "κ(r) = √(2μ[V(r)−E]) / ℏ",
"meaning_cs": "Lokální útlum pod bariérou.",
"meaning_en": "Local under-barrier attenuation factor.",
"name_cs": "Lokální κ",
"name_en": "Local κ"
},
{
"equation": "R = n₁n₂⟨σv⟩ / (1 + δ₁₂)",
"meaning_cs": "Běžný plazmový vztah pro četnost fúzních reakcí.",
"meaning_en": "Conventional plasma relation for fusion-reaction rate.",
"name_cs": "Objemová reakční rychlost",
"name_en": "Volumetric reaction rate"
}
],
"task_type": "FUSION_PLASMA_MODEL"
},
{
"cml_ax_profile": "quantum_tunneling",
"code": 22,
"domain": "nuclear",
"equation_note_cs": "Rovnice jsou klasická/standardní referenční formulace stejného problému. Umožňují kontrolovat význam vstupů a výsledku, ale neurčují realizaci EvO.",
"equation_note_en": "These are the conventional/reference equations for the same problem. They make the meaning of the inputs and result auditable, but they do not prescribe the EvO realization.",
"icon": "⇥",
"key": "quantum_tunneling",
"label_cs": "Kvantové tunelování",
"label_en": "Quantum tunnelling",
"reference_equation": "κ = √(2μ(V₀−E)) / ℏ",
"reference_equations": [
{
"equation": "κ = √(2μ(V₀−E)) / ℏ",
"meaning_cs": "Určuje exponenciální útlum v obdélníkové bariéře.",
"meaning_en": "Sets exponential attenuation in a rectangular barrier.",
"name_cs": "Koeficient pod bariérou",
"name_en": "Under-barrier coefficient"
},
{
"equation": "T ≈ exp(−2κa)",
"meaning_cs": "Klasická aproximace pravděpodobnosti průchodu bariérou.",
"meaning_en": "Classical approximation of barrier transmission.",
"name_cs": "WKB transmisní koeficient",
"name_en": "WKB transmission coefficient"
},
{
"equation": "E_th ≈ 3/2 k_B T",
"meaning_cs": "Referenční převod teploty na částicovou energetickou škálu.",
"meaning_en": "Reference conversion from temperature to a particle-energy scale.",
"name_cs": "Tepelná energetická škála",
"name_en": "Thermal energy scale"
}
],
"task_type": "QUANTUM_TUNNELING"
},
{
"cml_ax_profile": "quantum_energy",
"code": 23,
"domain": "materials",
"equation_note_cs": "Rovnice jsou klasická/standardní referenční formulace stejného problému. Umožňují kontrolovat význam vstupů a výsledku, ale neurčují realizaci EvO.",
"equation_note_en": "These are the conventional/reference equations for the same problem. They make the meaning of the inputs and result auditable, but they do not prescribe the EvO realization.",
"icon": "⬡",
"key": "quantum_material",
"label_cs": "Kvantové materiály a grafen",
"label_en": "Quantum materials and graphene",
"reference_equation": "Ĥψ = Eψ",
"reference_equations": [
{
"equation": "Ĥψ = Eψ",
"meaning_cs": "Standardní vlastní úloha kvantového materiálu.",
"meaning_en": "Standard eigenvalue problem for a quantum material.",
"name_cs": "Stacionární Schrödingerova rovnice",
"name_en": "Stationary Schrödinger equation"
},
{
"equation": "E_±(k) ≈ ±ℏ v_F |k|",
"meaning_cs": "Referenční lineární disperze v okolí Diracova bodu.",
"meaning_en": "Reference linear dispersion near a Dirac point.",
"name_cs": "Nízkenergetická disperze grafenu",
"name_en": "Low-energy graphene dispersion"
}
],
"task_type": "QUANTUM_MATERIAL_MODEL"
},
{
"cml_ax_profile": "combinatorial_objective",
"code": 25,
"domain": "ibm_maxcut_5",
"equation_note_cs": "Standardní formulace stejné Max-Cut úlohy; EvO realizaci neurčuje dosazením do této rovnice.",
"equation_note_en": "Standard formulation of the same Max-Cut task; EvO does not choose the realization by simply evaluating this equation.",
"icon": "✂",
"key": "ibm_maxcut_5",
"label_cs": "IBM Max-Cut – 5 uzlů",
"label_en": "IBM Max-Cut – 5 nodes",
"reference_equation": "C(x) = Σ_(i,j)∈E [xᵢ + xⱼ − 2xᵢxⱼ]",
"reference_equations": [
{
"equation": "C(x) = Σ_(i,j)∈E [xᵢ + xⱼ − 2xᵢxⱼ]",
"meaning_cs": "Počet hran mezi dvěma částmi řezu.",
"meaning_en": "Number of edges crossing the partition.",
"name_cs": "Cílová funkce Max-Cut",
"name_en": "Max-Cut objective"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_energy",
"code": 26,
"domain": "quantum_vqe_h2",
"equation_note_cs": "Jednoqubitová redukovaná VQE formulace H₂ pro přímé srovnání s IBM. Rovnice udržuje kandidátní reality fyzikálně konzistentní; realizaci vybírá EvO.",
"equation_note_en": "One-qubit reduced H₂ VQE formulation for direct IBM comparison. The equation keeps candidate realities physically consistent; EvO selects the realization.",
"icon": "H₂",
"key": "quantum_vqe_h2",
"label_cs": "H₂ – energie základního stavu",
"label_en": "H₂ ground-state energy",
"reference_equation": "E(θ)=c_I+c_Z cosθ+c_X sinθ+E_nn",
"reference_equations": [
{
"equation": "Ĥ = c_I I + c_Z Z + c_X X",
"meaning_cs": "IBM používá pro demonstraci H₂ jednoqubitový Hamiltonián po redukci symetrie.",
"meaning_en": "IBM uses a one-qubit H₂ Hamiltonian after symmetry reduction.",
"name_cs": "Redukovaný Hamiltonián H₂",
"name_en": "Reduced H₂ Hamiltonian"
},
{
"equation": "E(θ)=c_I+c_Z cosθ+c_X sinθ+E_nn",
"meaning_cs": "Pro stav R_y(θ)|0⟩ dává očekávanou celkovou energii v Hartree.",
"meaning_en": "For R_y(θ)|0⟩ gives the total expectation energy in Hartree.",
"name_cs": "Energie kandidátního stavu",
"name_en": "Candidate-state energy"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_phase",
"code": 27,
"domain": "quantum_qpe_phase",
"equation_note_cs": "Fázový profil sleduje binární zpřesňování jediného výsledku. CML_Ax ověřuje výslednou fázi a bitovou přesnost.",
"equation_note_en": "The phase profile tracks binary refinement toward one result. CML_Ax validates the resulting phase and bit precision.",
"icon": "φ",
"key": "quantum_qpe_phase",
"label_cs": "Kvantový odhad fáze – QPE",
"label_en": "Quantum phase estimation – QPE",
"reference_equation": "U|ψ⟩ = e^{2πiφ}|ψ⟩",
"reference_equations": [
{
"equation": "U|ψ⟩ = e^{2πiφ}|ψ⟩",
"meaning_cs": "QPE hledá φ z vlastní hodnoty unitárního operátoru.",
"meaning_en": "QPE estimates φ from the unitary eigenvalue.",
"name_cs": "Vlastní fáze",
"name_en": "Eigenphase"
},
{
"equation": "φ_m = 0.b₁b₂…b_m",
"meaning_cs": "Každý další bit zpřesňuje interval fáze.",
"meaning_en": "Each additional bit refines the phase interval.",
"name_cs": "Binární odhad",
"name_en": "Binary estimate"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_time_evolution",
"code": 28,
"domain": "quantum_time_evolution",
"equation_note_cs": "Pokračující simulace: každý realizovaný chronon se stává stavem dalšího kroku až do koncového času/cíle.",
"equation_note_en": "Continuing simulation: each realized chronon becomes the state for the next step until terminal time/goal.",
"icon": "⏱",
"key": "quantum_time_evolution",
"label_cs": "Kvantová časová evoluce",
"label_en": "Quantum time evolution",
"reference_equation": "U(t)=exp(−iĤt/ℏ)",
"reference_equations": [
{
"equation": "U(t)=exp(−iĤt/ℏ)",
"meaning_cs": "Standardní kvantový propagátor.",
"meaning_en": "Standard quantum propagator.",
"name_cs": "Unitární časový vývoj",
"name_en": "Unitary time evolution"
},
{
"equation": "⟨A(t)⟩=⟨ψ(t)|Â|ψ(t)⟩",
"meaning_cs": "Měřená trajektorie pozorovatelné.",
"meaning_en": "Observable trajectory.",
"name_cs": "Střední hodnota",
"name_en": "Expectation value"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_correlation",
"code": 29,
"domain": "quantum_chsh",
"equation_note_cs": "Korelační profil vrací konkrétní CHSH hodnotu a její vztah ke klasické mezi 2 a Tsirelsonově mezi 2√2.",
"equation_note_en": "Correlation profile returns the concrete CHSH value and its relation to the classical bound 2 and Tsirelson bound 2√2.",
"icon": "≋",
"key": "quantum_chsh",
"label_cs": "Bell / CHSH korelace",
"label_en": "Bell / CHSH correlations",
"reference_equation": "S = E(a,b)+E(a,b′)+E(a′,b)−E(a′,b′)",
"reference_equations": [
{
"equation": "S = E₀₀+E₀₁+E₁₀−E₁₁",
"meaning_cs": "Kombinuje čtyři korelace dvou měřicích nastavení.",
"meaning_en": "Combines four correlations from two measurement settings per side.",
"name_cs": "CHSH parametr",
"name_en": "CHSH parameter"
},
{
"equation": "|S| ≤ 2√2",
"meaning_cs": "Maximální kvantová hodnota.",
"meaning_en": "Maximum quantum value.",
"name_cs": "Tsirelsonova mez",
"name_en": "Tsirelson bound"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_energy",
"code": 30,
"domain": "quantum_vqe_pauli2",
"equation_note_cs": "EvO dostává Hamiltonián a pouze práh publikovaného IBM hardware výsledku. Přesná vlastní energie není součástí schváleného výpočetního pole.",
"equation_note_en": "EvO receives the Hamiltonian and only the published IBM hardware-result threshold. The exact eigenvalue is not part of the approved compute field.",
"icon": "H₂q",
"key": "quantum_vqe_pauli2",
"label_cs": "IBM 2-qubit Pauli VQE – slepá výzva",
"label_en": "IBM 2-qubit Pauli VQE – blind challenge",
"reference_equation": "H = 0.398 YZ − 0.398 ZI − 0.0113 ZZ + 0.181 XX",
"reference_equations": [
{
"equation": "H=0.398YZ−0.398ZI−0.0113ZZ+0.181XX",
"meaning_cs": "Stejný dvouqubitový Hamiltonián jako v IBM VQE výukové úloze.",
"meaning_en": "The same two-qubit Hamiltonian used in IBM’s VQE learning workload.",
"name_cs": "Pauli Hamiltonián",
"name_en": "Pauli Hamiltonian"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "quantum_time_evolution",
"code": 31,
"domain": "quantum_xxz_10",
"equation_note_cs": "EvO dostává IBM Hamiltonián, Néelův počáteční stav a koncový čas. Referenční ⟨ZZ⟩ není součástí vstupu; porovnává se až po běhu.",
"equation_note_en": "EvO receives the IBM Hamiltonian, Néel initial state, and final time. The reference ⟨ZZ⟩ is absent from the input and compared only after the run.",
"icon": "XXZ",
"key": "quantum_xxz_10",
"label_cs": "IBM XXZ 10-site – slepá časová evoluce",
"label_en": "IBM XXZ 10-site – blind time evolution",
"reference_equation": "H=Σ[Jᵢ/2(XX+YY)+Jᵢ ZZ], |ψ₀⟩=|1010101010⟩",
"reference_equations": [
{
"equation": "H=Σ[Jᵢ/2 XᵢXᵢ₊₁ + Jᵢ/2 YᵢYᵢ₊₁ + Jᵢ ZᵢZᵢ₊₁]",
"meaning_cs": "IBM 10-site instance se seed=0 a devíti zveřejněnými vazbami.",
"meaning_en": "IBM 10-site instance with seed=0 and nine published couplings.",
"name_cs": "XXZ Hamiltonián",
"name_en": "XXZ Hamiltonian"
}
],
"task_type": "QUANTUM_SIMULATION"
},
{
"cml_ax_profile": "combinatorial_packed_objective",
"code": 32,
"domain": "ibm_maxcut_156",
"equation_note_cs": "Přesně zveřejněná IBM/Q-CTRL instance: 156 uzlů, 234 hran, optimum 210.",
"equation_note_en": "Exact IBM/Q-CTRL published instance: 156 nodes, 234 edges, optimum 210.",
"icon": "156",
"key": "ibm_maxcut_156",
"label_cs": "IBM Max-Cut 156 — utility-scale",
"label_en": "IBM Max-Cut 156 — utility-scale",
"reference_equation": "max Σ_(i,j∈E) [x_i ≠ x_j], G=random_regular_graph(3,156,seed=8)",
"reference_equations": [
{
"equation": "max Σ_(i,j∈E) (x_i+x_j−2x_ix_j)",
"meaning_cs": "Stejný graf jako IBM/Q-CTRL benchmark.",
"meaning_en": "Same graph as the IBM/Q-CTRL benchmark.",
"name_cs": "Max-Cut",
"name_en": "Max-Cut"
}
],
"task_type": "OPTIMIZATION"
}
],
"schema": "PartnerProf-Reality/1.1",
"variables": [
{
"canonical_unit": "m",
"code": 1,
"default_max": 1000.0,
"default_min": 0.0,
"domains": [
"mechanics",
"electromagnetism",
"thermal",
"materials",
"custom"
],
"help": {
"effect_cs": "Mění geometrii zadaného stavu.",
"reality_cs": "Omezuje, kde a v jakém měřítku může realizace existovat.",
"result_cs": "Změna délky mění prostor přípustných stavů.",
"what_cs": "Udává velikost nebo vzdálenost v prostoru."
},
"icon": "↔",
"key": "length",
"kind": "scalar",
"label_cs": "Délka",
"symbol": "ℓ",
"units": [
{
"code": 1,
"factor": 1.0,
"key": "m",
"label": "m",
"offset": 0.0
},
{
"code": 2,
"factor": 0.01,
"key": "cm",
"label": "cm",
"offset": 0.0
},
{
"code": 3,
"factor": 0.001,
"key": "mm",
"label": "mm",
"offset": 0.0
},
{
"code": 4,
"factor": 1000.0,
"key": "km",
"label": "km",
"offset": 0.0
}
]
},
{
"canonical_unit": "s",
"code": 2,
"default_max": 1000000000.0,
"default_min": 0.0,
"domains": [
"mechanics",
"electromagnetism",
"thermal",
"metrology",
"cosmology",
"custom"
],
"help": {
"effect_cs": "Přidává časovou souřadnici nebo omezuje dobu realizace.",
"reality_cs": "Vymezuje, kdy je stav přípustný.",
"result_cs": "Může změnit dosažitelný stav i jeho časové umístění.",
"what_cs": "Určuje okamžik nebo délku trvání děje."
},
"icon": "◷",
"key": "time",
"kind": "scalar",
"label_cs": "Čas",
"symbol": "t",
"units": [
{
"code": 10,
"factor": 1.0,
"key": "s",
"label": "s",
"offset": 0.0
},
{
"code": 11,
"factor": 0.001,
"key": "ms",
"label": "ms",
"offset": 0.0
},
{
"code": 12,
"factor": 60.0,
"key": "min",
"label": "min",
"offset": 0.0
},
{
"code": 13,
"factor": 3600.0,
"key": "h",
"label": "h",
"offset": 0.0
}
]
},
{
"canonical_unit": "kg",
"code": 3,
"default_max": 1000000000.0,
"default_min": 0.0,
"domains": [
"mechanics",
"thermal",
"materials",
"custom"
],
"help": {
"effect_cs": "Mění setrvačné a energetické vlastnosti stavu.",
"reality_cs": "Určuje část reality spojenou s hmotností objektu.",
"result_cs": "Ovlivňuje realizace závislé na hmotnosti a energii.",
"what_cs": "Udává množství hmoty zadaného objektu."
},
"icon": "▣",
"key": "mass",
"kind": "scalar",
"label_cs": "Hmotnost",
"symbol": "m",
"units": [
{
"code": 20,
"factor": 1.0,
"key": "kg",
"label": "kg",
"offset": 0.0
},
{
"code": 21,
"factor": 0.001,
"key": "g",
"label": "g",
"offset": 0.0
},
{
"code": 22,
"factor": 1e-06,
"key": "mg",
"label": "mg",
"offset": 0.0
}
]
},
{
"canonical_unit": "K",
"code": 4,
"default_max": 1000000000.0,
"default_min": 0.0,
"domains": [
"thermal",
"materials",
"phase",
"cosmology",
"custom"
],
"help": {
"effect_cs": "Mění energetické podmínky zadaného pole.",
"effect_en": "Sets the thermal condition represented in the approved field.",
"reality_cs": "Vymezuje teplotní oblast, ve které hledáme realizaci.",
"reality_en": "Defines the temperature regime in which admissibility is evaluated.",
"result_cs": "Může rozhodnout, zda je daný stav za zadaných podmínek vůbec přípustný.",
"result_en": "It remains an explicit input condition; a new physical temperature is not inferred from vector coordinates without a declared decoder.",
"what_cs": "Udává tepelný stav prostředí nebo objektu.",
"what_en": "Measured or fixed thermodynamic temperature of the current environment."
},
"icon": "♨",
"key": "temperature",
"kind": "scalar",
"label_cs": "Teplota",
"label_en": "Temperature",
"symbol": "T",
"units": [
{
"code": 30,
"factor": 1.0,
"key": "K",
"label": "K",
"offset": 0.0
},
{
"code": 31,
"factor": 1.0,
"key": "C",
"label": "°C",
"offset": 273.15
}
]
},
{
"canonical_unit": "Pa",
"code": 5,
"default_max": 1000000000000000.0,
"default_min": 0.0,
"domains": [
"thermal",
"materials",
"phase",
"cosmology",
"custom"
],
"help": {
"effect_cs": "Mění podmínky prostředí a rovnovážné stavy.",
"reality_cs": "Omezuje pole na stavy dosažitelné při daném tlaku.",
"result_cs": "U materiálů a fází může výrazně měnit, které realizace existují.",
"what_cs": "Udává sílu působící na jednotku plochy."
},
"icon": "⇊",
"key": "pressure",
"kind": "scalar",
"label_cs": "Tlak",
"symbol": "p",
"units": [
{
"code": 40,
"factor": 1.0,
"key": "Pa",
"label": "Pa",
"offset": 0.0
},
{
"code": 41,
"factor": 1000.0,
"key": "kPa",
"label": "kPa",
"offset": 0.0
},
{
"code": 42,
"factor": 1000000.0,
"key": "MPa",
"label": "MPa",
"offset": 0.0
},
{
"code": 43,
"factor": 1000000000.0,
"key": "GPa",
"label": "GPa",
"offset": 0.0
},
{
"code": 44,
"factor": 100000.0,
"key": "bar",
"label": "bar",
"offset": 0.0
}
]
},
{
"canonical_unit": "kg/m³",
"code": 6,
"default_max": 1000000000000.0,
"default_min": 0.0,
"domains": [
"mechanics",
"materials",
"cosmology",
"custom"
],
"help": {
"effect_cs": "Mění lokální stav hmoty v poli.",
"reality_cs": "Vymezuje materiálové nebo prostorové stavy podle hustoty.",
"result_cs": "Mění realizace závislé na rozložení hmoty.",
"what_cs": "Udává hmotnost obsaženou v jednotce objemu."
},
"icon": "ρ",
"key": "density",
"kind": "scalar",
"label_cs": "Hustota",
"symbol": "ρ",
"units": [
{
"code": 50,
"factor": 1.0,
"key": "kg_m3",
"label": "kg/m³",
"offset": 0.0
},
{
"code": 51,
"factor": 1000.0,
"key": "g_cm3",
"label": "g/cm³",
"offset": 0.0
}
]
},
{
"canonical_unit": "A",
"code": 7,
"default_max": 1000000000.0,
"default_min": -1000000000.0,
"domains": [
"electromagnetism",
"custom"
],
"help": {
"effect_cs": "Přidává elektrický zdroj do popisu stavu.",
"reality_cs": "Mění elektromagnetickou část pole reality.",
"result_cs": "Ovlivňuje realizované elektrické a magnetické stavy.",
"what_cs": "Udává tok elektrického náboje."
},
"icon": "➜",
"key": "current",
"kind": "scalar",
"label_cs": "Elektrický proud",
"symbol": "I",
"units": [
{
"code": 60,
"factor": 1.0,
"key": "A",
"label": "A",
"offset": 0.0
},
{
"code": 61,
"factor": 0.001,
"key": "mA",
"label": "mA",
"offset": 0.0
},
{
"code": 62,
"factor": 1e-06,
"key": "uA",
"label": "µA",
"offset": 0.0
}
]
},
{
"canonical_unit": "V",
"code": 8,
"default_max": 1000000000.0,
"default_min": -1000000000.0,
"domains": [
"electromagnetism",
"metrology",
"custom"
],
"help": {
"effect_cs": "Mění elektrické podmínky soustavy.",
"reality_cs": "Vymezuje elektrické stavy, které připouštíme.",
"result_cs": "Ovlivňuje proudy a další elektrické realizace.",
"what_cs": "Udává rozdíl elektrického potenciálu."
},
"icon": "±",
"key": "voltage",
"kind": "scalar",
"label_cs": "Napětí",
"symbol": "U",
"units": [
{
"code": 70,
"factor": 1.0,
"key": "V",
"label": "V",
"offset": 0.0
},
{
"code": 71,
"factor": 0.001,
"key": "mV",
"label": "mV",
"offset": 0.0
},
{
"code": 72,
"factor": 1000.0,
"key": "kV",
"label": "kV",
"offset": 0.0
}
]
},
{
"canonical_unit": "T",
"code": 9,
"default_max": 1000000.0,
"default_min": -1000000.0,
"domains": [
"electromagnetism",
"materials",
"custom"
],
"help": {
"effect_cs": "Určuje magnetickou složku vstupního stavu.",
"reality_cs": "Omezuje nebo přidává magnetické podmínky realizace.",
"result_cs": "Mění přípustné magnetické a materiálové stavy.",
"what_cs": "Popisuje velikost magnetického pole."
},
"icon": "∪",
"key": "magnetic_field",
"kind": "scalar",
"label_cs": "Magnetická indukce",
"symbol": "B",
"units": [
{
"code": 80,
"factor": 1.0,
"key": "T",
"label": "T",
"offset": 0.0
},
{
"code": 81,
"factor": 0.001,
"key": "mT",
"label": "mT",
"offset": 0.0
},
{
"code": 82,
"factor": 1e-06,
"key": "uT",
"label": "µT",
"offset": 0.0
}
]
},
{
"canonical_unit": "Hz",
"code": 10,
"default_max": 1000000000000000.0,
"default_min": 0.0,
"domains": [
"mechanics",
"electromagnetism",
"metrology",
"custom"
],
"help": {
"effect_cs": "Přidává periodickou časovou podmínku.",
"reality_cs": "Vymezuje dynamické stavy podle jejich periodicity.",
"result_cs": "Mění realizace, které závisí na časové frekvenci.",
"what_cs": "Udává počet opakování děje za sekundu."
},
"icon": "∿",
"key": "frequency",
"kind": "scalar",
"label_cs": "Frekvence",
"symbol": "f",
"units": [
{
"code": 90,
"factor": 1.0,
"key": "Hz",
"label": "Hz",
"offset": 0.0
},
{
"code": 91,
"factor": 1000.0,
"key": "kHz",
"label": "kHz",
"offset": 0.0
},
{
"code": 92,
"factor": 1000000.0,
"key": "MHz",
"label": "MHz",
"offset": 0.0
},
{
"code": 93,
"factor": 1000000000.0,
"key": "GHz",
"label": "GHz",
"offset": 0.0
}
]
},
{
"canonical_unit": "m/s",
"code": 11,
"default_max": 299792458.0,
"default_min": -299792458.0,
"domains": [
"mechanics",
"cosmology",
"custom"
],
"help": {
"effect_cs": "Přidává pohybovou složku stavu.",
"reality_cs": "Omezuje množinu možných pohybových stavů.",
"result_cs": "Mění realizaci tam, kde je rozhodující pohyb.",
"what_cs": "Udává rychlost a znaménkem také zvolený směr po ose."
},
"icon": "➟",
"key": "velocity",
"kind": "scalar",
"label_cs": "Rychlost",
"symbol": "v",
"units": [
{
"code": 100,
"factor": 1.0,
"key": "m_s",
"label": "m/s",
"offset": 0.0
},
{
"code": 101,
"factor": 0.2777777777777778,
"key": "km_h",
"label": "km/h",
"offset": 0.0
}
]
},
{
"canonical_unit": "J",
"code": 12,
"default_max": 1e+30,
"default_min": -1e+30,
"domains": [
"mechanics",
"electromagnetism",
"thermal",
"materials",
"phase",
"cosmology",
"custom"
],
"help": {
"effect_cs": "Mění energetické podmínky realizace.",
"reality_cs": "Omezuje pole na stavy s požadovanou energií nebo energetickým rozsahem.",
"result_cs": "Může zásadně změnit, zda realizace existuje.",
"what_cs": "Udává energetickou hodnotu části zadaného stavu."
},
"icon": "ϟ",
"key": "energy",
"kind": "scalar",
"label_cs": "Energie",
"symbol": "E",
"units": [
{
"code": 110,
"factor": 1.0,
"key": "J",
"label": "J",
"offset": 0.0
},
{
"code": 111,
"factor": 0.001,
"key": "mJ",
"label": "mJ",
"offset": 0.0
},
{
"code": 112,
"factor": 1000.0,
"key": "kJ",
"label": "kJ",
"offset": 0.0
},
{
"code": 113,
"factor": 1.602176634e-19,
"key": "eV",
"label": "eV",
"offset": 0.0
}
]
},
{
"canonical_unit": "m",
"code": 13,
"default_max": 1000000000.0,
"default_min": -1000000000.0,
"domains": [
"mechanics",
"electromagnetism",
"custom"
],
"help": {
"effect_cs": "Přidává prostorovou souřadnici.",
"reality_cs": "Určuje konkrétní část prostoru, kterou zahrnujeme do pole.",
"result_cs": "Mění prostorové umístění realizovaného stavu.",
"what_cs": "Udává polohu na ose X."
},
"icon": "x",
"key": "position_x",
"kind": "scalar",
"label_cs": "Poloha X",
"symbol": "x",
"units": [
{
"code": 1,
"factor": 1.0,
"key": "m",
"label": "m",
"offset": 0.0
},
{
"code": 2,
"factor": 0.01,
"key": "cm",
"label": "cm",
"offset": 0.0
},
{
"code": 3,
"factor": 0.001,
"key": "mm",
"label": "mm",
"offset": 0.0
}
]
},
{
"canonical_unit": "m",
"code": 14,
"default_max": 1000000000.0,
"default_min": -1000000000.0,
"domains": [
"mechanics",
"electromagnetism",
"custom"
],
"help": {
"effect_cs": "Přidává prostorovou souřadnici.",
"reality_cs": "Určuje konkrétní část prostoru, kterou zahrnujeme do pole.",
"result_cs": "Mění prostorové umístění realizovaného stavu.",
"what_cs": "Udává polohu na ose Y."
},
"icon": "y",
"key": "position_y",
"kind": "scalar",
"label_cs": "Poloha Y",
"symbol": "y",
"units": [
{
"code": 1,
"factor": 1.0,
"key": "m",
"label": "m",
"offset": 0.0
},
{
"code": 2,
"factor": 0.01,
"key": "cm",
"label": "cm",
"offset": 0.0
},
{
"code": 3,
"factor": 0.001,
"key": "mm",
"label": "mm",
"offset": 0.0
}
]
},
{
"canonical_unit": "m",
"code": 15,
"default_max": 1000000000.0,
"default_min": -1000000000.0,
"domains": [
"mechanics",
"electromagnetism",
"custom"
],
"help": {
"effect_cs": "Přidává prostorovou souřadnici.",
"reality_cs": "Určuje konkrétní část prostoru, kterou zahrnujeme do pole.",
"result_cs": "Mění prostorové umístění realizovaného stavu.",
"what_cs": "Udává polohu na ose Z."
},
"icon": "z",
"key": "position_z",
"kind": "scalar",
"label_cs": "Poloha Z",
"symbol": "z",
"units": [
{
"code": 1,
"factor": 1.0,
"key": "m",
"label": "m",
"offset": 0.0
},
{
"code": 2,
"factor": 0.01,
"key": "cm",
"label": "cm",
"offset": 0.0
},
{
"code": 3,
"factor": 0.001,
"key": "mm",
"label": "mm",
"offset": 0.0
}
]
},
{
"canonical_unit": "direction",
"code": 16,
"default_max": 3,
"default_min": -3,
"domains": [
"mechanics",
"electromagnetism",
"custom"
],
"help": {
"effect_cs": "Přidává orientovaný směr do stavu.",
"reality_cs": "Vylučuje realizace s jinou zvolenou orientací, pokud je směr pevný.",
"result_cs": "Mění směrovou část realizovaného pole.",
"what_cs": "Určuje orientaci vybrané části systému."
},
"icon": "→",
"key": "direction",
"kind": "categorical",
"label_cs": "Směr",
"options": [
{
"code": 1,
"key": "+x",
"label": "+X"
},
{
"code": -1,
"key": "-x",
"label": "−X"
},
{
"code": 2,
"key": "+y",
"label": "+Y"
},
{
"code": -2,
"key": "-y",
"label": "−Y"
},
{
"code": 3,
"key": "+z",
"label": "+Z"
},
{
"code": -3,
"key": "-z",
"label": "−Z"
}
],
"symbol": "→"
},
{
"canonical_unit": "material_code",
"code": 17,
"default_max": 8,
"default_min": 1,
"domains": [
"mechanics",
"electromagnetism",
"thermal",
"materials",
"phase",
"custom"
],
"help": {
"effect_cs": "Přidává jednoznačnou materiálovou identitu do vstupního stavu.",
"reality_cs": "Omezuje hledání na stavy příslušné vybranému materiálu.",
"result_cs": "Může měnit fyzikálně dostupné realizace materiálového systému.",
"what_cs": "Určuje známý materiál z databáze PartnerProf."
},
"icon": "◆",
"key": "material",
"kind": "categorical",
"label_cs": "Materiál",
"options": [
{
"code": 1,
"key": "Cu",
"label": "Měď (Cu)"
},
{
"code": 2,
"key": "Al",
"label": "Hliník (Al)"
},
{
"code": 3,
"key": "Fe",
"label": "Železo (Fe)"
},
{
"code": 4,
"key": "Si",
"label": "Křemík (Si)"
},
{
"code": 5,
"key": "C",
"label": "Uhlík (C)"
},
{
"code": 6,
"key": "H2O",
"label": "Voda (H₂O)"
},
{
"code": 7,
"key": "air",
"label": "Vzduch"
},
{
"code": 8,
"key": "vacuum",
"label": "Vakuum"
}
],
"symbol": "M"
},
{
"canonical_unit": "m",
"code": 101,
"default_max": 1e-08,
"default_min": 1e-16,
"domains": [
"nuclear",
"particle",
"custom"
],
"help": {
"effect_cs": "Mění geometrickou část bariéry.",
"effect_en": "Sets the current geometric separation represented in the approved field.",
"reality_cs": "Vymezuje jadernou konfiguraci.",
"reality_en": "Defines where the present nuclear configuration lies relative to the declared target region.",
"result_cs": "Vstupuje do strukturovaného pole pro CML_Q/CML_A.",
"result_en": "The value is an input fact. A returned vector coordinate is not presented as a new distance unless an explicit decoding rule exists.",
"what_cs": "Okamžitá vzdálenost středů jader.",
"what_en": "Instantaneous centre-to-centre distance of the two nuclei."
},
"icon": "↔",
"key": "nuclear_distance",
"kind": "scalar",
"label_cs": "Vzdálenost jader",
"label_en": "Nuclear distance",
"symbol": "rₙ",
"units": [
{
"code": 1001,
"factor": 1.0,
"key": "m",
"label": "m",
"offset": 0.0
},
{
"code": 1002,
"factor": 1e-09,
"key": "nm",
"label": "nm",
"offset": 0.0
},
{
"code": 1003,
"factor": 1e-12,
"key": "pm",
"label": "pm",
"offset": 0.0
},
{
"code": 1004,
"factor": 1e-15,
"key": "fm",
"label": "fm",
"offset": 0.0
}
]
},
{
"canonical_unit": "eV",
"code": 102,
"default_max": 1000000000.0,
"default_min": 0.0,
"domains": [
"nuclear",
"particle",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Mění podmínky tunelování.",
"effect_en": "Sets the energetic obstacle represented in the approved field.",
"reality_cs": "Vymezuje energeticky nepřípustnou oblast.",
"reality_en": "Restricts the field by the entered barrier energy and its allowed range.",
"result_cs": "Je explicitní složkou vstupního pole.",
"result_en": "If a companion tunnelling projection is returned, the same barrier height is listed in its numeric audit.",
"what_cs": "Energetická výška zadané bariéry.",
"what_en": "Energy height of the explicitly defined barrier."
},
"icon": "▥",
"key": "barrier_energy",
"kind": "scalar",
"label_cs": "Výška bariéry",
"label_en": "Barrier height",
"symbol": "V₀",
"units": [
{
"code": 1010,
"factor": 1.0,
"key": "eV",
"label": "eV",
"offset": 0.0
},
{
"code": 1011,
"factor": 1000.0,
"key": "keV",
"label": "keV",
"offset": 0.0
},
{
"code": 1012,
"factor": 1000000.0,
"key": "MeV",
"label": "MeV",
"offset": 0.0
}
]
},
{
"canonical_unit": "m⁻³",
"code": 103,
"default_max": 1e+32,
"default_min": 0.0,
"domains": [
"nuclear",
"custom"
],
"help": {
"effect_cs": "Mění kolektivní stav plazmatu.",
"effect_en": "Changes the collective plasma state.",
"reality_cs": "Vymezuje hustotní režim.",
"reality_en": "Defines the density regime.",
"result_cs": "Vstupuje do jaderného a plazmového pole.",
"result_en": "Enters the nuclear and plasma field.",
"what_cs": "Počet částic plazmatu v objemu.",
"what_en": "Number of plasma particles per volume."
},
"icon": "☁",
"key": "plasma_density",
"kind": "scalar",
"label_cs": "Hustota plazmatu",
"label_en": "Plasma density",
"symbol": "nₚ",
"units": [
{
"code": 1020,
"factor": 1.0,
"key": "m-3",
"label": "m⁻³",
"offset": 0.0
},
{
"code": 1021,
"factor": 1000000.0,
"key": "cm-3",
"label": "cm⁻³",
"offset": 0.0
}
]
},
{
"canonical_unit": "W/m²",
"code": 104,
"default_max": 1e+24,
"default_min": 0.0,
"domains": [
"electromagnetism",
"nuclear",
"materials",
"custom"
],
"help": {
"effect_cs": "Mění vnější buzení.",
"effect_en": "Changes the external excitation.",
"reality_cs": "Vymezuje radiační prostředí.",
"reality_en": "Defines the radiation environment.",
"result_cs": "Je číselnou složkou kvantového zadání.",
"result_en": "Is a numerical component of the quantum task.",
"what_cs": "Výkon elektromagnetického pole na plochu.",
"what_en": "Electromagnetic power per area."
},
"icon": "≋",
"key": "em_intensity",
"kind": "scalar",
"label_cs": "Intenzita EM záření",
"label_en": "EM radiation intensity",
"symbol": "Iₑₘ",
"units": [
{
"code": 1030,
"factor": 1.0,
"key": "W_m2",
"label": "W/m²",
"offset": 0.0
},
{
"code": 1031,
"factor": 10000000.0,
"key": "kW_cm2",
"label": "kW/cm²",
"offset": 0.0
}
]
},
{
"canonical_unit": "m",
"code": 105,
"default_max": 0.01,
"default_min": 1e-10,
"domains": [
"electromagnetism",
"nuclear",
"materials",
"custom"
],
"help": {
"effect_cs": "Mění frekvenční vazbu.",
"effect_en": "Changes frequency coupling.",
"reality_cs": "Určuje optický režim.",
"reality_en": "Defines the optical regime.",
"result_cs": "Vstupuje do CML_Q projekce prostřednictvím vektoru.",
"result_en": "Enters the quantum projection through the submitted vector.",
"what_cs": "Vlnová délka laserového buzení.",
"what_en": "Wavelength of the laser excitation."
},
"icon": "↝",
"key": "laser_wavelength",
"kind": "scalar",
"label_cs": "Vlnová délka laseru",
"label_en": "Laser wavelength",
"symbol": "λL",
"units": [
{
"code": 1040,
"factor": 1.0,
"key": "m",
"label": "m",
"offset": 0.0
},
{
"code": 1041,
"factor": 1e-09,
"key": "nm",
"label": "nm",
"offset": 0.0
},
{
"code": 1042,
"factor": 1e-06,
"key": "um",
"label": "µm",
"offset": 0.0
}
]
},
{
"canonical_unit": "mode_code",
"code": 106,
"default_max": 4,
"default_min": 1,
"domains": [
"electromagnetism",
"nuclear",
"materials",
"custom"
],
"help": {
"effect_cs": "Rozlišuje laser, maser a kombinované buzení.",
"effect_en": "Distinguishes laser, maser and combined excitation.",
"reality_cs": "Určuje zdrojovou konfiguraci.",
"reality_en": "Defines the source configuration.",
"result_cs": "Je kódován bez textové interpretace.",
"result_en": "Encoded as a categorical state without free-text interpretation.",
"what_cs": "Typ externího buzení.",
"what_en": "Type of external excitation."
},
"icon": "✦",
"key": "excitation_mode",
"kind": "categorical",
"label_cs": "Režim buzení",
"label_en": "Excitation mode",
"options": [
{
"code": 1,
"key": "laser",
"label": "Laser"
},
{
"code": 2,
"key": "maser",
"label": "Maser"
},
{
"code": 3,
"key": "laser_maser",
"label": "Laser + maser"
},
{
"code": 4,
"key": "microwave",
"label": "Mikrovlnné buzení"
}
],
"symbol": "X"
},
{
"canonical_unit": "species_code",
"code": 107,
"default_max": 10,
"default_min": 1,
"domains": [
"materials",
"nuclear",
"custom"
],
"help": {
"effect_cs": "Mění materiálovou identitu pole.",
"effect_en": "Changes material identity of the field.",
"reality_cs": "Vymezuje chemické nebo izotopové složení.",
"reality_en": "Defines chemical or isotopic composition.",
"result_cs": "Je přenesen jednoznačným kódem.",
"result_en": "Transferred by an unambiguous code.",
"what_cs": "Zvolená příměs nebo izotop.",
"what_en": "Selected impurity or isotope."
},
"icon": "•",
"key": "dopant",
"kind": "categorical",
"label_cs": "Dopant / izotop",
"label_en": "Dopant / isotope",
"options": [
{
"code": 1,
"key": "D+",
"label": "D⁺"
},
{
"code": 2,
"key": "T+",
"label": "T⁺"
},
{
"code": 3,
"key": "Ag",
"label": "Ag"
},
{
"code": 4,
"key": "Ni",
"label": "Ni"
},
{
"code": 5,
"key": "Si",
"label": "Si"
},
{
"code": 6,
"key": "B",
"label": "B"
},
{
"code": 7,
"key": "N",
"label": "N"
},
{
"code": 8,
"key": "C13",
"label": "¹³C"
}
],
"symbol": "D"
},
{
"canonical_unit": "fraction",
"code": 108,
"default_max": 1.0,
"default_min": 0.0,
"domains": [
"materials",
"nuclear",
"custom"
],
"help": {
"effect_cs": "Mění koncentraci dopantu.",
"effect_en": "Changes dopant concentration.",
"reality_cs": "Omezuje složení materiálu.",
"reality_en": "Constrains material composition.",
"result_cs": "Je explicitní číselnou složkou.",
"result_en": "Is an explicit numerical component.",
"what_cs": "Molární nebo atomový podíl příměsi.",
"what_en": "Molar or atomic fraction of the dopant."
},
"icon": "%",
"key": "dopant_fraction",
"kind": "scalar",
"label_cs": "Podíl dopantu",
"label_en": "Dopant fraction",
"symbol": "cD",
"units": [
{
"code": 1060,
"factor": 1.0,
"key": "fraction",
"label": "0–1",
"offset": 0.0
},
{
"code": 1061,
"factor": 0.01,
"key": "percent",
"label": "%",
"offset": 0.0
},
{
"code": 1062,
"factor": 1e-06,
"key": "ppm",
"label": "ppm",
"offset": 0.0
}
]
},
{
"canonical_unit": "bond_code",
"code": 109,
"default_max": 3,
"default_min": 2,
"domains": [
"materials",
"custom"
],
"help": {
"effect_cs": "Rozlišuje sp² a sp³ síť.",
"effect_en": "Distinguishes sp² and sp³ networks.",
"reality_cs": "Určuje vazebnou topologii vstupu.",
"reality_en": "Defines the bonding topology of the input.",
"result_cs": "Je kódován jako kategoriální stav.",
"result_en": "Encoded as a categorical state.",
"what_cs": "Převažující vazebný stav uhlíku.",
"what_en": "Dominant carbon bonding state."
},
"icon": "⬢",
"key": "carbon_hybridization",
"kind": "categorical",
"label_cs": "Hybridizace uhlíku",
"label_en": "Carbon hybridization",
"options": [
{
"code": 2,
"key": "sp2",
"label": "sp²"
},
{
"code": 3,
"key": "sp3",
"label": "sp³"
},
{
"code": 2.5,
"key": "mixed",
"label": "smíšená sp²/sp³"
}
],
"symbol": "spⁿ"
},
{
"canonical_unit": "count",
"code": 110,
"default_max": 10000.0,
"default_min": 1.0,
"domains": [
"materials",
"custom"
],
"help": {
"effect_cs": "Mění tloušťku a vazbu vrstev.",
"effect_en": "Changes thickness and inter-layer coupling.",
"reality_cs": "Vymezuje rozměr materiálu.",
"reality_en": "Defines material dimensionality.",
"result_cs": "Je číselnou složkou pole.",
"result_en": "Is a numerical field component.",
"what_cs": "Počet aktivních vrstev.",
"what_en": "Number of active graphene layers."
},
"icon": "≡",
"key": "graphene_layers",
"kind": "scalar",
"label_cs": "Počet vrstev grafenu",
"label_en": "Graphene layer count",
"symbol": "NL",
"units": [
{
"code": 1070,
"factor": 1.0,
"key": "count",
"label": "vrstev",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 111,
"default_max": 1000000.0,
"default_min": 16.0,
"domains": [
"nuclear",
"materials",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Mění numerické rozlišení zakódovaného pole.",
"effect_en": "Changes numerical resolution of the encoded field.",
"reality_cs": "Nezvětšuje automaticky matici CML_A.",
"reality_en": "Does not automatically enlarge the compute matrix.",
"result_cs": "Demo limit chrání výkon stroje.",
"result_en": "The demo limit protects machine resources.",
"what_cs": "Požadovaná jemnost diskrétního zadání.",
"what_en": "Requested fineness of the discrete task."
},
"icon": "▦",
"key": "mesh_points",
"kind": "scalar",
"label_cs": "Počet bodů síta",
"label_en": "Mesh point count",
"symbol": "Ng",
"units": [
{
"code": 1080,
"factor": 1.0,
"key": "count",
"label": "bodů",
"offset": 0.0
}
]
},
{
"canonical_unit": "s",
"code": 112,
"default_max": 1.0,
"default_min": 1e-21,
"domains": [
"nuclear",
"materials",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Mění časové rozlišení vstupního pole.",
"effect_en": "Changes temporal resolution of the input field.",
"reality_cs": "Je auditován jako vstup, nikoli skrytě odhadnut.",
"reality_en": "Audited as an explicit input, not silently estimated.",
"result_cs": "Neznamená automatický počet kroků CML_A.",
"result_en": "Does not automatically mean the number of EvO chronons.",
"what_cs": "Deklarovaný krok zadání.",
"what_en": "Declared step of the task."
},
"icon": "→",
"key": "integration_step",
"kind": "scalar",
"label_cs": "Velikost kroku",
"label_en": "Integration step",
"symbol": "Δt",
"units": [
{
"code": 1090,
"factor": 1.0,
"key": "s",
"label": "s",
"offset": 0.0
},
{
"code": 1091,
"factor": 1e-15,
"key": "fs",
"label": "fs",
"offset": 0.0
},
{
"code": 1092,
"factor": 1e-18,
"key": "as",
"label": "as",
"offset": 0.0
}
]
},
{
"canonical_unit": "m",
"code": 113,
"default_max": 1e-07,
"default_min": 1e-16,
"domains": [
"nuclear",
"particle",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Přímo vstupuje do exponentu CML_Ax.",
"effect_en": "Sets the spatial width of the energetic barrier in the approved field.",
"reality_cs": "Může se lišit od okamžité vzdálenosti jader.",
"reality_en": "It is an independent input quantity and may differ from the instantaneous nuclear distance.",
"result_cs": "Určuje exponenciální útlum průchodu.",
"result_en": "If a WKB projection is published, this width is shown explicitly among its parameters.",
"what_cs": "Efektivní šířka tunelované bariéry.",
"what_en": "Effective width of the barrier used in the declared tunnelling configuration."
},
"icon": "▮",
"key": "barrier_width",
"kind": "scalar",
"label_cs": "Šířka bariéry",
"label_en": "Barrier width",
"symbol": "a",
"units": [
{
"code": 1100,
"factor": 1.0,
"key": "m",
"label": "m",
"offset": 0.0
},
{
"code": 1101,
"factor": 1e-09,
"key": "nm",
"label": "nm",
"offset": 0.0
},
{
"code": 1102,
"factor": 1e-12,
"key": "pm",
"label": "pm",
"offset": 0.0
},
{
"code": 1103,
"factor": 1e-15,
"key": "fm",
"label": "fm",
"offset": 0.0
}
]
},
{
"canonical_unit": "factor",
"code": 114,
"default_max": 10.0,
"default_min": 0.0,
"domains": [
"nuclear",
"electromagnetism",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Zesiluje fotonovou složku efektivní energie.",
"effect_en": "Amplifies the photon contribution to effective energy.",
"reality_cs": "Musí být odvozen z konkrétního experimentálního režimu.",
"reality_en": "Must come from the declared experimental regime.",
"result_cs": "CML_Ax jej uvádí v auditu výsledku.",
"result_en": "Reported as part of the result audit when applicable.",
"what_cs": "Deklarovaný bezrozměrný faktor rezonance.",
"what_en": "Declared dimensionless resonance factor."
},
"icon": "≈",
"key": "resonance_gain",
"kind": "scalar",
"label_cs": "Rezonanční zesílení",
"label_en": "Resonance gain",
"symbol": "R",
"units": [
{
"code": 1110,
"factor": 1.0,
"key": "factor",
"label": "×",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 115,
"default_max": 256,
"default_min": 1,
"domains": [
"quantum",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Určuje uzly a sousednosti mřížky.",
"effect_en": "Defines lattice nodes and adjacency.",
"reality_cs": "Je součástí topologie srovnávací úlohy.",
"reality_en": "Part of the topology of the comparison task.",
"result_cs": "Nemění postup CML_A.",
"result_en": "Does not prescribe the EvO method.",
"what_cs": "Počet řádků přesně zadané hexagonální mřížky.",
"what_en": "Number of rows in the explicitly declared hexagonal lattice."
},
"icon": "▦",
"key": "lattice_rows",
"kind": "scalar",
"label_cs": "Řádky hexagonální mřížky",
"label_en": "Hexagonal lattice rows",
"symbol": "Rhex",
"units": [
{
"code": 1120,
"factor": 1.0,
"key": "count",
"label": "řádků",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 116,
"default_max": 256,
"default_min": 1,
"domains": [
"quantum",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Určuje uzly a sousednosti mřížky.",
"effect_en": "Defines lattice nodes and adjacency.",
"reality_cs": "Je součástí topologie srovnávací úlohy.",
"reality_en": "Part of the topology of the comparison task.",
"result_cs": "Nemění postup CML_A.",
"result_en": "Does not prescribe the EvO method.",
"what_cs": "Počet sloupců přesně zadané hexagonální mřížky.",
"what_en": "Number of columns in the explicitly declared hexagonal lattice."
},
"icon": "▥",
"key": "lattice_cols",
"kind": "scalar",
"label_cs": "Sloupce hexagonální mřížky",
"label_en": "Hexagonal lattice columns",
"symbol": "Chex",
"units": [
{
"code": 1121,
"factor": 1.0,
"key": "count",
"label": "sloupců",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 117,
"default_max": 16384,
"default_min": 1,
"domains": [
"quantum",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Vymezuje počet provázaných spinových stavů.",
"effect_en": "Defines the number of coupled spin states.",
"reality_cs": "Je ověřitelný proti topologii.",
"reality_en": "Can be checked against the declared topology.",
"result_cs": "Je vstupem, ne odhadem AI.",
"result_en": "An input, not an AI estimate.",
"what_cs": "Počet datových qubitů zveřejněný pro danou mřížku.",
"what_en": "Number of data qubits declared for the lattice."
},
"icon": "q",
"key": "data_qubits",
"kind": "scalar",
"label_cs": "Počet datových qubitů",
"label_en": "Data qubits",
"symbol": "Nq",
"units": [
{
"code": 1122,
"factor": 1.0,
"key": "count",
"label": "qubitů",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 118,
"default_max": 6.283185307179586,
"default_min": -6.283185307179586,
"domains": [
"quantum",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Určuje sílu zveřejněné Isingovy vazby.",
"effect_en": "Sets the strength of the declared Ising coupling.",
"reality_cs": "Je číselnou vlastností každé vazby mřížky.",
"reality_en": "A numerical property of every declared lattice coupling.",
"result_cs": "Není instrukcí pro CML_A.",
"result_en": "Does not prescribe the EvO computation.",
"what_cs": "Úhel dvouqubitové interakce ZZ.",
"what_en": "Angle of the two-qubit ZZ interaction."
},
"icon": "∠",
"key": "zz_angle",
"kind": "scalar",
"label_cs": "Úhel interakce ZZ",
"label_en": "ZZ interaction angle",
"symbol": "φZZ",
"units": [
{
"code": 1123,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 119,
"default_max": 6.283185307179586,
"default_min": 0,
"domains": [
"quantum",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Rozlišuje jednotlivé běhy IBM úlohy.",
"effect_en": "Distinguishes individual quantum runs.",
"reality_cs": "Je pevnou podmínkou daného běhu.",
"reality_en": "A fixed condition of the declared run.",
"result_cs": "Není volen AI.",
"result_en": "Not chosen by AI.",
"what_cs": "Konkrétní parametr lokálního příčného pole.",
"what_en": "Parameter of the local transverse field."
},
"icon": "θ",
"key": "theta_angle",
"kind": "scalar",
"label_cs": "Úhel lokálního pole θ",
"label_en": "Local-field angle θ",
"symbol": "θ",
"units": [
{
"code": 1124,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 120,
"default_max": 100000,
"default_min": 0,
"domains": [
"quantum",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Identifikuje srovnávaný bod průběhu.",
"effect_en": "Identifies the compared point in the evolution.",
"reality_cs": "Popisuje referenční kvantový běh, ne vnitřní kroky CML_A.",
"reality_en": "Describes the reference quantum run, not EvO chronon count.",
"result_cs": "Je součástí auditního srovnání.",
"result_en": "Part of the auditable comparison.",
"what_cs": "Počet Trotterových vrstev referenční IBM realizace.",
"what_en": "Number of Trotter layers in the reference quantum realization."
},
"icon": "#",
"key": "trotter_depth",
"kind": "scalar",
"label_cs": "Trotterova hloubka",
"label_en": "Trotter depth",
"symbol": "dT",
"units": [
{
"code": 1125,
"factor": 1.0,
"key": "count",
"label": "vrstev",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 121,
"default_max": 1000000000,
"default_min": 1,
"domains": [
"quantum",
"condensed_matter",
"custom"
],
"help": {
"effect_cs": "Popisuje statistický rozpočet IBM.",
"effect_en": "Describes its statistical budget.",
"reality_cs": "Nevstupuje jako počet kroků CML_A.",
"reality_en": "Does not become the number of EvO chronons.",
"result_cs": "Umožní porovnat statistický a realizovaný výstup.",
"result_en": "Allows statistical and realized outputs to be compared.",
"what_cs": "Počet opakovaných měření referenčního kvantového běhu.",
"what_en": "Number of repeated measurements in the reference quantum run."
},
"icon": "◎",
"key": "measurement_shots",
"kind": "scalar",
"label_cs": "Počet měření IBM",
"label_en": "Measurement shots",
"symbol": "Ns",
"units": [
{
"code": 1126,
"factor": 1.0,
"key": "count",
"label": "shots",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 122,
"default_max": 1,
"default_min": 0,
"domains": [
"quantum",
"custom"
],
"help": {
"effect_cs": "Spolu s vazbami určuje počet přeříznutých hran.",
"effect_en": "Together with graph edges determines the cut value.",
"reality_cs": "Volný stav, nikoli hodnota doplněná AI.",
"reality_en": "A free state, never filled in by AI.",
"result_cs": "Musí být vydán jako konkrétní bit výsledné reality.",
"result_en": "Must be published as a concrete bit of the realized state.",
"what_cs": "Hledaná binární strana řezu pro uzel 0.",
"what_en": "Unknown binary partition side for node 0."
},
"icon": "0",
"key": "cut_x0",
"kind": "scalar",
"label_cs": "Příslušnost uzlu 0",
"label_en": "Node 0 partition bit",
"symbol": "x₀",
"units": [
{
"code": 1130,
"factor": 1.0,
"key": "bit",
"label": "0/1",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 123,
"default_max": 1,
"default_min": 0,
"domains": [
"quantum",
"custom"
],
"help": {
"effect_cs": "Spolu s vazbami určuje počet přeříznutých hran.",
"effect_en": "Together with graph edges determines the cut value.",
"reality_cs": "Volný stav, nikoli hodnota doplněná AI.",
"reality_en": "A free state, never filled in by AI.",
"result_cs": "Musí být vydán jako konkrétní bit výsledné reality.",
"result_en": "Must be published as a concrete bit of the realized state.",
"what_cs": "Hledaná binární strana řezu pro uzel 1.",
"what_en": "Unknown binary partition side for node 1."
},
"icon": "1",
"key": "cut_x1",
"kind": "scalar",
"label_cs": "Příslušnost uzlu 1",
"label_en": "Node 1 partition bit",
"symbol": "x₁",
"units": [
{
"code": 1130,
"factor": 1.0,
"key": "bit",
"label": "0/1",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 124,
"default_max": 1,
"default_min": 0,
"domains": [
"quantum",
"custom"
],
"help": {
"effect_cs": "Spolu s vazbami určuje počet přeříznutých hran.",
"effect_en": "Together with graph edges determines the cut value.",
"reality_cs": "Volný stav, nikoli hodnota doplněná AI.",
"reality_en": "A free state, never filled in by AI.",
"result_cs": "Musí být vydán jako konkrétní bit výsledné reality.",
"result_en": "Must be published as a concrete bit of the realized state.",
"what_cs": "Hledaná binární strana řezu pro uzel 2.",
"what_en": "Unknown binary partition side for node 2."
},
"icon": "2",
"key": "cut_x2",
"kind": "scalar",
"label_cs": "Příslušnost uzlu 2",
"label_en": "Node 2 partition bit",
"symbol": "x₂",
"units": [
{
"code": 1130,
"factor": 1.0,
"key": "bit",
"label": "0/1",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 125,
"default_max": 1,
"default_min": 0,
"domains": [
"quantum",
"custom"
],
"help": {
"effect_cs": "Spolu s vazbami určuje počet přeříznutých hran.",
"effect_en": "Together with graph edges determines the cut value.",
"reality_cs": "Volný stav, nikoli hodnota doplněná AI.",
"reality_en": "A free state, never filled in by AI.",
"result_cs": "Musí být vydán jako konkrétní bit výsledné reality.",
"result_en": "Must be published as a concrete bit of the realized state.",
"what_cs": "Hledaná binární strana řezu pro uzel 3.",
"what_en": "Unknown binary partition side for node 3."
},
"icon": "3",
"key": "cut_x3",
"kind": "scalar",
"label_cs": "Příslušnost uzlu 3",
"label_en": "Node 3 partition bit",
"symbol": "x₃",
"units": [
{
"code": 1130,
"factor": 1.0,
"key": "bit",
"label": "0/1",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 126,
"default_max": 5,
"default_min": 0,
"domains": [
"quantum",
"custom"
],
"help": {
"effect_cs": "Je přímo ověřitelný dosazením čtyř výsledných bitů.",
"effect_en": "Directly verifiable from the four realized partition bits.",
"reality_cs": "Výsledný produkt validační úlohy.",
"reality_en": "Result quantity of the validation task.",
"result_cs": "IBM přesné optimum této instance je 4.",
"result_en": "The exact optimum of the declared reference instance is 4.",
"what_cs": "Počet hran spojujících opačné strany řezu.",
"what_en": "Number of graph edges crossing between opposite partitions."
},
"icon": "Σ",
"key": "cut_value",
"kind": "scalar",
"label_cs": "Hodnota řezu",
"label_en": "Cut value",
"symbol": "C",
"units": [
{
"code": 1131,
"factor": 1.0,
"key": "count",
"label": "hran",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 201,
"default_max": 1,
"default_min": 0,
"domains": [
"ibm_maxcut_5"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Binární uzel 0",
"what_en": "Binary node 0"
},
"icon": "0/1",
"key": "cut5_x0",
"kind": "scalar",
"label_cs": "Binární uzel 0",
"label_en": "Binary node 0",
"symbol": "x0",
"units": [
{
"code": 2201,
"factor": 1.0,
"key": "bit",
"label": "bit",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 202,
"default_max": 1,
"default_min": 0,
"domains": [
"ibm_maxcut_5"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Binární uzel 1",
"what_en": "Binary node 1"
},
"icon": "0/1",
"key": "cut5_x1",
"kind": "scalar",
"label_cs": "Binární uzel 1",
"label_en": "Binary node 1",
"symbol": "x1",
"units": [
{
"code": 2202,
"factor": 1.0,
"key": "bit",
"label": "bit",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 203,
"default_max": 1,
"default_min": 0,
"domains": [
"ibm_maxcut_5"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Binární uzel 2",
"what_en": "Binary node 2"
},
"icon": "0/1",
"key": "cut5_x2",
"kind": "scalar",
"label_cs": "Binární uzel 2",
"label_en": "Binary node 2",
"symbol": "x2",
"units": [
{
"code": 2203,
"factor": 1.0,
"key": "bit",
"label": "bit",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 204,
"default_max": 1,
"default_min": 0,
"domains": [
"ibm_maxcut_5"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Binární uzel 3",
"what_en": "Binary node 3"
},
"icon": "0/1",
"key": "cut5_x3",
"kind": "scalar",
"label_cs": "Binární uzel 3",
"label_en": "Binary node 3",
"symbol": "x3",
"units": [
{
"code": 2204,
"factor": 1.0,
"key": "bit",
"label": "bit",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 205,
"default_max": 1,
"default_min": 0,
"domains": [
"ibm_maxcut_5"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Binární uzel 4",
"what_en": "Binary node 4"
},
"icon": "0/1",
"key": "cut5_x4",
"kind": "scalar",
"label_cs": "Binární uzel 4",
"label_en": "Binary node 4",
"symbol": "x4",
"units": [
{
"code": 2205,
"factor": 1.0,
"key": "bit",
"label": "bit",
"offset": 0.0
}
]
},
{
"canonical_unit": "edge",
"code": 206,
"default_max": 6,
"default_min": 0,
"domains": [
"ibm_maxcut_5"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Hodnota řezu",
"what_en": "Cut value"
},
"icon": "C",
"key": "cut5_value",
"kind": "scalar",
"label_cs": "Hodnota řezu",
"label_en": "Cut value",
"symbol": "C",
"units": [
{
"code": 2206,
"factor": 1.0,
"key": "edge",
"label": "edge",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 210,
"default_max": 5,
"default_min": -5,
"domains": [
"quantum_vqe_h2"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Koeficient I",
"what_en": "I coefficient"
},
"icon": "I",
"key": "h2_cI",
"kind": "scalar",
"label_cs": "Koeficient I",
"label_en": "I coefficient",
"symbol": "cI",
"units": [
{
"code": 2210,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 211,
"default_max": 5,
"default_min": -5,
"domains": [
"quantum_vqe_h2"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Koeficient Z",
"what_en": "Z coefficient"
},
"icon": "Z",
"key": "h2_cZ",
"kind": "scalar",
"label_cs": "Koeficient Z",
"label_en": "Z coefficient",
"symbol": "cZ",
"units": [
{
"code": 2211,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 212,
"default_max": 5,
"default_min": -5,
"domains": [
"quantum_vqe_h2"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Koeficient X",
"what_en": "X coefficient"
},
"icon": "X",
"key": "h2_cX",
"kind": "scalar",
"label_cs": "Koeficient X",
"label_en": "X coefficient",
"symbol": "cX",
"units": [
{
"code": 2212,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 213,
"default_max": 5,
"default_min": 0,
"domains": [
"quantum_vqe_h2"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Jaderná repulze",
"what_en": "Nuclear repulsion"
},
"icon": "+",
"key": "h2_nuclear_repulsion",
"kind": "scalar",
"label_cs": "Jaderná repulze",
"label_en": "Nuclear repulsion",
"symbol": "E_nn",
"units": [
{
"code": 2213,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 214,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_h2"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Variační úhel",
"what_en": "Variational angle"
},
"icon": "θ",
"key": "h2_theta",
"kind": "scalar",
"label_cs": "Variační úhel",
"label_en": "Variational angle",
"symbol": "θ",
"units": [
{
"code": 2214,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 215,
"default_max": 1,
"default_min": -3,
"domains": [
"quantum_vqe_h2"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Celková energie",
"what_en": "Total energy"
},
"icon": "E",
"key": "h2_energy",
"kind": "scalar",
"label_cs": "Celková energie",
"label_en": "Total energy",
"symbol": "E",
"units": [
{
"code": 2215,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "fraction",
"code": 220,
"default_max": 1,
"default_min": 0,
"domains": [
"quantum_qpe_phase"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Vlastní fáze",
"what_en": "Eigenphase"
},
"icon": "φ",
"key": "qpe_phase",
"kind": "scalar",
"label_cs": "Vlastní fáze",
"label_en": "Eigenphase",
"symbol": "φ",
"units": [
{
"code": 2220,
"factor": 1.0,
"key": "fraction",
"label": "fraction",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 221,
"default_max": 52,
"default_min": 1,
"domains": [
"quantum_qpe_phase"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Požadovaná bitová přesnost",
"what_en": "Requested bit precision"
},
"icon": "m",
"key": "qpe_bits",
"kind": "scalar",
"label_cs": "Požadovaná bitová přesnost",
"label_en": "Requested bit precision",
"symbol": "m",
"units": [
{
"code": 2221,
"factor": 1.0,
"key": "bit",
"label": "bit",
"offset": 0.0
}
]
},
{
"canonical_unit": "bit",
"code": 222,
"default_max": 52,
"default_min": 0,
"domains": [
"quantum_qpe_phase"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Vyřešené bity",
"what_en": "Resolved bits"
},
"icon": "k",
"key": "qpe_bits_resolved",
"kind": "scalar",
"label_cs": "Vyřešené bity",
"label_en": "Resolved bits",
"symbol": "k",
"units": [
{
"code": 2222,
"factor": 1.0,
"key": "bit",
"label": "bit",
"offset": 0.0
}
]
},
{
"canonical_unit": "code",
"code": 223,
"default_max": 4503599627370495,
"default_min": 0,
"domains": [
"quantum_qpe_phase"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Binární prefix",
"what_en": "Binary prefix"
},
"icon": "p",
"key": "qpe_prefix",
"kind": "scalar",
"label_cs": "Binární prefix",
"label_en": "Binary prefix",
"symbol": "p",
"units": [
{
"code": 2223,
"factor": 1.0,
"key": "code",
"label": "code",
"offset": 0.0
}
]
},
{
"canonical_unit": "fraction",
"code": 224,
"default_max": 1,
"default_min": 0,
"domains": [
"quantum_qpe_phase"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Odhad fáze",
"what_en": "Phase estimate"
},
"icon": "φ̂",
"key": "qpe_phase_estimate",
"kind": "scalar",
"label_cs": "Odhad fáze",
"label_en": "Phase estimate",
"symbol": "φ̂",
"units": [
{
"code": 2224,
"factor": 1.0,
"key": "fraction",
"label": "fraction",
"offset": 0.0
}
]
},
{
"canonical_unit": "fraction",
"code": 225,
"default_max": 1,
"default_min": 0,
"domains": [
"quantum_qpe_phase"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Chyba fáze",
"what_en": "Phase error"
},
"icon": "ε",
"key": "qpe_error",
"kind": "scalar",
"label_cs": "Chyba fáze",
"label_en": "Phase error",
"symbol": "ε",
"units": [
{
"code": 2225,
"factor": 1.0,
"key": "fraction",
"label": "fraction",
"offset": 0.0
}
]
},
{
"canonical_unit": "s",
"code": 230,
"default_max": 100,
"default_min": 0,
"domains": [
"quantum_time_evolution"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Čas",
"what_en": "Time"
},
"icon": "t",
"key": "qt_time",
"kind": "scalar",
"label_cs": "Čas",
"label_en": "Time",
"symbol": "t",
"units": [
{
"code": 2230,
"factor": 1.0,
"key": "s",
"label": "s",
"offset": 0.0
}
]
},
{
"canonical_unit": "s",
"code": 231,
"default_max": 100,
"default_min": 0,
"domains": [
"quantum_time_evolution"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Koncový čas",
"what_en": "Final time"
},
"icon": "t_f",
"key": "qt_final_time",
"kind": "scalar",
"label_cs": "Koncový čas",
"label_en": "Final time",
"symbol": "t_f",
"units": [
{
"code": 2231,
"factor": 1.0,
"key": "s",
"label": "s",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad/s",
"code": 232,
"default_max": 1000000.0,
"default_min": 0,
"domains": [
"quantum_time_evolution"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Úhlová frekvence",
"what_en": "Angular frequency"
},
"icon": "ω",
"key": "qt_omega",
"kind": "scalar",
"label_cs": "Úhlová frekvence",
"label_en": "Angular frequency",
"symbol": "ω",
"units": [
{
"code": 2232,
"factor": 1.0,
"key": "rad/s",
"label": "rad/s",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 233,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_time_evolution"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Pozorovatelná",
"what_en": "Observable"
},
"icon": "A",
"key": "qt_observable",
"kind": "scalar",
"label_cs": "Pozorovatelná",
"label_en": "Observable",
"symbol": "⟨A⟩",
"units": [
{
"code": 2233,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "corr",
"code": 240,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_chsh"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Korelace E00",
"what_en": "Correlation E00"
},
"icon": "E",
"key": "chsh_e00",
"kind": "scalar",
"label_cs": "Korelace E00",
"label_en": "Correlation E00",
"symbol": "E00",
"units": [
{
"code": 2240,
"factor": 1.0,
"key": "corr",
"label": "corr",
"offset": 0.0
}
]
},
{
"canonical_unit": "corr",
"code": 241,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_chsh"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Korelace E01",
"what_en": "Correlation E01"
},
"icon": "E",
"key": "chsh_e01",
"kind": "scalar",
"label_cs": "Korelace E01",
"label_en": "Correlation E01",
"symbol": "E01",
"units": [
{
"code": 2241,
"factor": 1.0,
"key": "corr",
"label": "corr",
"offset": 0.0
}
]
},
{
"canonical_unit": "corr",
"code": 242,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_chsh"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Korelace E10",
"what_en": "Correlation E10"
},
"icon": "E",
"key": "chsh_e10",
"kind": "scalar",
"label_cs": "Korelace E10",
"label_en": "Correlation E10",
"symbol": "E10",
"units": [
{
"code": 2242,
"factor": 1.0,
"key": "corr",
"label": "corr",
"offset": 0.0
}
]
},
{
"canonical_unit": "corr",
"code": 243,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_chsh"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "Korelace E11",
"what_en": "Correlation E11"
},
"icon": "E",
"key": "chsh_e11",
"kind": "scalar",
"label_cs": "Korelace E11",
"label_en": "Correlation E11",
"symbol": "E11",
"units": [
{
"code": 2243,
"factor": 1.0,
"key": "corr",
"label": "corr",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 244,
"default_max": 2.8284271247461903,
"default_min": -2.8284271247461903,
"domains": [
"quantum_chsh"
],
"help": {
"effect_cs": "Je explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality nebo cíle.",
"reality_en": "The value belongs to the declared reality or target.",
"result_cs": "CML_Ax ji interpretuje pouze podle zvoleného profilu zadání.",
"result_en": "CML_Ax interprets it only under the selected task profile.",
"what_cs": "CHSH parametr",
"what_en": "CHSH parameter"
},
"icon": "S",
"key": "chsh_s",
"kind": "scalar",
"label_cs": "CHSH parametr",
"label_en": "CHSH parameter",
"symbol": "S",
"units": [
{
"code": 2244,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 245,
"default_max": 2,
"default_min": -2,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Koeficient YZ",
"what_en": "YZ coefficient"
},
"icon": "cYZ",
"key": "vqe2_c_yz",
"kind": "scalar",
"label_cs": "Koeficient YZ",
"label_en": "YZ coefficient",
"symbol": "cYZ",
"units": [
{
"code": 3245,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 246,
"default_max": 2,
"default_min": -2,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Koeficient ZI",
"what_en": "ZI coefficient"
},
"icon": "cZI",
"key": "vqe2_c_zi",
"kind": "scalar",
"label_cs": "Koeficient ZI",
"label_en": "ZI coefficient",
"symbol": "cZI",
"units": [
{
"code": 3246,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 247,
"default_max": 2,
"default_min": -2,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Koeficient ZZ",
"what_en": "ZZ coefficient"
},
"icon": "cZZ",
"key": "vqe2_c_zz",
"kind": "scalar",
"label_cs": "Koeficient ZZ",
"label_en": "ZZ coefficient",
"symbol": "cZZ",
"units": [
{
"code": 3247,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 248,
"default_max": 2,
"default_min": -2,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Koeficient XX",
"what_en": "XX coefficient"
},
"icon": "cXX",
"key": "vqe2_c_xx",
"kind": "scalar",
"label_cs": "Koeficient XX",
"label_en": "XX coefficient",
"symbol": "cXX",
"units": [
{
"code": 3248,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 249,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 0",
"what_en": "Variational angle 0"
},
"icon": "θ0",
"key": "vqe2_theta0",
"kind": "scalar",
"label_cs": "Variační úhel 0",
"label_en": "Variational angle 0",
"symbol": "θ0",
"units": [
{
"code": 3249,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 250,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 1",
"what_en": "Variational angle 1"
},
"icon": "θ1",
"key": "vqe2_theta1",
"kind": "scalar",
"label_cs": "Variační úhel 1",
"label_en": "Variational angle 1",
"symbol": "θ1",
"units": [
{
"code": 3250,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 251,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 2",
"what_en": "Variational angle 2"
},
"icon": "θ2",
"key": "vqe2_theta2",
"kind": "scalar",
"label_cs": "Variační úhel 2",
"label_en": "Variational angle 2",
"symbol": "θ2",
"units": [
{
"code": 3251,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 252,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 3",
"what_en": "Variational angle 3"
},
"icon": "θ3",
"key": "vqe2_theta3",
"kind": "scalar",
"label_cs": "Variační úhel 3",
"label_en": "Variational angle 3",
"symbol": "θ3",
"units": [
{
"code": 3252,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 253,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 4",
"what_en": "Variational angle 4"
},
"icon": "θ4",
"key": "vqe2_theta4",
"kind": "scalar",
"label_cs": "Variační úhel 4",
"label_en": "Variational angle 4",
"symbol": "θ4",
"units": [
{
"code": 3253,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 254,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 5",
"what_en": "Variational angle 5"
},
"icon": "θ5",
"key": "vqe2_theta5",
"kind": "scalar",
"label_cs": "Variační úhel 5",
"label_en": "Variational angle 5",
"symbol": "θ5",
"units": [
{
"code": 3254,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 255,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 6",
"what_en": "Variational angle 6"
},
"icon": "θ6",
"key": "vqe2_theta6",
"kind": "scalar",
"label_cs": "Variační úhel 6",
"label_en": "Variational angle 6",
"symbol": "θ6",
"units": [
{
"code": 3255,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "rad",
"code": 256,
"default_max": 3.141592653589793,
"default_min": -3.141592653589793,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Variační úhel 7",
"what_en": "Variational angle 7"
},
"icon": "θ7",
"key": "vqe2_theta7",
"kind": "scalar",
"label_cs": "Variační úhel 7",
"label_en": "Variational angle 7",
"symbol": "θ7",
"units": [
{
"code": 3256,
"factor": 1.0,
"key": "rad",
"label": "rad",
"offset": 0.0
}
]
},
{
"canonical_unit": "Ha",
"code": 257,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Energie Hamiltoniánu",
"what_en": "Hamiltonian energy"
},
"icon": "E",
"key": "vqe2_energy",
"kind": "scalar",
"label_cs": "Energie Hamiltoniánu",
"label_en": "Hamiltonian energy",
"symbol": "E",
"units": [
{
"code": 3257,
"factor": 1.0,
"key": "Ha",
"label": "Ha",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 258,
"default_max": 16384,
"default_min": 64,
"domains": [
"quantum_vqe_pauli2"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Počet zkoušených stavů",
"what_en": "Trial states evaluated"
},
"icon": "N",
"key": "vqe2_candidate_evals",
"kind": "scalar",
"label_cs": "Počet zkoušených stavů",
"label_en": "Trial states evaluated",
"symbol": "N",
"units": [
{
"code": 3258,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 259,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J0",
"what_en": "XXZ coupling J0"
},
"icon": "J0",
"key": "xxz_j0",
"kind": "scalar",
"label_cs": "XXZ vazba J0",
"label_en": "XXZ coupling J0",
"symbol": "J0",
"units": [
{
"code": 3259,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 260,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J1",
"what_en": "XXZ coupling J1"
},
"icon": "J1",
"key": "xxz_j1",
"kind": "scalar",
"label_cs": "XXZ vazba J1",
"label_en": "XXZ coupling J1",
"symbol": "J1",
"units": [
{
"code": 3260,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 261,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J2",
"what_en": "XXZ coupling J2"
},
"icon": "J2",
"key": "xxz_j2",
"kind": "scalar",
"label_cs": "XXZ vazba J2",
"label_en": "XXZ coupling J2",
"symbol": "J2",
"units": [
{
"code": 3261,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 262,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J3",
"what_en": "XXZ coupling J3"
},
"icon": "J3",
"key": "xxz_j3",
"kind": "scalar",
"label_cs": "XXZ vazba J3",
"label_en": "XXZ coupling J3",
"symbol": "J3",
"units": [
{
"code": 3262,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 263,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J4",
"what_en": "XXZ coupling J4"
},
"icon": "J4",
"key": "xxz_j4",
"kind": "scalar",
"label_cs": "XXZ vazba J4",
"label_en": "XXZ coupling J4",
"symbol": "J4",
"units": [
{
"code": 3263,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 264,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J5",
"what_en": "XXZ coupling J5"
},
"icon": "J5",
"key": "xxz_j5",
"kind": "scalar",
"label_cs": "XXZ vazba J5",
"label_en": "XXZ coupling J5",
"symbol": "J5",
"units": [
{
"code": 3264,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 265,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J6",
"what_en": "XXZ coupling J6"
},
"icon": "J6",
"key": "xxz_j6",
"kind": "scalar",
"label_cs": "XXZ vazba J6",
"label_en": "XXZ coupling J6",
"symbol": "J6",
"units": [
{
"code": 3265,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 266,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J7",
"what_en": "XXZ coupling J7"
},
"icon": "J7",
"key": "xxz_j7",
"kind": "scalar",
"label_cs": "XXZ vazba J7",
"label_en": "XXZ coupling J7",
"symbol": "J7",
"units": [
{
"code": 3266,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 267,
"default_max": 2,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "XXZ vazba J8",
"what_en": "XXZ coupling J8"
},
"icon": "J8",
"key": "xxz_j8",
"kind": "scalar",
"label_cs": "XXZ vazba J8",
"label_en": "XXZ coupling J8",
"symbol": "J8",
"units": [
{
"code": 3267,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "tau",
"code": 268,
"default_max": 10,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Koncový evoluční čas",
"what_en": "Final evolution time"
},
"icon": "t_f",
"key": "xxz_final_time",
"kind": "scalar",
"label_cs": "Koncový evoluční čas",
"label_en": "Final evolution time",
"symbol": "t_f",
"units": [
{
"code": 3268,
"factor": 1.0,
"key": "tau",
"label": "tau",
"offset": 0.0
}
]
},
{
"canonical_unit": "tau",
"code": 269,
"default_max": 10,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Realizovaný evoluční čas",
"what_en": "Realized evolution time"
},
"icon": "t",
"key": "xxz_time",
"kind": "scalar",
"label_cs": "Realizovaný evoluční čas",
"label_en": "Realized evolution time",
"symbol": "t",
"units": [
{
"code": 3269,
"factor": 1.0,
"key": "tau",
"label": "tau",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 270,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Střední ZZ korelace",
"what_en": "Middle-bond ZZ correlation"
},
"icon": "⟨ZZ⟩",
"key": "xxz_zz_mid",
"kind": "scalar",
"label_cs": "Střední ZZ korelace",
"label_en": "Middle-bond ZZ correlation",
"symbol": "⟨ZZ⟩",
"units": [
{
"code": 3270,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 271,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Průměr ZZ sudých vazeb",
"what_en": "Even-bond ZZ mean"
},
"icon": "ZZₑ",
"key": "xxz_even_zz_mean",
"kind": "scalar",
"label_cs": "Průměr ZZ sudých vazeb",
"label_en": "Even-bond ZZ mean",
"symbol": "ZZₑ",
"units": [
{
"code": 3271,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 272,
"default_max": 1,
"default_min": -1,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Průměr ZZ lichých vazeb",
"what_en": "Odd-bond ZZ mean"
},
"icon": "ZZₒ",
"key": "xxz_odd_zz_mean",
"kind": "scalar",
"label_cs": "Průměr ZZ lichých vazeb",
"label_en": "Odd-bond ZZ mean",
"symbol": "ZZₒ",
"units": [
{
"code": 3272,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "value",
"code": 273,
"default_max": 1.1,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Norma stavu",
"what_en": "State norm"
},
"icon": "||ψ||²",
"key": "xxz_state_norm",
"kind": "scalar",
"label_cs": "Norma stavu",
"label_en": "State norm",
"symbol": "||ψ||²",
"units": [
{
"code": 3273,
"factor": 1.0,
"key": "value",
"label": "value",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 274,
"default_max": 80,
"default_min": 0,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Kód realizované trajektorie",
"what_en": "Realized trajectory code"
},
"icon": "Γ",
"key": "xxz_path_code",
"kind": "scalar",
"label_cs": "Kód realizované trajektorie",
"label_en": "Realized trajectory code",
"symbol": "Γ",
"units": [
{
"code": 3274,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 275,
"default_max": 1000,
"default_min": 1,
"domains": [
"quantum_xxz_10"
],
"help": {
"effect_cs": "Explicitní součást strukturovaného kvantového zadání.",
"effect_en": "Explicit component of the structured quantum input.",
"reality_cs": "Hodnota je součástí deklarované reality, Hamiltoniánu nebo výsledkové projekce.",
"reality_en": "The value belongs to the declared reality, Hamiltonian, or result projection.",
"result_cs": "CML_Ax ji interpretuje pouze podle schváleného profilu úlohy.",
"result_en": "CML_Ax interprets it only under the approved task profile.",
"what_cs": "Počet kandidátních trajektorií",
"what_en": "Candidate trajectories evaluated"
},
"icon": "NΓ",
"key": "xxz_candidate_evals",
"kind": "scalar",
"label_cs": "Počet kandidátních trajektorií",
"label_en": "Candidate trajectories evaluated",
"symbol": "NΓ",
"units": [
{
"code": 3275,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 300,
"default_max": 156,
"default_min": 156,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Node count",
"what_en": "Node count"
},
"icon": "N",
"key": "mc156_n",
"kind": "scalar",
"label_cs": "Node count",
"label_en": "Node count",
"symbol": "N",
"units": [
{
"code": 4300,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 301,
"default_max": 3,
"default_min": 3,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Graph degree",
"what_en": "Graph degree"
},
"icon": "d",
"key": "mc156_degree",
"kind": "scalar",
"label_cs": "Graph degree",
"label_en": "Graph degree",
"symbol": "d",
"units": [
{
"code": 4301,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 302,
"default_max": 8,
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"help": {
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},
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"key": "mc156_graph_seed",
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{
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{
"canonical_unit": "count",
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"help": {
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},
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{
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"label": "count",
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}
]
},
{
"canonical_unit": "count",
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"help": {
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},
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"key": "mc156_b00",
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{
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"key": "count",
"label": "count",
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}
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},
{
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"help": {
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"reality_en": "Value belongs to the declared compute reality.",
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},
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{
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"key": "count",
"label": "count",
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{
"canonical_unit": "count",
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"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
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"reality_en": "Value belongs to the declared compute reality.",
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},
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"key": "mc156_b02",
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{
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"factor": 1.0,
"key": "count",
"label": "count",
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}
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},
{
"canonical_unit": "count",
"code": 307,
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"domains": [
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],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
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"reality_en": "Value belongs to the declared compute reality.",
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},
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"key": "mc156_b03",
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{
"code": 4307,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
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},
{
"canonical_unit": "count",
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"default_max": 255,
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"domains": [
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],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
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"reality_en": "Value belongs to the declared compute reality.",
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"result_en": "CML_Ax decodes the realized Max-Cut state.",
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"what_en": "Packed assignment byte 4"
},
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"key": "mc156_b04",
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{
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"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
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{
"canonical_unit": "count",
"code": 309,
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"domains": [
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"help": {
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"reality_en": "Value belongs to the declared compute reality.",
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},
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"key": "mc156_b05",
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"symbol": "B5",
"units": [
{
"code": 4309,
"factor": 1.0,
"key": "count",
"label": "count",
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}
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},
{
"canonical_unit": "count",
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"domains": [
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"help": {
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"reality_en": "Value belongs to the declared compute reality.",
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},
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"key": "mc156_b06",
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{
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"factor": 1.0,
"key": "count",
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{
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"help": {
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"reality_en": "Value belongs to the declared compute reality.",
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"what_en": "Packed assignment byte 7"
},
"icon": "B7",
"key": "mc156_b07",
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{
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"key": "count",
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{
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"domains": [
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"help": {
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"reality_en": "Value belongs to the declared compute reality.",
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},
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{
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"key": "count",
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{
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},
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{
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},
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{
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{
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},
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{
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{
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},
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{
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{
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},
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{
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"key": "count",
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},
{
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"help": {
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},
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"key": "mc156_b14",
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{
"code": 4318,
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"key": "count",
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]
},
{
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"help": {
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},
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{
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"key": "count",
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{
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},
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"key": "mc156_b16",
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{
"code": 4320,
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"key": "count",
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},
{
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"help": {
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"what_en": "Packed assignment byte 17"
},
"icon": "B17",
"key": "mc156_b17",
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"label_en": "Packed assignment byte 17",
"symbol": "B17",
"units": [
{
"code": 4321,
"factor": 1.0,
"key": "count",
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}
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},
{
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"help": {
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"what_cs": "Packed assignment byte 18",
"what_en": "Packed assignment byte 18"
},
"icon": "B18",
"key": "mc156_b18",
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"units": [
{
"code": 4322,
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"key": "count",
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},
{
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"help": {
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"what_en": "Packed assignment byte 19"
},
"icon": "B19",
"key": "mc156_b19",
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{
"code": 4323,
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"key": "count",
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},
{
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"what_en": "Cut value"
},
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"key": "mc156_cut",
"kind": "scalar",
"label_cs": "Cut value",
"label_en": "Cut value",
"symbol": "C",
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{
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"factor": 1.0,
"key": "count",
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]
},
{
"canonical_unit": "count",
"code": 325,
"default_max": 1000,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Strukturovaná součást IBM-156 benchmarku.",
"effect_en": "Structured component of the IBM-156 benchmark.",
"reality_cs": "Hodnota je součástí deklarované výpočetní reality.",
"reality_en": "Value belongs to the declared compute reality.",
"result_cs": "CML_Ax dekóduje realizovaný Max-Cut stav.",
"result_en": "CML_Ax decodes the realized Max-Cut state.",
"what_cs": "Evolution search step",
"what_en": "Evolution search step"
},
"icon": "k",
"key": "mc156_step",
"kind": "scalar",
"label_cs": "Evolution search step",
"label_en": "Evolution search step",
"symbol": "k",
"units": [
{
"code": 4325,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 340,
"default_max": 4294967295,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Kompaktní reprezentace 156bitového řezu.",
"effect_en": "Compact representation of the 156-bit cut.",
"reality_cs": "Přesný celočíselný blok; float64 jej reprezentuje beze ztráty.",
"reality_en": "Exact integer block; float64 represents it losslessly.",
"result_cs": "CML_Ax jej dekóduje na bitové přiřazení.",
"result_en": "CML_Ax decodes it to the bit assignment.",
"what_cs": "32bitový blok přiřazení 0",
"what_en": "32-bit assignment block 0"
},
"icon": "W0",
"key": "mc156_w00",
"kind": "scalar",
"label_cs": "Packed assignment word 0",
"label_en": "Packed assignment word 0",
"symbol": "W0",
"units": [
{
"code": 4340,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 341,
"default_max": 4294967295,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Kompaktní reprezentace 156bitového řezu.",
"effect_en": "Compact representation of the 156-bit cut.",
"reality_cs": "Přesný celočíselný blok; float64 jej reprezentuje beze ztráty.",
"reality_en": "Exact integer block; float64 represents it losslessly.",
"result_cs": "CML_Ax jej dekóduje na bitové přiřazení.",
"result_en": "CML_Ax decodes it to the bit assignment.",
"what_cs": "32bitový blok přiřazení 1",
"what_en": "32-bit assignment block 1"
},
"icon": "W1",
"key": "mc156_w01",
"kind": "scalar",
"label_cs": "Packed assignment word 1",
"label_en": "Packed assignment word 1",
"symbol": "W1",
"units": [
{
"code": 4341,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 342,
"default_max": 4294967295,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Kompaktní reprezentace 156bitového řezu.",
"effect_en": "Compact representation of the 156-bit cut.",
"reality_cs": "Přesný celočíselný blok; float64 jej reprezentuje beze ztráty.",
"reality_en": "Exact integer block; float64 represents it losslessly.",
"result_cs": "CML_Ax jej dekóduje na bitové přiřazení.",
"result_en": "CML_Ax decodes it to the bit assignment.",
"what_cs": "32bitový blok přiřazení 2",
"what_en": "32-bit assignment block 2"
},
"icon": "W2",
"key": "mc156_w02",
"kind": "scalar",
"label_cs": "Packed assignment word 2",
"label_en": "Packed assignment word 2",
"symbol": "W2",
"units": [
{
"code": 4342,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 343,
"default_max": 4294967295,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Kompaktní reprezentace 156bitového řezu.",
"effect_en": "Compact representation of the 156-bit cut.",
"reality_cs": "Přesný celočíselný blok; float64 jej reprezentuje beze ztráty.",
"reality_en": "Exact integer block; float64 represents it losslessly.",
"result_cs": "CML_Ax jej dekóduje na bitové přiřazení.",
"result_en": "CML_Ax decodes it to the bit assignment.",
"what_cs": "32bitový blok přiřazení 3",
"what_en": "32-bit assignment block 3"
},
"icon": "W3",
"key": "mc156_w03",
"kind": "scalar",
"label_cs": "Packed assignment word 3",
"label_en": "Packed assignment word 3",
"symbol": "W3",
"units": [
{
"code": 4343,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
},
{
"canonical_unit": "count",
"code": 344,
"default_max": 4294967295,
"default_min": 0,
"domains": [
"ibm_maxcut_156"
],
"help": {
"effect_cs": "Kompaktní reprezentace 156bitového řezu.",
"effect_en": "Compact representation of the 156-bit cut.",
"reality_cs": "Přesný celočíselný blok; float64 jej reprezentuje beze ztráty.",
"reality_en": "Exact integer block; float64 represents it losslessly.",
"result_cs": "CML_Ax jej dekóduje na bitové přiřazení.",
"result_en": "CML_Ax decodes it to the bit assignment.",
"what_cs": "32bitový blok přiřazení 4",
"what_en": "32-bit assignment block 4"
},
"icon": "W4",
"key": "mc156_w04",
"kind": "scalar",
"label_cs": "Packed assignment word 4",
"label_en": "Packed assignment word 4",
"symbol": "W4",
"units": [
{
"code": 4344,
"factor": 1.0,
"key": "count",
"label": "count",
"offset": 0.0
}
]
}
],
"vector_dimension": 64
}
SHA-256: d2c9f833a9d67ba950ddefe7b6c3246dc71ebba10a012359b81a56223620a259