{
  "boundary": "This artifact measures H11X-native capability liquidity. It is not a claim of external liquidity, exchange listing, bank balance, fiat redemption, securities compliance, or guaranteed market value.",
  "doctrine": "H11X Meta-Liquidity: Liquidity = Capability.",
  "equations": {
    "emergence_liquidity": {
      "formula": "EML = product((1 + L_i), i=1..21) - 1",
      "meaning": "Emergence is the multiplicative interaction gain across the first 21 layers.",
      "variables": {
        "L1": "OL",
        "L10": "AL",
        "L11": "PL",
        "L12": "IFL",
        "L13": "ML",
        "L14": "XL",
        "L15": "TL",
        "L16": "CVL",
        "L17": "RL",
        "L18": "TrL",
        "L19": "SL",
        "L2": "KL",
        "L20": "INL",
        "L21": "SVL",
        "L3": "DL",
        "L4": "RsL",
        "L5": "IL",
        "L6": "CL",
        "L7": "EL",
        "L8": "BL",
        "L9": "HL",
        "L_i": "Individual Liquidity Layer",
        "i": "Layer Index (1-21)"
      }
    },
    "h11x_capability_index": {
      "formula": "HCI = ULR * TrL * EML",
      "meaning": "HCI binds total reserve, validation strength, and emergence into one capability index.",
      "variables": {
        "EML": "Emergence Liquidity",
        "TrL": "Trust Liquidity",
        "ULR": "Universal Liquidity Reserve"
      }
    },
    "h11x_meta_currency_value": {
      "formula": "H11X = (HCI * CIV) / Supply",
      "meaning": "The sample value model expresses capability backing per unit of dynamic H11X supply.",
      "variables": {
        "CIV": "Civilization Capability Score",
        "HCI": "H11X Capability Index",
        "Supply": "Dynamic H11X Supply"
      }
    },
    "universal_liquidity_reserve": {
      "formula": "ULR = OL + KL + DL + RsL + IL + CL + EL + BL + HL + AL + PL + IFL + ML + XL + TL + CVL + RL + TrL + SL + INL + SVL + EML",
      "meaning": "The H11X Universal Liquidity Reserve is the sum of all 22 liquidity layers.",
      "variables": {
        "AL": "Automation Liquidity",
        "BL": "Bandwidth Liquidity",
        "CL": "Compute Liquidity",
        "CVL": "Convergence Liquidity",
        "DL": "Data Liquidity",
        "EL": "Energy Liquidity",
        "EML": "Emergence Liquidity",
        "HL": "Human Liquidity",
        "IFL": "Infrastructure Liquidity",
        "IL": "Intelligence Liquidity",
        "INL": "Innovation Liquidity",
        "KL": "Knowledge Liquidity",
        "ML": "Mobility Liquidity",
        "OL": "Origin Liquidity",
        "PL": "Production Liquidity",
        "RL": "Resolution Liquidity",
        "RsL": "Resource Liquidity",
        "SL": "Security Liquidity",
        "SVL": "Sovereignty Liquidity",
        "TL": "Time Liquidity",
        "TrL": "Trust Liquidity",
        "XL": "Exchange Liquidity"
      }
    }
  },
  "framework": {
    "fundamental_domain_count": 33,
    "liquidity_layer_count": 22,
    "name": "H11X Universal Liquidity Framework",
    "summary": "The 33 Domains describe what exists; the 22 Liquidity Layers describe how capability flows; H11X represents civilization-scale capability generation per unit of dynamic supply."
  },
  "fundamental_domains": [
    {
      "group": "origin",
      "id": 1,
      "name": "Origin"
    },
    {
      "group": "origin",
      "id": 2,
      "name": "Identity"
    },
    {
      "group": "origin",
      "id": 3,
      "name": "Space"
    },
    {
      "group": "origin",
      "id": 4,
      "name": "Time"
    },
    {
      "group": "origin",
      "id": 5,
      "name": "Matter"
    },
    {
      "group": "origin",
      "id": 6,
      "name": "Energy"
    },
    {
      "group": "origin",
      "id": 7,
      "name": "Information"
    },
    {
      "group": "origin",
      "id": 8,
      "name": "Knowledge"
    },
    {
      "group": "origin",
      "id": 9,
      "name": "Intelligence"
    },
    {
      "group": "origin",
      "id": 10,
      "name": "Conscious Agency"
    },
    {
      "group": "origin",
      "id": 11,
      "name": "Emergence"
    },
    {
      "group": "human",
      "id": 12,
      "name": "Trust"
    },
    {
      "group": "human",
      "id": 13,
      "name": "Skill"
    },
    {
      "group": "human",
      "id": 14,
      "name": "Labor"
    },
    {
      "group": "human",
      "id": 15,
      "name": "Education"
    },
    {
      "group": "human",
      "id": 16,
      "name": "Culture"
    },
    {
      "group": "human",
      "id": 17,
      "name": "Collaboration"
    },
    {
      "group": "human",
      "id": 18,
      "name": "Governance"
    },
    {
      "group": "human",
      "id": 19,
      "name": "Sovereignty"
    },
    {
      "group": "digital",
      "id": 20,
      "name": "Data"
    },
    {
      "group": "digital",
      "id": 21,
      "name": "Compute"
    },
    {
      "group": "digital",
      "id": 22,
      "name": "Storage"
    },
    {
      "group": "digital",
      "id": 23,
      "name": "Bandwidth"
    },
    {
      "group": "digital",
      "id": 24,
      "name": "Automation"
    },
    {
      "group": "digital",
      "id": 25,
      "name": "Artificial Intelligence"
    },
    {
      "group": "digital",
      "id": 26,
      "name": "Cybersecurity"
    },
    {
      "group": "economic",
      "id": 27,
      "name": "Resources"
    },
    {
      "group": "economic",
      "id": 28,
      "name": "Infrastructure"
    },
    {
      "group": "economic",
      "id": 29,
      "name": "Production"
    },
    {
      "group": "economic",
      "id": 30,
      "name": "Exchange"
    },
    {
      "group": "economic",
      "id": 31,
      "name": "Mobility"
    },
    {
      "group": "evolution",
      "id": 32,
      "name": "Innovation"
    },
    {
      "group": "evolution",
      "id": 33,
      "name": "Evolution"
    }
  ],
  "generated_at": "2026-06-03T00:00:00Z",
  "layer_index_map": {
    "L1": "OL",
    "L10": "AL",
    "L11": "PL",
    "L12": "IFL",
    "L13": "ML",
    "L14": "XL",
    "L15": "TL",
    "L16": "CVL",
    "L17": "RL",
    "L18": "TrL",
    "L19": "SL",
    "L2": "KL",
    "L20": "INL",
    "L21": "SVL",
    "L3": "DL",
    "L4": "RsL",
    "L5": "IL",
    "L6": "CL",
    "L7": "EL",
    "L8": "BL",
    "L9": "HL"
  },
  "layers": [
    {
      "formula": "OL = O * A * V",
      "id": "OL",
      "index": 1,
      "inputs": {
        "A": "Authenticity Score",
        "O": "Origin Strength",
        "V": "Verification Score"
      },
      "meaning": "Source authenticity and origin strength become liquid when origin, authenticity, and verification agree.",
      "name": "Origin Liquidity",
      "sample_inputs": {
        "A": "0.900000",
        "O": "0.940000",
        "V": "0.910000"
      },
      "value": "0.769860",
      "variables": {
        "A": "Authenticity Score",
        "O": "Origin Strength",
        "V": "Verification Score"
      }
    },
    {
      "formula": "KL = K * U * V",
      "id": "KL",
      "index": 2,
      "inputs": {
        "K": "Knowledge Volume",
        "U": "Knowledge Utilization",
        "V": "Knowledge Verification"
      },
      "meaning": "Usable knowledge becomes capability when volume, utilization, and verification reinforce each other.",
      "name": "Knowledge Liquidity",
      "sample_inputs": {
        "K": "0.760000",
        "U": "0.820000",
        "V": "0.880000"
      },
      "value": "0.548416",
      "variables": {
        "K": "Knowledge Volume",
        "U": "Knowledge Utilization",
        "V": "Knowledge Verification"
      }
    },
    {
      "formula": "DL = D * A * Q",
      "id": "DL",
      "index": 3,
      "inputs": {
        "A": "Accessibility",
        "D": "Data Volume",
        "Q": "Data Quality"
      },
      "meaning": "Information becomes usable when data volume is accessible and high quality.",
      "name": "Data Liquidity",
      "sample_inputs": {
        "A": "0.860000",
        "D": "0.720000",
        "Q": "0.900000"
      },
      "value": "0.557280",
      "variables": {
        "A": "Accessibility",
        "D": "Data Volume",
        "Q": "Data Quality"
      }
    },
    {
      "formula": "RsL = R * E * A",
      "id": "RsL",
      "index": 4,
      "inputs": {
        "A": "Availability",
        "E": "Extraction Efficiency",
        "R": "Resource Quantity"
      },
      "meaning": "Physical resource availability is scored through quantity, extraction efficiency, and availability.",
      "name": "Resource Liquidity",
      "sample_inputs": {
        "A": "0.840000",
        "E": "0.730000",
        "R": "0.650000"
      },
      "value": "0.398580",
      "variables": {
        "A": "Availability",
        "E": "Extraction Efficiency",
        "R": "Resource Quantity"
      }
    },
    {
      "formula": "IL = R * S * A",
      "id": "IL",
      "index": 5,
      "inputs": {
        "A": "Accuracy",
        "R": "Reasoning Capability",
        "S": "Solution Effectiveness"
      },
      "meaning": "Reasoning becomes liquid when it produces effective and accurate solutions.",
      "name": "Intelligence Liquidity",
      "sample_inputs": {
        "A": "0.910000",
        "R": "0.880000",
        "S": "0.840000"
      },
      "value": "0.672672",
      "variables": {
        "A": "Accuracy",
        "R": "Reasoning Capability",
        "S": "Solution Effectiveness"
      }
    },
    {
      "formula": "CL = C * U * E",
      "id": "CL",
      "index": 6,
      "inputs": {
        "C": "Compute Capacity",
        "E": "Compute Efficiency",
        "U": "Utilization Rate"
      },
      "meaning": "Available computation is scored by capacity, utilization rate, and efficiency.",
      "name": "Compute Liquidity",
      "sample_inputs": {
        "C": "0.790000",
        "E": "0.860000",
        "U": "0.670000"
      },
      "value": "0.455198",
      "variables": {
        "C": "Compute Capacity",
        "E": "Compute Efficiency",
        "U": "Utilization Rate"
      }
    },
    {
      "formula": "EL = P * T * A",
      "id": "EL",
      "index": 7,
      "inputs": {
        "A": "Energy Availability",
        "P": "Power Output",
        "T": "Operational Time"
      },
      "meaning": "Usable power generation is scored by output, operational time, and availability.",
      "name": "Energy Liquidity",
      "sample_inputs": {
        "A": "0.830000",
        "P": "0.680000",
        "T": "0.740000"
      },
      "value": "0.417656",
      "variables": {
        "A": "Energy Availability",
        "P": "Power Output",
        "T": "Operational Time"
      }
    },
    {
      "formula": "BL = B * L * A",
      "id": "BL",
      "index": 8,
      "inputs": {
        "A": "Availability",
        "B": "Bandwidth Capacity",
        "L": "Link Reliability"
      },
      "meaning": "Communication throughput becomes liquid through bandwidth, reliability, and availability.",
      "name": "Bandwidth Liquidity",
      "sample_inputs": {
        "A": "0.850000",
        "B": "0.810000",
        "L": "0.780000"
      },
      "value": "0.537030",
      "variables": {
        "A": "Availability",
        "B": "Bandwidth Capacity",
        "L": "Link Reliability"
      }
    },
    {
      "formula": "HL = S * E * X",
      "id": "HL",
      "index": 9,
      "inputs": {
        "E": "Experience",
        "S": "Skill Level",
        "X": "Expertise"
      },
      "meaning": "Human capability is scored through skill, experience, and expertise.",
      "name": "Human Liquidity",
      "sample_inputs": {
        "E": "0.770000",
        "S": "0.820000",
        "X": "0.800000"
      },
      "value": "0.505120",
      "variables": {
        "E": "Experience",
        "S": "Skill Level",
        "X": "Expertise"
      }
    },
    {
      "formula": "AL = A * P * R",
      "id": "AL",
      "index": 10,
      "inputs": {
        "A": "Automation Coverage",
        "P": "Process Efficiency",
        "R": "Reliability"
      },
      "meaning": "Autonomous execution is scored by automation coverage, process efficiency, and reliability.",
      "name": "Automation Liquidity",
      "sample_inputs": {
        "A": "0.690000",
        "P": "0.730000",
        "R": "0.880000"
      },
      "value": "0.443256",
      "variables": {
        "A": "Automation Coverage",
        "P": "Process Efficiency",
        "R": "Reliability"
      }
    },
    {
      "formula": "PL = O * Q * E",
      "id": "PL",
      "index": 11,
      "inputs": {
        "E": "Production Efficiency",
        "O": "Output Quantity",
        "Q": "Output Quality"
      },
      "meaning": "Output generation is scored by quantity, quality, and production efficiency.",
      "name": "Production Liquidity",
      "sample_inputs": {
        "E": "0.760000",
        "O": "0.710000",
        "Q": "0.840000"
      },
      "value": "0.453264",
      "variables": {
        "E": "Production Efficiency",
        "O": "Output Quantity",
        "Q": "Output Quality"
      }
    },
    {
      "formula": "IFL = I * U * A",
      "id": "IFL",
      "index": 12,
      "inputs": {
        "A": "Availability",
        "I": "Infrastructure Capacity",
        "U": "Utilization"
      },
      "meaning": "Infrastructure capacity becomes liquid when it is utilized and available.",
      "name": "Infrastructure Liquidity",
      "sample_inputs": {
        "A": "0.870000",
        "I": "0.780000",
        "U": "0.720000"
      },
      "value": "0.488592",
      "variables": {
        "A": "Availability",
        "I": "Infrastructure Capacity",
        "U": "Utilization"
      }
    },
    {
      "formula": "ML = M * S * E",
      "id": "ML",
      "index": 13,
      "inputs": {
        "E": "Mobility Efficiency",
        "M": "Mobility Capacity",
        "S": "Speed"
      },
      "meaning": "Movement of people, goods, and services is scored by capacity, speed, and efficiency.",
      "name": "Mobility Liquidity",
      "sample_inputs": {
        "E": "0.820000",
        "M": "0.660000",
        "S": "0.750000"
      },
      "value": "0.405900",
      "variables": {
        "E": "Mobility Efficiency",
        "M": "Mobility Capacity",
        "S": "Speed"
      }
    },
    {
      "formula": "XL = T * V * E",
      "id": "XL",
      "index": 14,
      "inputs": {
        "E": "Exchange Efficiency",
        "T": "Transaction Volume",
        "V": "Velocity"
      },
      "meaning": "Value transfer capability is scored by transaction volume, velocity, and exchange efficiency.",
      "name": "Exchange Liquidity",
      "sample_inputs": {
        "E": "0.790000",
        "T": "0.740000",
        "V": "0.800000"
      },
      "value": "0.467680",
      "variables": {
        "E": "Exchange Efficiency",
        "T": "Transaction Volume",
        "V": "Velocity"
      }
    },
    {
      "formula": "TL = Ts / Tr",
      "id": "TL",
      "index": 15,
      "inputs": {
        "Tr": "Reference Time",
        "Ts": "Time Saved"
      },
      "meaning": "Time optimization is represented as time saved relative to a reference time window.",
      "name": "Time Liquidity",
      "sample_inputs": {
        "Tr": "0.600000",
        "Ts": "0.420000"
      },
      "value": "0.700000",
      "variables": {
        "Tr": "Reference Time",
        "Ts": "Time Saved"
      }
    },
    {
      "formula": "CVL = Io / Ii",
      "id": "CVL",
      "index": 16,
      "inputs": {
        "Ii": "Integrated Input",
        "Io": "Integrated Output"
      },
      "meaning": "Integration efficiency is scored as integrated output relative to integrated input.",
      "name": "Convergence Liquidity",
      "sample_inputs": {
        "Ii": "0.800000",
        "Io": "0.640000"
      },
      "value": "0.800000",
      "variables": {
        "Ii": "Integrated Input",
        "Io": "Integrated Output"
      }
    },
    {
      "formula": "RL = P * F * V",
      "id": "RL",
      "index": 17,
      "inputs": {
        "F": "Finalization Rate",
        "P": "Problems Solved",
        "V": "Verification Score"
      },
      "meaning": "Solved-state generation is scored by problems solved, finalization, and verification.",
      "name": "Resolution Liquidity",
      "sample_inputs": {
        "F": "0.860000",
        "P": "0.810000",
        "V": "0.890000"
      },
      "value": "0.619974",
      "variables": {
        "F": "Finalization Rate",
        "P": "Problems Solved",
        "V": "Verification Score"
      }
    },
    {
      "formula": "TrL = V * A * P",
      "id": "TrL",
      "index": 18,
      "inputs": {
        "A": "Auditability",
        "P": "Provenance Integrity",
        "V": "Verification Strength"
      },
      "meaning": "Confidence is scored by verification strength, auditability, and provenance integrity.",
      "name": "Trust Liquidity",
      "sample_inputs": {
        "A": "0.880000",
        "P": "0.920000",
        "V": "0.900000"
      },
      "value": "0.728640",
      "variables": {
        "A": "Auditability",
        "P": "Provenance Integrity",
        "V": "Verification Strength"
      }
    },
    {
      "formula": "SL = C * P * R",
      "id": "SL",
      "index": 19,
      "inputs": {
        "C": "Security Coverage",
        "P": "Protection Strength",
        "R": "Resilience"
      },
      "meaning": "Protection capability is scored by coverage, protection strength, and resilience.",
      "name": "Security Liquidity",
      "sample_inputs": {
        "C": "0.830000",
        "P": "0.870000",
        "R": "0.900000"
      },
      "value": "0.649890",
      "variables": {
        "C": "Security Coverage",
        "P": "Protection Strength",
        "R": "Resilience"
      }
    },
    {
      "formula": "INL = N * I * A",
      "id": "INL",
      "index": 20,
      "inputs": {
        "A": "Adoption Rate",
        "I": "Impact",
        "N": "Novelty"
      },
      "meaning": "New capability generation is scored by novelty, impact, and adoption rate.",
      "name": "Innovation Liquidity",
      "sample_inputs": {
        "A": "0.720000",
        "I": "0.760000",
        "N": "0.680000"
      },
      "value": "0.372096",
      "variables": {
        "A": "Adoption Rate",
        "I": "Impact",
        "N": "Novelty"
      }
    },
    {
      "formula": "SVL = IC / ED",
      "id": "SVL",
      "index": 21,
      "inputs": {
        "ED": "External Dependency",
        "IC": "Internal Capability"
      },
      "meaning": "Independence capability is represented as internal capability relative to external dependency.",
      "name": "Sovereignty Liquidity",
      "sample_inputs": {
        "ED": "0.500000",
        "IC": "0.740000"
      },
      "value": "1.480000",
      "variables": {
        "ED": "External Dependency",
        "IC": "Internal Capability"
      }
    },
    {
      "formula": "EML = product((1 + L_i), i=1..21) - 1",
      "id": "EML",
      "index": 22,
      "inputs": {
        "L_i": "Individual Liquidity Layer",
        "i": "Layer Index (1-21)"
      },
      "meaning": "Net-new capability generated by interactions between the first 21 liquidity layers.",
      "name": "Emergence Liquidity",
      "sample_inputs": {
        "L1": "0.769860",
        "L10": "0.443256",
        "L11": "0.453264",
        "L12": "0.488592",
        "L13": "0.405900",
        "L14": "0.467680",
        "L15": "0.700000",
        "L16": "0.800000",
        "L17": "0.619974",
        "L18": "0.728640",
        "L19": "0.649890",
        "L2": "0.548416",
        "L20": "0.372096",
        "L21": "1.480000",
        "L3": "0.557280",
        "L4": "0.398580",
        "L5": "0.672672",
        "L6": "0.455198",
        "L7": "0.417656",
        "L8": "0.537030",
        "L9": "0.505120"
      },
      "value": "14766.683104",
      "variables": {
        "L_i": "Individual Liquidity Layer",
        "i": "Layer Index (1-21)"
      }
    }
  ],
  "meta_liquidity_breakthrough": {
    "capability_components": [
      "Origin Liquidity",
      "Knowledge Liquidity",
      "Data Liquidity",
      "Resource Liquidity",
      "Intelligence Liquidity",
      "Compute Liquidity",
      "Energy Liquidity",
      "Bandwidth Liquidity",
      "Human Liquidity",
      "Automation Liquidity",
      "Production Liquidity",
      "Infrastructure Liquidity",
      "Mobility Liquidity",
      "Exchange Liquidity",
      "Time Liquidity",
      "Convergence Liquidity",
      "Resolution Liquidity",
      "Trust Liquidity",
      "Security Liquidity",
      "Innovation Liquidity",
      "Sovereignty Liquidity",
      "Emergence Liquidity"
    ],
    "crypto": "Liquidity = Tokens",
    "h11x": "Liquidity = Capability",
    "traditional_finance": "Liquidity = Money"
  },
  "monetization_alignment": [
    "customer pilots create origin, trust, exchange, and resolution receipts",
    "crawler and proof layers turn public knowledge into searchable knowledge and data liquidity",
    "transaction acceleration converts bandwidth, compute, automation, and intelligence into measurable outcomes",
    "external money remains source-data observable and is not counted without real market, payment, bank, rail, or transaction data"
  ],
  "public_proof_endpoints": [
    "/h11x-next-generation-liquidity-stack.json",
    "/proof/next-generation-liquidity-stack.json"
  ],
  "sample_state": {
    "automation_liquidity": "0.443256",
    "bandwidth_liquidity": "0.537030",
    "civilization_liquidity_index": "0.012143171969",
    "compute_liquidity": "0.455198",
    "convergence_liquidity": "0.800000",
    "data_liquidity": "0.557280",
    "emergence_liquidity": "14766.683104",
    "energy_liquidity": "0.417656",
    "exchange_liquidity": "0.467680",
    "h11x_capability_index": "159017728.161392",
    "h11x_liquidity": "14779.154208",
    "h11x_meta_currency_value": "0.012143171969",
    "human_liquidity": "0.505120",
    "infrastructure_liquidity": "0.488592",
    "innovation_liquidity": "0.372096",
    "intelligence_liquidity": "0.672672",
    "knowledge_liquidity": "0.548416",
    "mobility_liquidity": "0.405900",
    "origin_liquidity": "0.769860",
    "production_liquidity": "0.453264",
    "resolution_liquidity": "0.619974",
    "resource_liquidity": "0.398580",
    "security_liquidity": "0.649890",
    "sovereignty_liquidity": "1.480000",
    "time_liquidity": "0.700000",
    "trust_liquidity": "0.728640",
    "universal_liquidity_reserve": "14779.154208"
  },
  "stack_hash": "58ab986109222fa345c6277d1ca0f6ca5aeb6a1b1b60caf21894b1a585b8425e",
  "status": "H11X_UNIVERSAL_LIQUIDITY_FRAMEWORK_READY",
  "version": "H11X_UNIVERSAL_LIQUIDITY_FRAMEWORK_V2",
  "public_urls": {
    "stack": "https://h11x.h11.world/h11x-next-generation-liquidity-stack.json",
    "proof": "https://h11x.h11.world/proof/next-generation-liquidity-stack.json"
  }
}
