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#appliedphysics — Public Fediverse posts

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

  1. A light-driven optical condensation technique that rapidly aggregates thousands of microparticles and bacteria into a single, microscopic focal point. This fiber-based method drastically increases detection speed and sensitivity for trace samples in liquids.
    #Biophysics #Optics #AppliedPhysics #Microbiology #sflorg
    sflorg.com/2026/05/biph0518260

  2. A light-driven optical condensation technique that rapidly aggregates thousands of microparticles and bacteria into a single, microscopic focal point. This fiber-based method drastically increases detection speed and sensitivity for trace samples in liquids.
    #Biophysics #Optics #AppliedPhysics #Microbiology #sflorg
    sflorg.com/2026/05/biph0518260

  3. Certain silicate minerals can rapidly convert atmospheric carbon dioxide (CO2) into solid carbonate rock, a process catalyzed by the presence of surface water.
    #Mineralogy #AppliedPhysics #SurfaceChemistry #Geochemistry #Environmental #sflorg
    sflorg.com/2026/04/es04292601.

  4. Certain silicate minerals can rapidly convert atmospheric carbon dioxide (CO2) into solid carbonate rock, a process catalyzed by the presence of surface water.
    #Mineralogy #AppliedPhysics #SurfaceChemistry #Geochemistry #Environmental #sflorg
    sflorg.com/2026/04/es04292601.

  5. Certain silicate minerals can rapidly convert atmospheric carbon dioxide (CO2) into solid carbonate rock, a process catalyzed by the presence of surface water.
    #Mineralogy #AppliedPhysics #SurfaceChemistry #Geochemistry #Environmental #sflorg
    sflorg.com/2026/04/es04292601.

  6. Certain silicate minerals can rapidly convert atmospheric carbon dioxide (CO2) into solid carbonate rock, a process catalyzed by the presence of surface water.
    #Mineralogy #AppliedPhysics #SurfaceChemistry #Geochemistry #Environmental #sflorg
    sflorg.com/2026/04/es04292601.

  7. Certain silicate minerals can rapidly convert atmospheric carbon dioxide (CO2) into solid carbonate rock, a process catalyzed by the presence of surface water.
    #Mineralogy #AppliedPhysics #SurfaceChemistry #Geochemistry #Environmental #sflorg
    sflorg.com/2026/04/es04292601.

  8. The application of a sparse layer of silica-gold nanoparticles to spintronic materials acts as a "light concentrator," significantly enhancing the efficiency of terahertz radiation generation.
    #Nanotechnology #Photonics #Spintronics #AppliedPhysics #sflorg
    sflorg.com/2026/04/nt04212602.

  9. The application of a sparse layer of silica-gold nanoparticles to spintronic materials acts as a "light concentrator," significantly enhancing the efficiency of terahertz radiation generation.
    #Nanotechnology #Photonics #Spintronics #AppliedPhysics #sflorg
    sflorg.com/2026/04/nt04212602.

  10. The application of a sparse layer of silica-gold nanoparticles to spintronic materials acts as a "light concentrator," significantly enhancing the efficiency of terahertz radiation generation.
    #Nanotechnology #Photonics #Spintronics #AppliedPhysics #sflorg
    sflorg.com/2026/04/nt04212602.

  11. The application of a sparse layer of silica-gold nanoparticles to spintronic materials acts as a "light concentrator," significantly enhancing the efficiency of terahertz radiation generation.
    #Nanotechnology #Photonics #Spintronics #AppliedPhysics #sflorg
    sflorg.com/2026/04/nt04212602.

  12. The application of a sparse layer of silica-gold nanoparticles to spintronic materials acts as a "light concentrator," significantly enhancing the efficiency of terahertz radiation generation.
    #Nanotechnology #Photonics #Spintronics #AppliedPhysics #sflorg
    sflorg.com/2026/04/nt04212602.

  13. By incorporating #magnetic elements into geometrically patterned elastic polymers, researchers can precisely control the sequence in which the material's intricate structures unfold or "snap" open under stress.
    #MaterialScience #Engineering #AppliedPhysics #sflorg
    sflorg.com/2026/03/ms03202603.

  14. By incorporating #magnetic elements into geometrically patterned elastic polymers, researchers can precisely control the sequence in which the material's intricate structures unfold or "snap" open under stress.
    #MaterialScience #Engineering #AppliedPhysics #sflorg
    sflorg.com/2026/03/ms03202603.

  15. By incorporating #magnetic elements into geometrically patterned elastic polymers, researchers can precisely control the sequence in which the material's intricate structures unfold or "snap" open under stress.
    #MaterialScience #Engineering #AppliedPhysics #sflorg
    sflorg.com/2026/03/ms03202603.

  16. By incorporating #magnetic elements into geometrically patterned elastic polymers, researchers can precisely control the sequence in which the material's intricate structures unfold or "snap" open under stress.
    #MaterialScience #Engineering #AppliedPhysics #sflorg
    sflorg.com/2026/03/ms03202603.

  17. By incorporating #magnetic elements into geometrically patterned elastic polymers, researchers can precisely control the sequence in which the material's intricate structures unfold or "snap" open under stress.
    #MaterialScience #Engineering #AppliedPhysics #sflorg
    sflorg.com/2026/03/ms03202603.

  18. Researchers have developed a non-invasive technique using terahertz waves to observe the internal electrical charge movements of fully packaged, operating #semiconductor chips without requiring physical contact or device deactivation.
    #ElectricalEngineering #AppliedPhysics #SemiconductorPhysics #Cybersecurity #sflorg
    sflorg.com/2026/03/eng03202601

  19. Researchers have developed a non-invasive technique using terahertz waves to observe the internal electrical charge movements of fully packaged, operating #semiconductor chips without requiring physical contact or device deactivation.
    #ElectricalEngineering #AppliedPhysics #SemiconductorPhysics #Cybersecurity #sflorg
    sflorg.com/2026/03/eng03202601

  20. Researchers have developed a non-invasive technique using terahertz waves to observe the internal electrical charge movements of fully packaged, operating #semiconductor chips without requiring physical contact or device deactivation.
    #ElectricalEngineering #AppliedPhysics #SemiconductorPhysics #Cybersecurity #sflorg
    sflorg.com/2026/03/eng03202601

  21. Researchers have developed a non-invasive technique using terahertz waves to observe the internal electrical charge movements of fully packaged, operating #semiconductor chips without requiring physical contact or device deactivation.
    #ElectricalEngineering #AppliedPhysics #SemiconductorPhysics #Cybersecurity #sflorg
    sflorg.com/2026/03/eng03202601

  22. Researchers have developed a non-invasive technique using terahertz waves to observe the internal electrical charge movements of fully packaged, operating #semiconductor chips without requiring physical contact or device deactivation.
    #ElectricalEngineering #AppliedPhysics #SemiconductorPhysics #Cybersecurity #sflorg
    sflorg.com/2026/03/eng03202601