{
 "@context": "https://schema.org",
 "@type": "DefinedTerm",
 "@id": "https://wulfkaal.github.io/entities/computational-efficiency",
 "identifier": "kaal:entity:computational-efficiency",
 "name": "Computational efficiency",
 "termCode": "computational-efficiency",
 "inDefinedTermSet": {
  "@id": "https://wulfkaal.github.io/entities/index.json"
 },
 "author": {
  "@type": "Person",
  "name": "Wulf A. Kaal",
  "identifier": "https://orcid.org/0000-0003-0757-275X"
 },
 "dateModified": "2026-07-29",
 "canonicalForm": "https://wulfkaal.github.io/entities/computational-efficiency.md",
 "sha256": "ef8b429f75dacf9ca8824028f9ddbf834efa9a023cba331fd4107cb2328fb7c0",
 "additionalProperty": [
  {
   "@type": "PropertyValue",
   "name": "status",
   "value": "derived"
  },
  {
   "@type": "PropertyValue",
   "name": "claim_count",
   "value": 2
  },
  {
   "@type": "PropertyValue",
   "name": "work_count",
   "value": 2
  },
  {
   "@type": "PropertyValue",
   "name": "year_span",
   "value": [
    "2024",
    "2024"
   ]
  },
  {
   "@type": "PropertyValue",
   "name": "non_current_claims",
   "value": 0
  }
 ],
 "subjectOf": [
  {
   "@type": "Claim",
   "@id": "https://wulfkaal.github.io/claims/4900878-002",
   "identifier": "kaal:claim:4900878-002",
   "text": "Because qubits hold multiple states simultaneously, quantum computers can perform complex calculations far faster than classical machines, and in a quantum economy this computational power can be used to solve intricate economic models, optimize resource allocation, and improve decision making across sectors.",
   "abstract": "In the context of the quantum economy, this increased computational power can be harnessed to solve intricate economic models, optimize resource allocation, and enhance decision-making processes across various sectors.",
   "citation": "Wulf A. Kaal, Quantum Economy and Tokenomics (2024). SSRN: https://ssrn.com/abstract=4900878",
   "datePublished": "2024",
   "claim_type": "mechanism",
   "confidence": "asserted",
   "is_failure_mode": false,
   "scope_conditions": [
    "assumes continued advance of quantum computing hardware"
   ],
   "source_pdf_sha256": "75bf96d3b751b4ad0a6ca4a32591cf026094f113e3a372aa6c61790941b391f7",
   "status": "current"
  },
  {
   "@type": "Claim",
   "@id": "https://wulfkaal.github.io/claims/4900880-004",
   "identifier": "kaal:claim:4900880-004",
   "text": "Quantum computers gain their advantage over classical computers because qubits can hold multiple states simultaneously through superposition, which lets complex calculations run at exponentially faster rates than binary bit processing allows.",
   "abstract": "In contrast, quantum computers use qubits, which can exist in multiple states simultaneously due to superposition. This capability allows quantum computers to perform complex calculations at exponentially faster rates than classical computers.",
   "citation": "Wulf A. Kaal, Quantum Economy and the Future of Work (2024). SSRN: https://ssrn.com/abstract=4900880",
   "datePublished": "2024",
   "claim_type": "mechanism",
   "confidence": "asserted",
   "is_failure_mode": false,
   "scope_conditions": [],
   "source_pdf_sha256": "64ea6e8b7cfb3d9a83801eba54f9b87182b842a963273ddab7f2d5305639db73",
   "status": "current"
  }
 ],
 "description": "2 claims in the published works of Wulf A. Kaal carry the concept tag 'computational-efficiency'. Derived node: a roster, not an adjudicated definition."
}