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#mineralphysics — Public Fediverse posts

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

  1. Researchers have identified a practical upper bound for material viscosity, estimated at 10³⁰±² Pa s, beyond which substances function as essentially rigid bodies over finite timescales.
    #Geophysics #MineralPhysics #FluidDynamics #MaterialsScience #sflorg
    sflorg.com/2026/07/phy07062601

  2. Researchers have identified a practical upper bound for material viscosity, estimated at 10³⁰±² Pa s, beyond which substances function as essentially rigid bodies over finite timescales.
    #Geophysics #MineralPhysics #FluidDynamics #MaterialsScience #sflorg
    sflorg.com/2026/07/phy07062601

  3. Researchers have identified a practical upper bound for material viscosity, estimated at 10³⁰±² Pa s, beyond which substances function as essentially rigid bodies over finite timescales.
    #Geophysics #MineralPhysics #FluidDynamics #MaterialsScience #sflorg
    sflorg.com/2026/07/phy07062601

  4. Researchers have identified a practical upper bound for material viscosity, estimated at 10³⁰±² Pa s, beyond which substances function as essentially rigid bodies over finite timescales.
    #Geophysics #MineralPhysics #FluidDynamics #MaterialsScience #sflorg
    sflorg.com/2026/07/phy07062601

  5. Researchers have identified a practical upper bound for material viscosity, estimated at 10³⁰±² Pa s, beyond which substances function as essentially rigid bodies over finite timescales.
    #Geophysics #MineralPhysics #FluidDynamics #MaterialsScience #sflorg
    sflorg.com/2026/07/phy07062601

  6. MSA mailing list relayed the news that Joe Smyth of the University of Colorado at Boulder has died.

    From a remembrance by G. Diego Gatta & Fabrizio Nestola:

    Joe was among the founders of the field of mineral physics. He predicted that the structure of wadsleyite would incorporate hydrogen through point defects in quantities sufficient to reach oceanic volumes of H₂O, with implications for the history of water and plate tectonics on Earth.

    pubs.geoscienceworld.org/msa/a

  7. MSA mailing list relayed the news that Joe Smyth of the University of Colorado at Boulder has died.

    From a remembrance by G. Diego Gatta & Fabrizio Nestola:

    Joe was among the founders of the field of mineral physics. He predicted that the structure of wadsleyite would incorporate hydrogen through point defects in quantities sufficient to reach oceanic volumes of H₂O, with implications for the history of water and plate tectonics on Earth.

    pubs.geoscienceworld.org/msa/a

    #Geology #MineralPhysics

  8. MSA mailing list relayed the news that Joe Smyth of the University of Colorado at Boulder has died.

    From a remembrance by G. Diego Gatta & Fabrizio Nestola:

    Joe was among the founders of the field of mineral physics. He predicted that the structure of wadsleyite would incorporate hydrogen through point defects in quantities sufficient to reach oceanic volumes of H₂O, with implications for the history of water and plate tectonics on Earth.

    pubs.geoscienceworld.org/msa/a

    #Geology #MineralPhysics

  9. MSA mailing list relayed the news that Joe Smyth of the University of Colorado at Boulder has died.

    From a remembrance by G. Diego Gatta & Fabrizio Nestola:

    Joe was among the founders of the field of mineral physics. He predicted that the structure of wadsleyite would incorporate hydrogen through point defects in quantities sufficient to reach oceanic volumes of H₂O, with implications for the history of water and plate tectonics on Earth.

    pubs.geoscienceworld.org/msa/a

    #Geology #MineralPhysics

  10. MSA mailing list relayed the news that Joe Smyth of the University of Colorado at Boulder has died.

    From a remembrance by G. Diego Gatta & Fabrizio Nestola:

    Joe was among the founders of the field of mineral physics. He predicted that the structure of wadsleyite would incorporate hydrogen through point defects in quantities sufficient to reach oceanic volumes of H₂O, with implications for the history of water and plate tectonics on Earth.

    pubs.geoscienceworld.org/msa/a

    #Geology #MineralPhysics