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#buckyball — Public Fediverse posts

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  1. I created these carbon macromolecules for Scientific American several years ago (and am just getting around to posting now 🤣 )

    The fullerenes (the buckyballs, C70 and C60) were extremely fun to map out and render.

    #scienceillustration #education #physics #sciencefigures #carbon #buckyball

  2. I created these carbon macromolecules for Scientific American several years ago (and am just getting around to posting now 🤣 )

    The fullerenes (the buckyballs, C70 and C60) were extremely fun to map out and render.

    #scienceillustration #education #physics #sciencefigures #carbon #buckyball

  3. I created these carbon macromolecules for Scientific American several years ago (and am just getting around to posting now 🤣 )

    The fullerenes (the buckyballs, C70 and C60) were extremely fun to map out and render.

    #scienceillustration #education #physics #sciencefigures #carbon #buckyball

  4. I created these carbon macromolecules for Scientific American several years ago (and am just getting around to posting now 🤣 )

    The fullerenes (the buckyballs, C70 and C60) were extremely fun to map out and render.

    #scienceillustration #education #physics #sciencefigures #carbon #buckyball

  5. I created these carbon macromolecules for Scientific American several years ago (and am just getting around to posting now 🤣 )

    The fullerenes (the buckyballs, C70 and C60) were extremely fun to map out and render.

    #scienceillustration #education #physics #sciencefigures #carbon #buckyball

  6. Currently top-50 (among 364 DI teams) in offensive efficiency — and riding a 28-game home winning streak. #BuckyBall x.com/SamfordMBB/sta…

  7. Currently top-50 (among 364 DI teams) in offensive efficiency — and riding a 28-game home winning streak. #BuckyBall x.com/SamfordMBB/sta…

  8. 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

  9. 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

  10. 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

  11. 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

  12. 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

  13. 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

  14. 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

  15. 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

  16. 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

  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, fullerenes (a form of carbon known as buckyballs, 🧵1/n

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

  18. @br00t4c
    I think I already answered this. I believe they are "#BuckyBall" joints.

    Slide some sticks or tree limbs into them to easily build the framework for a portable shelter.

    The protruding "balls" would make it easier to slide the completed structure into place across the ground.

    Much easier to carry around than entire tents with poles & canvas.

    (If I'm right, they predate Buckminster Fuller's invention by a couple of thousand years.) 🤔

  19. @br00t4c
    I think I already answered this. I believe they are "#BuckyBall" joints.

    Slide some sticks or tree limbs into them to easily build the framework for a portable shelter.

    The protruding "balls" would make it easier to slide the completed structure into place across the ground.

    Much easier to carry around than entire tents with poles & canvas.

    (If I'm right, they predate Buckminster Fuller's invention by a couple of thousand years.) 🤔

  20. @br00t4c
    I think I already answered this. I believe they are "#BuckyBall" joints.

    Slide some sticks or tree limbs into them to easily build the framework for a portable shelter.

    The protruding "balls" would make it easier to slide the completed structure into place across the ground.

    Much easier to carry around than entire tents with poles & canvas.

    (If I'm right, they predate Buckminster Fuller's invention by a couple of thousand years.) 🤔

  21. @br00t4c
    I think I already answered this. I believe they are "#BuckyBall" joints.

    Slide some sticks or tree limbs into them to easily build the framework for a portable shelter.

    The protruding "balls" would make it easier to slide the completed structure into place across the ground.

    Much easier to carry around than entire tents with poles & canvas.

    (If I'm right, they predate Buckminster Fuller's invention by a couple of thousand years.) 🤔

  22. @br00t4c
    I think I already answered this. I believe they are "#BuckyBall" joints.

    Slide some sticks or tree limbs into them to easily build the framework for a portable shelter.

    The protruding "balls" would make it easier to slide the completed structure into place across the ground.

    Much easier to carry around than entire tents with poles & canvas.

    (If I'm right, they predate Buckminster Fuller's invention by a couple of thousand years.) 🤔

  23. Buckybowl Conformation Controlled by Crystallization Solvent: Monofluorosumanene forms crystals with entirely different dielectric responses depending on the crystallization conditions

    chemistryviews.org/buckybowl-c

  24. Buckybowl Conformation Controlled by Crystallization Solvent: Monofluorosumanene forms crystals with entirely different dielectric responses depending on the crystallization conditions

    chemistryviews.org/buckybowl-c

    #chemistry #chemistryviews #chemviews #chemiverse #research #buckyball #organicchemistry

  25. Buckybowl Conformation Controlled by Crystallization Solvent: Monofluorosumanene forms crystals with entirely different dielectric responses depending on the crystallization conditions

    chemistryviews.org/buckybowl-c

    #chemistry #chemistryviews #chemviews #chemiverse #research #buckyball #organicchemistry

  26. Buckybowl Conformation Controlled by Crystallization Solvent: Monofluorosumanene forms crystals with entirely different dielectric responses depending on the crystallization conditions

    chemistryviews.org/buckybowl-c

    #chemistry #chemistryviews #chemviews #chemiverse #research #buckyball #organicchemistry

  27. Buckybowl Conformation Controlled by Crystallization Solvent: Monofluorosumanene forms crystals with entirely different dielectric responses depending on the crystallization conditions

    chemistryviews.org/buckybowl-c

    #chemistry #chemistryviews #chemviews #chemiverse #research #buckyball #organicchemistry

  28. 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

  29. 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

  30. 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

  31. 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

  32. 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

  33. Microsculptures 3D Printed With Advanced Macromolecular “Inks” - When we think about 3D printing, our mind often jumps to hot nozzles squirting out... - hackaday.com/2023/06/05/micros #two-photonlaserprinting #3dprinterhacks #3dprinting #buckyballs #buckyball #science

  34. Microsculptures 3D Printed With Advanced Macromolecular “Inks” - When we think about 3D printing, our mind often jumps to hot nozzles squirting out... - hackaday.com/2023/06/05/micros #two-photonlaserprinting #3dprinterhacks #3dprinting #buckyballs #buckyball #science

  35. Microsculptures 3D Printed With Advanced Macromolecular “Inks” - When we think about 3D printing, our mind often jumps to hot nozzles squirting out... - hackaday.com/2023/06/05/micros #two-photonlaserprinting #3dprinterhacks #3dprinting #buckyballs #buckyball #science

  36. Microsculptures 3D Printed With Advanced Macromolecular “Inks” - When we think about 3D printing, our mind often jumps to hot nozzles squirting out... - hackaday.com/2023/06/05/micros #two-photonlaserprinting #3dprinterhacks #3dprinting #buckyballs #buckyball #science

  37. Microsculptures 3D Printed With Advanced Macromolecular “Inks” - When we think about 3D printing, our mind often jumps to hot nozzles squirting out... - hackaday.com/2023/06/05/micros #two-photonlaserprinting #3dprinterhacks #3dprinting #buckyballs #buckyball #science

  38. Basic Post-It notes are square, or close enough to it, to use as origami paper, and they make great PHiZZ units: duckduckgo.com/?t=ffab&q=phizz

    I made a #buckyball over the course of a week or two while waiting for code to compile or other build tools to run. (Yes, many of our tools are....verrrry....slow....)

    #origami #mastoart #polyhedra

  39. Basic Post-It notes are square, or close enough to it, to use as origami paper, and they make great PHiZZ units: duckduckgo.com/?t=ffab&q=phizz

    I made a #buckyball over the course of a week or two while waiting for code to compile or other build tools to run. (Yes, many of our tools are....verrrry....slow....)

    #origami #mastoart #polyhedra

  40. Basic Post-It notes are square, or close enough to it, to use as origami paper, and they make great PHiZZ units: duckduckgo.com/?t=ffab&q=phizz

    I made a #buckyball over the course of a week or two while waiting for code to compile or other build tools to run. (Yes, many of our tools are....verrrry....slow....)

    #origami #mastoart #polyhedra

  41. Basic Post-It notes are square, or close enough to it, to use as origami paper, and they make great PHiZZ units: duckduckgo.com/?t=ffab&q=phizz

    I made a #buckyball over the course of a week or two while waiting for code to compile or other build tools to run. (Yes, many of our tools are....verrrry....slow....)

    #origami #mastoart #polyhedra

  42. Basic Post-It notes are square, or close enough to it, to use as origami paper, and they make great PHiZZ units: duckduckgo.com/?t=ffab&q=phizz

    I made a #buckyball over the course of a week or two while waiting for code to compile or other build tools to run. (Yes, many of our tools are....verrrry....slow....)

    #origami #mastoart #polyhedra

  43. ".. 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

  44. ".. 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

  45. ".. 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

  46. ".. 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

  47. ".. 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

  48. Soeben mit #FreeCAD erstellt. Löcher sind gleichmäßig auf der Oberfläche der Kugel verteilt. Geometrie entspricht den Flächen eines #buckyball
    Löcher sind in Durchmesser und Tiefe parametrisch anpassbar.
    Über den Verwendungszweck kann hier nicht gesprochen werden 😎

  49. Soeben mit #FreeCAD erstellt. Löcher sind gleichmäßig auf der Oberfläche der Kugel verteilt. Geometrie entspricht den Flächen eines #buckyball
    Löcher sind in Durchmesser und Tiefe parametrisch anpassbar.
    Über den Verwendungszweck kann hier nicht gesprochen werden 😎

  50. Soeben mit #FreeCAD erstellt. Löcher sind gleichmäßig auf der Oberfläche der Kugel verteilt. Geometrie entspricht den Flächen eines #buckyball
    Löcher sind in Durchmesser und Tiefe parametrisch anpassbar.
    Über den Verwendungszweck kann hier nicht gesprochen werden 😎

  51. @pmj Für solche Notfälle haben wir:
    1) Gaskocher
    2)
    - Einen riesen Pack Zündhölzer, denen man das Köpfchen abknapsen kann.
    - Weissleim
    - Bastelunterlage

    @sakara ist auf der Stufe "Pfahlbauerdorf", ich will einen #BuckyBall.