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#nanotube — Public Fediverse posts

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

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  1. I still haven’t had much chance to carve this year, or catch up with the #PrinterSolstice prompts, so until I can, here’s a carbon-themed print from my portfolio: Millie Dresselhaus (née Spiewak; November 11, 1930 – February 20, 2017). She was a professor of physics and electrical engineering at MIT, known as the Queen of Carbon Science.
    🧵1/n

    #linocut #printmaking #engineering #physics #carbon #nanotube #buckyball #womenInSTEM #histsci #MastoArt

  2. I still haven’t had much chance to carve this year, or catch up with the #PrinterSolstice prompts, so until I can, here’s a carbon-themed print from my portfolio: Millie Dresselhaus (née Spiewak; November 11, 1930 – February 20, 2017). She was a professor of physics and electrical engineering at MIT, known as the Queen of Carbon Science.
    🧵1/n

    #linocut #printmaking #engineering #physics #carbon #nanotube #buckyball #womenInSTEM #histsci #MastoArt

  3. I still haven’t had much chance to carve this year, or catch up with the #PrinterSolstice prompts, so until I can, here’s a carbon-themed print from my portfolio: Millie Dresselhaus (née Spiewak; November 11, 1930 – February 20, 2017). She was a professor of physics and electrical engineering at MIT, known as the Queen of Carbon Science.
    🧵1/n

    #linocut #printmaking #engineering #physics #carbon #nanotube #buckyball #womenInSTEM #histsci #MastoArt

  4. I still haven’t had much chance to carve this year, or catch up with the #PrinterSolstice prompts, so until I can, here’s a carbon-themed print from my portfolio: Millie Dresselhaus (née Spiewak; November 11, 1930 – February 20, 2017). She was a professor of physics and electrical engineering at MIT, known as the Queen of Carbon Science.
    🧵1/n

    #linocut #printmaking #engineering #physics #carbon #nanotube #buckyball #womenInSTEM #histsci #MastoArt

  5. Happy birthday to Millie Dresselhaus (née Spiewak; November 11, 1930 – February 20, 2017). She was a professor of physics and electrical engineering at MIT, known as the Queen of Carbon Science.

    In this linocut I've shown her in front of a carbon nanotube. She was recognized for her work on graphite, graphite intercalation compounds, fullerenes (a form of carbon known as buckyballs, 🧵1/n

    #linocut #printmaking #engineering #physics #carbon #nanotube #buckyball #womenInSTEM #histsci #MastoArt

  6. Happy birthday to Millie Dresselhaus (née Spiewak; November 11, 1930 – February 20, 2017). She was a professor of physics and electrical engineering at MIT, known as the Queen of Carbon Science.

    In this linocut I've shown her in front of a carbon nanotube. She was recognized for her work on graphite, graphite intercalation compounds, fullerenes (a form of carbon known as buckyballs, 🧵1/n

    #linocut #printmaking #engineering #physics #carbon #nanotube #buckyball #womenInSTEM #histsci #MastoArt

  7. Happy birthday to Millie Dresselhaus (née Spiewak; November 11, 1930 – February 20, 2017). She was a professor of physics and electrical engineering at MIT, known as the Queen of Carbon Science.

    In this linocut I've shown her in front of a carbon nanotube. She was recognized for her work on graphite, graphite intercalation compounds, fullerenes (a form of carbon known as buckyballs, 🧵1/n

    #linocut #printmaking #engineering #physics #carbon #nanotube #buckyball #womenInSTEM #histsci #MastoArt

  8. Happy birthday to Millie Dresselhaus (née Spiewak; November 11, 1930 – February 20, 2017). She was a professor of physics and electrical engineering at MIT, known as the Queen of Carbon Science.

    In this linocut I've shown her in front of a carbon nanotube. She was recognized for her work on graphite, graphite intercalation compounds, fullerenes (a form of carbon known as buckyballs, 🧵1/n

    #linocut #printmaking #engineering #physics #carbon #nanotube #buckyball #womenInSTEM #histsci #MastoArt

  9. #Carbon #nanotube use in lightweight, high-performance armor materials, for example, in shields 🛡️ around #spacecraft to mitigate damage from flying high-speed #microdebris. "By adding Kevlar nanofibers, we were able to achieve nearly 100% 📈 improvement in energy dissipation performance at certain supersonic impact 💥 velocities" news.wisc.edu/new-lightweight-

    #SpaceDebris

  10. #Carbon #nanotube use in lightweight, high-performance armor materials, for example, in shields 🛡️ around #spacecraft to mitigate damage from flying high-speed #microdebris. "By adding Kevlar nanofibers, we were able to achieve nearly 100% 📈 improvement in energy dissipation performance at certain supersonic impact 💥 velocities" news.wisc.edu/new-lightweight-

    #SpaceDebris

  11. #Carbon #nanotube use in lightweight, high-performance armor materials, for example, in shields 🛡️ around #spacecraft to mitigate damage from flying high-speed #microdebris. "By adding Kevlar nanofibers, we were able to achieve nearly 100% 📈 improvement in energy dissipation performance at certain supersonic impact 💥 velocities" news.wisc.edu/new-lightweight-

    #SpaceDebris

  12. #Carbon #nanotube use in lightweight, high-performance armor materials, for example, in shields 🛡️ around #spacecraft to mitigate damage from flying high-speed #microdebris. "By adding Kevlar nanofibers, we were able to achieve nearly 100% 📈 improvement in energy dissipation performance at certain supersonic impact 💥 velocities" news.wisc.edu/new-lightweight-

    #SpaceDebris

  13. Tunnelling #nanotube formation is driven by #Eps8/#IRSp53-dependent linear #actin polymerization
    Michael Henderson, Chiara Zurzolo, Patricia Bassereau and coworkers
    embopress.org/doi/full/10.1525

  14. Tunnelling #nanotube formation is driven by #Eps8/#IRSp53-dependent linear #actin polymerization
    Michael Henderson, Chiara Zurzolo, Patricia Bassereau and coworkers
    embopress.org/doi/full/10.1525

  15. Tunnelling #nanotube formation is driven by #Eps8/#IRSp53-dependent linear #actin polymerization
    Michael Henderson, Chiara Zurzolo, Patricia Bassereau and coworkers
    embopress.org/doi/full/10.1525

  16. Tunnelling #nanotube formation is driven by #Eps8/#IRSp53-dependent linear #actin polymerization
    Michael Henderson, Chiara Zurzolo, Patricia Bassereau and coworkers
    embopress.org/doi/full/10.1525

  17. Happy birthday to Millie Dresselhaus (née Spiewak; November 11, 1930 – February 20, 2017). She was a professor of physics and electrical engineering at MIT, known as the Queen of Carbon Science.

    In this linocut I've shown her in front of a carbon nanotube. She was recognized for her work on graphite, graphite intercalation compounds, … 1/n

    #linocut #printmaking #engineering #physics #carbon #nanotube #buckyball #womenInSTEM #histsci #MastoArt

  18. Happy birthday to Millie Dresselhaus (née Spiewak; November 11, 1930 – February 20, 2017). She was a professor of physics and electrical engineering at MIT, known as the Queen of Carbon Science.

    In this linocut I've shown her in front of a carbon nanotube. She was recognized for her work on graphite, graphite intercalation compounds, … 1/n

    #linocut #printmaking #engineering #physics #carbon #nanotube #buckyball #womenInSTEM #histsci #MastoArt

  19. Happy birthday to Millie Dresselhaus (née Spiewak; November 11, 1930 – February 20, 2017). She was a professor of physics and electrical engineering at MIT, known as the Queen of Carbon Science.

    In this linocut I've shown her in front of a carbon nanotube. She was recognized for her work on graphite, graphite intercalation compounds, … 1/n

    #linocut #printmaking #engineering #physics #carbon #nanotube #buckyball #womenInSTEM #histsci #MastoArt

  20. Happy birthday to Millie Dresselhaus (née Spiewak; November 11, 1930 – February 20, 2017). She was a professor of physics and electrical engineering at MIT, known as the Queen of Carbon Science.

    In this linocut I've shown her in front of a carbon nanotube. She was recognized for her work on graphite, graphite intercalation compounds, … 1/n

    #linocut #printmaking #engineering #physics #carbon #nanotube #buckyball #womenInSTEM #histsci #MastoArt

  21. ".. vermutet, dass im All sogenannte Fullerene und deren Abkömmlinge entstehen können – grosse Kohlenstoffmoleküle in Fussball-, Schüssel- oder Röhrchenform. Ein internationales Forschungsteam hat .. gezeigt, wie diese Reaktion abläuft... Pressemitteilung des Paul Scherrer Instituts (PSI)."

    raumfahrer.net/psi-so-entstehe

    #Astronomie #Buckyball #Corannulenyl #Fullerene #Fussballmolekül #Nanotube #PSI #Schweiz #Spitzer #Sternenstaub #Synchrotron #TC1 #Vinylacetylen

    27.3.2023

  22. ".. vermutet, dass im All sogenannte Fullerene und deren Abkömmlinge entstehen können – grosse Kohlenstoffmoleküle in Fussball-, Schüssel- oder Röhrchenform. Ein internationales Forschungsteam hat .. gezeigt, wie diese Reaktion abläuft... Pressemitteilung des Paul Scherrer Instituts (PSI)."

    raumfahrer.net/psi-so-entstehe

    #Astronomie #Buckyball #Corannulenyl #Fullerene #Fussballmolekül #Nanotube #PSI #Schweiz #Spitzer #Sternenstaub #Synchrotron #TC1 #Vinylacetylen

    27.3.2023

  23. ".. vermutet, dass im All sogenannte Fullerene und deren Abkömmlinge entstehen können – grosse Kohlenstoffmoleküle in Fussball-, Schüssel- oder Röhrchenform. Ein internationales Forschungsteam hat .. gezeigt, wie diese Reaktion abläuft... Pressemitteilung des Paul Scherrer Instituts (PSI)."

    raumfahrer.net/psi-so-entstehe

    #Astronomie #Buckyball #Corannulenyl #Fullerene #Fussballmolekül #Nanotube #PSI #Schweiz #Spitzer #Sternenstaub #Synchrotron #TC1 #Vinylacetylen

    27.3.2023

  24. ".. vermutet, dass im All sogenannte Fullerene und deren Abkömmlinge entstehen können – grosse Kohlenstoffmoleküle in Fussball-, Schüssel- oder Röhrchenform. Ein internationales Forschungsteam hat .. gezeigt, wie diese Reaktion abläuft... Pressemitteilung des Paul Scherrer Instituts (PSI)."

    raumfahrer.net/psi-so-entstehe

    #Astronomie #Buckyball #Corannulenyl #Fullerene #Fussballmolekül #Nanotube #PSI #Schweiz #Spitzer #Sternenstaub #Synchrotron #TC1 #Vinylacetylen

    27.3.2023

  25. For a long time, it has been suspected that #fullerene and its derivatives could form naturally in the #universe. These are large #carbon #molecules shaped like a football, salad bowl or #nanotube.
    #Chemistry #Science #sflorg
    sflorg.com/2023/03/chm03272302

  26. For a long time, it has been suspected that #fullerene and its derivatives could form naturally in the #universe. These are large #carbon #molecules shaped like a football, salad bowl or #nanotube.
    #Chemistry #Science #sflorg
    sflorg.com/2023/03/chm03272302

  27. For a long time, it has been suspected that #fullerene and its derivatives could form naturally in the #universe. These are large #carbon #molecules shaped like a football, salad bowl or #nanotube.
    #Chemistry #Science #sflorg
    sflorg.com/2023/03/chm03272302

  28. For a long time, it has been suspected that #fullerene and its derivatives could form naturally in the #universe. These are large #carbon #molecules shaped like a football, salad bowl or #nanotube.
    #Chemistry #Science #sflorg
    sflorg.com/2023/03/chm03272302

  29. Carbon #nanotube walls are basically #graphene, its hexagonal lattice of #atoms rolled into a tube. Chirality refers to how the hexagons are angled within the lattice, between 0 and 30 degrees. That determines whether the nanotubes are #metallic or #semiconductors.
    #Nanotechnology #Engineering #Chemistry #sflorg
    sflorg.com/2022/11/nt11102201.

  30. Carbon #nanotube walls are basically #graphene, its hexagonal lattice of #atoms rolled into a tube. Chirality refers to how the hexagons are angled within the lattice, between 0 and 30 degrees. That determines whether the nanotubes are #metallic or #semiconductors.
    #Nanotechnology #Engineering #Chemistry #sflorg
    sflorg.com/2022/11/nt11102201.