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#radioactivedecay — Public Fediverse posts

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  1. Radioactive decay looks random.
    But randomness does not imply unconstrained transformation.

    New HybridMind42 paper: “Boundary-Filtered Persistence Under Irreducible Stochasticity”

    Core proposal: Persistence is not generated. Persistence is permitted.
    Using nuclear decay as a test domain, the paper explores: • admissible transformations (Ω) • boundary constraints (B) • mediator coupling (M) • stochastic realisation (P)

    Including: • radon vs thoron escape • nested admissibility • cascade amplification • falsification criteria

    Not a replacement for QM. A structural admissibility framework for stochastic systems.

    open.substack.com/pub/hybridmi

    #HybridMind42 #BFPF #NuclearPhysics #RadioactiveDecay #ComplexSystems

  2. Radioactive decay looks random.
    But randomness does not imply unconstrained transformation.

    New HybridMind42 paper: “Boundary-Filtered Persistence Under Irreducible Stochasticity”

    Core proposal: Persistence is not generated. Persistence is permitted.
    Using nuclear decay as a test domain, the paper explores: • admissible transformations (Ω) • boundary constraints (B) • mediator coupling (M) • stochastic realisation (P)

    Including: • radon vs thoron escape • nested admissibility • cascade amplification • falsification criteria

    Not a replacement for QM. A structural admissibility framework for stochastic systems.

    open.substack.com/pub/hybridmi

    #HybridMind42 #BFPF #NuclearPhysics #RadioactiveDecay #ComplexSystems

  3. Radioactive decay looks random.
    But randomness does not imply unconstrained transformation.

    New HybridMind42 paper: “Boundary-Filtered Persistence Under Irreducible Stochasticity”

    Core proposal: Persistence is not generated. Persistence is permitted.
    Using nuclear decay as a test domain, the paper explores: • admissible transformations (Ω) • boundary constraints (B) • mediator coupling (M) • stochastic realisation (P)

    Including: • radon vs thoron escape • nested admissibility • cascade amplification • falsification criteria

    Not a replacement for QM. A structural admissibility framework for stochastic systems.

    open.substack.com/pub/hybridmi

    #HybridMind42 #BFPF #NuclearPhysics #RadioactiveDecay #ComplexSystems

  4. Radioactive decay looks random.
    But randomness does not imply unconstrained transformation.

    New HybridMind42 paper: “Boundary-Filtered Persistence Under Irreducible Stochasticity”

    Core proposal: Persistence is not generated. Persistence is permitted.
    Using nuclear decay as a test domain, the paper explores: • admissible transformations (Ω) • boundary constraints (B) • mediator coupling (M) • stochastic realisation (P)

    Including: • radon vs thoron escape • nested admissibility • cascade amplification • falsification criteria

    Not a replacement for QM. A structural admissibility framework for stochastic systems.

    open.substack.com/pub/hybridmi

    #HybridMind42 #BFPF #NuclearPhysics #RadioactiveDecay #ComplexSystems

  5. Radioactive decay looks random.
    But randomness does not imply unconstrained transformation.

    New HybridMind42 paper: “Boundary-Filtered Persistence Under Irreducible Stochasticity”

    Core proposal: Persistence is not generated. Persistence is permitted.
    Using nuclear decay as a test domain, the paper explores: • admissible transformations (Ω) • boundary constraints (B) • mediator coupling (M) • stochastic realisation (P)

    Including: • radon vs thoron escape • nested admissibility • cascade amplification • falsification criteria

    Not a replacement for QM. A structural admissibility framework for stochastic systems.

    open.substack.com/pub/hybridmi

    #HybridMind42 #BFPF #NuclearPhysics #RadioactiveDecay #ComplexSystems

  6. @cdarwin

    The good thing is there is plenty of Uranium under your feet. The bad thing is takes time to decay and collect the byproduuct.

    Maybe the oil companies can have a better product?

    #Physics #RadioActiveDecay

  7. @cdarwin

    The good thing is there is plenty of Uranium under your feet. The bad thing is takes time to decay and collect the byproduuct.

    Maybe the oil companies can have a better product?

    #Physics #RadioActiveDecay

  8. @cdarwin

    The good thing is there is plenty of Uranium under your feet. The bad thing is takes time to decay and collect the byproduuct.

    Maybe the oil companies can have a better product?

    #Physics #RadioActiveDecay

  9. @cdarwin

    The good thing is there is plenty of Uranium under your feet. The bad thing is takes time to decay and collect the byproduuct.

    Maybe the oil companies can have a better product?

    #Physics #RadioActiveDecay

  10. @cdarwin

    The good thing is there is plenty of Uranium under your feet. The bad thing is takes time to decay and collect the byproduuct.

    Maybe the oil companies can have a better product?

    #Physics #RadioActiveDecay

  11. Physicists propose tabletop “neutrino laser” to probe ghost particles

    Trillions of ghostly particles called neutrinos stream through our bodies every second, slipping past atoms without a trace.…
    #NewsBeep #News #Physics #Bose-Einsteincondensate #ghostparticles #MITphysics #neutrinocommunication #neutrinolaser #particlephysics #quantumcoherence #radioactivedecay #rubidium-83 #Science #superradiance #UK #UnitedKingdom
    newsbeep.com/uk/127723/

  12. Physicists propose tabletop “neutrino laser” to probe ghost particles

    Trillions of ghostly particles called neutrinos stream through our bodies every second, slipping past atoms without a trace.…
    #NewsBeep #News #US #USA #UnitedStates #UnitedStatesOfAmerica #Physics #Bose-Einsteincondensate #ghostparticles #MITphysics #neutrinocommunication #neutrinolaser #PARTICLEPHYSICS #quantumcoherence #radioactivedecay #rubidium-83 #Science #superradiance
    newsbeep.com/us/143889/

  13. In 1913, Both Frederick Soddy and Kazimierz Fajans formulated the first law to describe how one radioactive isotope decays into another. #Poetry #Science #History #Physics #RadioactiveDecay #Soddy #Fajans (sharpgiving.com/thebookofscien)

  14. In 1913, Both Frederick Soddy and Kazimierz Fajans formulated the first law to describe how one radioactive isotope decays into another. #Poetry #Science #History #Physics #RadioactiveDecay #Soddy #Fajans (sharpgiving.com/thebookofscien)

  15. In 1913, Both Frederick Soddy and Kazimierz Fajans formulated the first law to describe how one radioactive isotope decays into another. #Poetry #Science #History #Physics #RadioactiveDecay #Soddy #Fajans (sharpgiving.com/thebookofscien)

  16. In 1913, Both Frederick Soddy and Kazimierz Fajans formulated the first law to describe how one radioactive isotope decays into another. #Poetry #Science #History #Physics #RadioactiveDecay #Soddy #Fajans (sharpgiving.com/thebookofscien)

  17. In 1913, Both Frederick Soddy and Kazimierz Fajans formulated the first law to describe how one radioactive isotope decays into another. #Poetry #Science #History #Physics #RadioactiveDecay #Soddy #Fajans (sharpgiving.com/thebookofscien)

  18. #Harvard #Natural #Sciences #Cloud #Chamber

    …"The trajectories of individual charged #particles leave behind #cloudy trails as they #ionize the cooled, supersaturated air-alcohol vapor inside this diffusion #cloudChamber. Alpha particles from the #radioactiveDecay of an inserted 2% #thorium alloy rod form dense condensation trails nearby"…

    (Read the entire text on the Youtube page.)

    🔗 youtube.com/watch?v=e3fi6uyyrE 06 Mar 2014
    🔗 en.wikipedia.org/wiki/Cloud_ch

    #Community #TimeTravel #Research #detector

  19. #Harvard #Natural #Sciences #Cloud #Chamber

    …"The trajectories of individual charged #particles leave behind #cloudy trails as they #ionize the cooled, supersaturated air-alcohol vapor inside this diffusion #cloudChamber. Alpha particles from the #radioactiveDecay of an inserted 2% #thorium alloy rod form dense condensation trails nearby"…

    (Read the entire text on the Youtube page.)

    🔗 youtube.com/watch?v=e3fi6uyyrE 06 Mar 2014
    🔗 en.wikipedia.org/wiki/Cloud_ch

    #Community #TimeTravel #Research #detector

  20. #Harvard #Natural #Sciences #Cloud #Chamber

    …"The trajectories of individual charged #particles leave behind #cloudy trails as they #ionize the cooled, supersaturated air-alcohol vapor inside this diffusion #cloudChamber. Alpha particles from the #radioactiveDecay of an inserted 2% #thorium alloy rod form dense condensation trails nearby"…

    (Read the entire text on the Youtube page.)

    🔗 youtube.com/watch?v=e3fi6uyyrE 06 Mar 2014
    🔗 en.wikipedia.org/wiki/Cloud_ch

    #Community #TimeTravel #Research #detector

  21. #Harvard #Natural #Sciences #Cloud #Chamber

    …"The trajectories of individual charged #particles leave behind #cloudy trails as they #ionize the cooled, supersaturated air-alcohol vapor inside this diffusion #cloudChamber. Alpha particles from the #radioactiveDecay of an inserted 2% #thorium alloy rod form dense condensation trails nearby"…

    (Read the entire text on the Youtube page.)

    🔗 youtube.com/watch?v=e3fi6uyyrE 06 Mar 2014
    🔗 en.wikipedia.org/wiki/Cloud_ch

    #Community #TimeTravel #Research #detector

  22. #Harvard #Natural #Sciences #Cloud #Chamber

    …"The trajectories of individual charged #particles leave behind #cloudy trails as they #ionize the cooled, supersaturated air-alcohol vapor inside this diffusion #cloudChamber. Alpha particles from the #radioactiveDecay of an inserted 2% #thorium alloy rod form dense condensation trails nearby"…

    (Read the entire text on the Youtube page.)

    🔗 youtube.com/watch?v=e3fi6uyyrE 06 Mar 2014
    🔗 en.wikipedia.org/wiki/Cloud_ch

    #Community #TimeTravel #Research #detector