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#radon222 — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #radon222, aggregated by home.social.

  1. New paper live from HybridMind42.

    “The Limit-State Regime: Latency-Limited Persistence in the Thorium-232 → Lead-208 Decay Series”

    This paper introduces the Resolution–Transport Ratio (R):

    R = τ_transport / τ_resolution

    The core result is simple:

    Identical boundaries can behave as effectively open or closed depending on whether transport or stochastic resolution completes first.

    Using the Thoron vs Radon-222 comparison, the paper proposes that effective permeability is governed not solely by material structure, but by competing timescales.

    This establishes the “limit-state regime” of the Boundary-Filtered Persistence Framework (BFPF).

    Persistence becomes a measurable competition between clocks.

    open.substack.com/pub/hybridmi

    #BoundaryDynamics #BFPF #Thorium232 #Radon222 #Geochemistry #SystemsScience #Persistence

  2. New paper live from HybridMind42.

    “The Limit-State Regime: Latency-Limited Persistence in the Thorium-232 → Lead-208 Decay Series”

    This paper introduces the Resolution–Transport Ratio (R):

    R = τ_transport / τ_resolution

    The core result is simple:

    Identical boundaries can behave as effectively open or closed depending on whether transport or stochastic resolution completes first.

    Using the Thoron vs Radon-222 comparison, the paper proposes that effective permeability is governed not solely by material structure, but by competing timescales.

    This establishes the “limit-state regime” of the Boundary-Filtered Persistence Framework (BFPF).

    Persistence becomes a measurable competition between clocks.

    open.substack.com/pub/hybridmi

    #BoundaryDynamics #BFPF #Thorium232 #Radon222 #Geochemistry #SystemsScience #Persistence

  3. New paper live from HybridMind42.

    “The Limit-State Regime: Latency-Limited Persistence in the Thorium-232 → Lead-208 Decay Series”

    This paper introduces the Resolution–Transport Ratio (R):

    R = τ_transport / τ_resolution

    The core result is simple:

    Identical boundaries can behave as effectively open or closed depending on whether transport or stochastic resolution completes first.

    Using the Thoron vs Radon-222 comparison, the paper proposes that effective permeability is governed not solely by material structure, but by competing timescales.

    This establishes the “limit-state regime” of the Boundary-Filtered Persistence Framework (BFPF).

    Persistence becomes a measurable competition between clocks.

    open.substack.com/pub/hybridmi

    #BoundaryDynamics #BFPF #Thorium232 #Radon222 #Geochemistry #SystemsScience #Persistence

  4. New paper live from HybridMind42.

    “The Limit-State Regime: Latency-Limited Persistence in the Thorium-232 → Lead-208 Decay Series”

    This paper introduces the Resolution–Transport Ratio (R):

    R = τ_transport / τ_resolution

    The core result is simple:

    Identical boundaries can behave as effectively open or closed depending on whether transport or stochastic resolution completes first.

    Using the Thoron vs Radon-222 comparison, the paper proposes that effective permeability is governed not solely by material structure, but by competing timescales.

    This establishes the “limit-state regime” of the Boundary-Filtered Persistence Framework (BFPF).

    Persistence becomes a measurable competition between clocks.

    open.substack.com/pub/hybridmi

    #BoundaryDynamics #BFPF #Thorium232 #Radon222 #Geochemistry #SystemsScience #Persistence

  5. New paper live from HybridMind42.

    “The Limit-State Regime: Latency-Limited Persistence in the Thorium-232 → Lead-208 Decay Series”

    This paper introduces the Resolution–Transport Ratio (R):

    R = τ_transport / τ_resolution

    The core result is simple:

    Identical boundaries can behave as effectively open or closed depending on whether transport or stochastic resolution completes first.

    Using the Thoron vs Radon-222 comparison, the paper proposes that effective permeability is governed not solely by material structure, but by competing timescales.

    This establishes the “limit-state regime” of the Boundary-Filtered Persistence Framework (BFPF).

    Persistence becomes a measurable competition between clocks.

    open.substack.com/pub/hybridmi

    #BoundaryDynamics #BFPF #Thorium232 #Radon222 #Geochemistry #SystemsScience #Persistence