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#lk99 — Public Fediverse posts

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  1. Interessante Entwicklungen im Bereich der Materialwissenschaft! LK-99, ein neuartiges Material, zeigt ungewöhnliche magnetische Eigenschaften, die die Aufmerksamkeit der Physik-Community erregen. Die Behauptung, es könnte bei Raumtemperatur supraleiten, ist bislang jedoch nicht endgültig belegt. Wissenschaftler bitten um sorgfältige Überprüfung – spannende Zeiten für Forschung und Technologie!

    #Supraleitung #Physik #Wissenschaft #LK99 #Materialforschung

    🔗 news.google.com/rss/articles/C

  2. LK‑99 – ein neues Material, das die Diskussion um Supraleitung bei Raumtemperatur neu entfacht.

    - Erste Experimente zeigen ungewöhnliches Leit‑ und Magnetverhalten.
    - Ob das tatsächlich ein stabiler Raum‑Temperatur‑Supraleiter ist, bleibt offen – Replikationen sind nötig.

    Spannend für Forschung, aber noch kein Durchbruch. #Physik #Supraleitung #LK99 #ScienceNews #OpenResearch

    🔗 news.google.com/rss/articles/C

  3. heise online: Neue Spekulationen zu Supraleitern bei Raumtemperatur heise.de/news/Neue-Spekulation
    Bei nur -26°, aber es ist noch nicht sicher reproduziert, und die „magnetisches Feldstärke“ ist relativ schwach“. #lk99

  4. heise online: Neue Spekulationen zu Supraleitern bei Raumtemperatur heise.de/news/Neue-Spekulation
    Bei nur -26°, aber es ist noch nicht sicher reproduziert, und die „magnetisches Feldstärke“ ist relativ schwach“. #lk99

  5. heise online: Neue Spekulationen zu Supraleitern bei Raumtemperatur heise.de/news/Neue-Spekulation
    Bei nur -26°, aber es ist noch nicht sicher reproduziert, und die „magnetisches Feldstärke“ ist relativ schwach“. #lk99

  6. heise online: Neue Spekulationen zu Supraleitern bei Raumtemperatur heise.de/news/Neue-Spekulation
    Bei nur -26°, aber es ist noch nicht sicher reproduziert, und die „magnetisches Feldstärke“ ist relativ schwach“. #lk99

  7. heise online: Neue Spekulationen zu Supraleitern bei Raumtemperatur heise.de/news/Neue-Spekulation
    Bei nur -26°, aber es ist noch nicht sicher reproduziert, und die „magnetisches Feldstärke“ ist relativ schwach“. #lk99

  8. It’s Back: Researchers Say They’ve Replicated LK-99 Room Temperature Superconductor Experiment thequantuminsider.com/?p=23600 #Research #coppersubstituted_lead_apatite #CSLA #LK99 #roomtemperature_superconductor #Superconducting #superconductor #quantumdaily Insider Brief A team of researchers report the replication experiments suggest a copper-substituted lead apatite (CSLA) may serve as a candidate for room-temperature superconductivity. Last year, replication efforts on a similar r

  9. It’s Back: Researchers Say They’ve Replicated LK-99 Room Temperature Superconductor Experiment thequantuminsider.com/?p=23600 #Research #coppersubstituted_lead_apatite #CSLA #LK99 #roomtemperature_superconductor #Superconducting #superconductor #quantumdaily Insider Brief A team of researchers report the replication experiments suggest a copper-substituted lead apatite (CSLA) may serve as a candidate for room-temperature superconductivity. Last year, replication efforts on a similar r

  10. It’s Back: Researchers Say They’ve Replicated LK-99 Room Temperature Superconductor Experiment thequantuminsider.com/?p=23600 #Research #coppersubstituted_lead_apatite #CSLA #LK99 #roomtemperature_superconductor #Superconducting #superconductor #quantumdaily Insider Brief A team of researchers report the replication experiments suggest a copper-substituted lead apatite (CSLA) may serve as a candidate for room-temperature superconductivity. Last year, replication efforts on a similar r

  11. It’s Back: Researchers Say They’ve Replicated LK-99 Room Temperature Superconductor Experiment thequantuminsider.com/?p=23600 #Research #coppersubstituted_lead_apatite #CSLA #LK99 #roomtemperature_superconductor #Superconducting #superconductor #quantumdaily Insider Brief A team of researchers report the replication experiments suggest a copper-substituted lead apatite (CSLA) may serve as a candidate for room-temperature superconductivity. Last year, replication efforts on a similar r

  12. Have you heard all the fuzz about #LK99 some time ago?

    If you didn't: some researchers claimed that they discovered a room temperature superconductor.

    But what are superconductors anyway?

  13. Have you heard all the fuzz about #LK99 some time ago?

    If you didn't: some researchers claimed that they discovered a room temperature superconductor.

    But what are superconductors anyway?

  14. Have you heard all the fuzz about #LK99 some time ago?

    If you didn't: some researchers claimed that they discovered a room temperature superconductor.

    But what are superconductors anyway?

  15. Have you heard all the fuzz about #LK99 some time ago?

    If you didn't: some researchers claimed that they discovered a room temperature superconductor.

    But what are superconductors anyway?

  16. Have you heard all the fuzz about #LK99 some time ago?

    If you didn't: some researchers claimed that they discovered a room temperature superconductor.

    But what are superconductors anyway?

  17. 3 new pre-prints talk about #LK99 being a semiconductor. This one shows that there's still a few different potential products of the synthesis, and while the common copper-doped forms are definitely semiconductors, sulphur doping might still yield a superconductor arxiv.org/abs/2309.07928

  18. 3 new pre-prints talk about #LK99 being a semiconductor. This one shows that there's still a few different potential products of the synthesis, and while the common copper-doped forms are definitely semiconductors, sulphur doping might still yield a superconductor arxiv.org/abs/2309.07928

  19. 3 new pre-prints talk about #LK99 being a semiconductor. This one shows that there's still a few different potential products of the synthesis, and while the common copper-doped forms are definitely semiconductors, sulphur doping might still yield a superconductor arxiv.org/abs/2309.07928

  20. 3 new pre-prints talk about #LK99 being a semiconductor. This one shows that there's still a few different potential products of the synthesis, and while the common copper-doped forms are definitely semiconductors, sulphur doping might still yield a superconductor arxiv.org/abs/2309.07928

  21. 3 new pre-prints talk about #LK99 being a semiconductor. This one shows that there's still a few different potential products of the synthesis, and while the common copper-doped forms are definitely semiconductors, sulphur doping might still yield a superconductor arxiv.org/abs/2309.07928

  22. #Blog #Conferencia #LK99 Lo que sabemos que no sabemos de LK-99 (mi charla #NaukasBilbao23) francis.naukas.com/2023/09/18/ como todos los años, transcribo (y amplio) mi charla con todas las fuentes de imágenes y resultados. ¡Qué la disfrutes!

  23. #Blog #Conferencia #LK99 Lo que sabemos que no sabemos de LK-99 (mi charla #NaukasBilbao23) francis.naukas.com/2023/09/18/ como todos los años, transcribo (y amplio) mi charla con todas las fuentes de imágenes y resultados. ¡Qué la disfrutes!

  24. #Blog #Conferencia #LK99 Lo que sabemos que no sabemos de LK-99 (mi charla #NaukasBilbao23) francis.naukas.com/2023/09/18/ como todos los años, transcribo (y amplio) mi charla con todas las fuentes de imágenes y resultados. ¡Qué la disfrutes!

  25. #Blog #Conferencia #LK99 Lo que sabemos que no sabemos de LK-99 (mi charla #NaukasBilbao23) francis.naukas.com/2023/09/18/ como todos los años, transcribo (y amplio) mi charla con todas las fuentes de imágenes y resultados. ¡Qué la disfrutes!

  26. #Blog #Conferencia #LK99 Lo que sabemos que no sabemos de LK-99 (mi charla #NaukasBilbao23) francis.naukas.com/2023/09/18/ como todos los años, transcribo (y amplio) mi charla con todas las fuentes de imágenes y resultados. ¡Qué la disfrutes!

  27. Due articoli apparsi sulla piattaforma di preprint arxiv.org hanno prospettato la scoperta di un #superconduttore “da sogno”, cioè in grado di lavorare e temperatura e pressione ambiente, chiamato #LK99.

    Purtroppo durante un tavola rotonda dedicata al tema e tenutasi a settembre nell'ambito della Conferenza Europea sulla Superconduttività Applicata, ha mostrato che LK99 non è altro che una bufala.

    Ne parla Riccardo Lucentini -> scienzainrete.it/articolo/sogn

  28. Due articoli apparsi sulla piattaforma di preprint arxiv.org hanno prospettato la scoperta di un #superconduttore “da sogno”, cioè in grado di lavorare e temperatura e pressione ambiente, chiamato #LK99.

    Purtroppo durante un tavola rotonda dedicata al tema e tenutasi a settembre nell'ambito della Conferenza Europea sulla Superconduttività Applicata, ha mostrato che LK99 non è altro che una bufala.

    Ne parla Riccardo Lucentini -> scienzainrete.it/articolo/sogn

  29. Due articoli apparsi sulla piattaforma di preprint arxiv.org hanno prospettato la scoperta di un #superconduttore “da sogno”, cioè in grado di lavorare e temperatura e pressione ambiente, chiamato #LK99.

    Purtroppo durante un tavola rotonda dedicata al tema e tenutasi a settembre nell'ambito della Conferenza Europea sulla Superconduttività Applicata, ha mostrato che LK99 non è altro che una bufala.

    Ne parla Riccardo Lucentini -> scienzainrete.it/articolo/sogn

  30. Due articoli apparsi sulla piattaforma di preprint arxiv.org hanno prospettato la scoperta di un #superconduttore “da sogno”, cioè in grado di lavorare e temperatura e pressione ambiente, chiamato #LK99.

    Purtroppo durante un tavola rotonda dedicata al tema e tenutasi a settembre nell'ambito della Conferenza Europea sulla Superconduttività Applicata, ha mostrato che LK99 non è altro che una bufala.

    Ne parla Riccardo Lucentini -> scienzainrete.it/articolo/sogn

  31. Bon faut quand même que je fasse un peu de promo avec cette histoire de #supra #supraconducteur que certains ont pu rater cet été. Il me semble que je raconte des détails qui n'avaient pas été décrits...
    lemonde.fr/sciences/article/20.
    #physique #lk99
    En message direct je peux envoyer un pdf...

  32. Bon faut quand même que je fasse un peu de promo avec cette histoire de #supra #supraconducteur que certains ont pu rater cet été. Il me semble que je raconte des détails qui n'avaient pas été décrits...
    lemonde.fr/sciences/article/20.
    #physique #lk99
    En message direct je peux envoyer un pdf...

  33. Bon faut quand même que je fasse un peu de promo avec cette histoire de #supra #supraconducteur que certains ont pu rater cet été. Il me semble que je raconte des détails qui n'avaient pas été décrits...
    lemonde.fr/sciences/article/20.
    #physique #lk99
    En message direct je peux envoyer un pdf...

  34. Bon faut quand même que je fasse un peu de promo avec cette histoire de #supra #supraconducteur que certains ont pu rater cet été. Il me semble que je raconte des détails qui n'avaient pas été décrits...
    lemonde.fr/sciences/article/20.
    #physique #lk99
    En message direct je peux envoyer un pdf...

  35. @futurism
    newscientist.com/article/23847

    "…researchers then measured how much a millimetre-sized sample of #lk99 resisted electricity passing through it at different temperatures and found…resistivity fell sharply from a sizeable positive value at 105°C (221°F) down to nearly zero at 30°C (86°F)…researchers also tested the material’s response to a magnetic field…because #superconductors are known to expel them as part of a phenomenon called the Meissner effect.…it also had near zero resistance…"

  36. @futurism
    newscientist.com/article/23847

    "…researchers then measured how much a millimetre-sized sample of #lk99 resisted electricity passing through it at different temperatures and found…resistivity fell sharply from a sizeable positive value at 105°C (221°F) down to nearly zero at 30°C (86°F)…researchers also tested the material’s response to a magnetic field…because #superconductors are known to expel them as part of a phenomenon called the Meissner effect.…it also had near zero resistance…"

  37. @futurism
    newscientist.com/article/23847

    "…researchers then measured how much a millimetre-sized sample of #lk99 resisted electricity passing through it at different temperatures and found…resistivity fell sharply from a sizeable positive value at 105°C (221°F) down to nearly zero at 30°C (86°F)…researchers also tested the material’s response to a magnetic field…because #superconductors are known to expel them as part of a phenomenon called the Meissner effect.…it also had near zero resistance…"

  38. @futurism
    newscientist.com/article/23847

    "…researchers then measured how much a millimetre-sized sample of #lk99 resisted electricity passing through it at different temperatures and found…resistivity fell sharply from a sizeable positive value at 105°C (221°F) down to nearly zero at 30°C (86°F)…researchers also tested the material’s response to a magnetic field…because #superconductors are known to expel them as part of a phenomenon called the Meissner effect.…it also had near zero resistance…"

  39. @futurism
    newscientist.com/article/23847

    "…researchers then measured how much a millimetre-sized sample of #lk99 resisted electricity passing through it at different temperatures and found…resistivity fell sharply from a sizeable positive value at 105°C (221°F) down to nearly zero at 30°C (86°F)…researchers also tested the material’s response to a magnetic field…because #superconductors are known to expel them as part of a phenomenon called the Meissner effect.…it also had near zero resistance…"

  40. Unfortunately, this should finally dampen the general excitement about room-temperature #superconductivity:

    "We therefore rule out the presence of superconductivity in Pb9Cu(PO4)6O crystals..." (known al #lk99)

    arxiv.org/abs/2308.06256

  41. Unfortunately, this should finally dampen the general excitement about room-temperature #superconductivity:

    "We therefore rule out the presence of superconductivity in Pb9Cu(PO4)6O crystals..." (known al #lk99)

    arxiv.org/abs/2308.06256

  42. Unfortunately, this should finally dampen the general excitement about room-temperature #superconductivity:

    "We therefore rule out the presence of superconductivity in Pb9Cu(PO4)6O crystals..." (known al #lk99)

    arxiv.org/abs/2308.06256

  43. Unfortunately, this should finally dampen the general excitement about room-temperature #superconductivity:

    "We therefore rule out the presence of superconductivity in Pb9Cu(PO4)6O crystals..." (known al #lk99)

    arxiv.org/abs/2308.06256

  44. Unfortunately, this should finally dampen the general excitement about room-temperature #superconductivity:

    "We therefore rule out the presence of superconductivity in Pb9Cu(PO4)6O crystals..." (known al #lk99)

    arxiv.org/abs/2308.06256

  45. The supposed superconductor #LK99 is met with some scepticism as researchers elsewhere fail to confirm the Korean discovery: "The most credible attempts have found that LK-99—the name the Korean researchers gave the material—is not actually superconductive at room temperatures".

    time.com/6301391/experts-skept

  46. The supposed superconductor #LK99 is met with some scepticism as researchers elsewhere fail to confirm the Korean discovery: "The most credible attempts have found that LK-99—the name the Korean researchers gave the material—is not actually superconductive at room temperatures".

    time.com/6301391/experts-skept

  47. The supposed superconductor #LK99 is met with some scepticism as researchers elsewhere fail to confirm the Korean discovery: "The most credible attempts have found that LK-99—the name the Korean researchers gave the material—is not actually superconductive at room temperatures".

    time.com/6301391/experts-skept

  48. The supposed superconductor #LK99 is met with some scepticism as researchers elsewhere fail to confirm the Korean discovery: "The most credible attempts have found that LK-99—the name the Korean researchers gave the material—is not actually superconductive at room temperatures".

    time.com/6301391/experts-skept

  49. The looks like a bust. It may be something, but it's looking like it's not a superconductor of any sort. Nobody can replicate it at all. If they really had a superconductor that nobody could reproduce, rather than file patents they'd take the route Heinlein's Shipstone took: lock down the few people who know how to do it so tight they'll never want to leave, then set up shop and start producing the stuff. Nobody will care how it works, as long as it works.

  50. The #lk99 #superconductor looks like a bust. It may be something, but it's looking like it's not a superconductor of any sort. Nobody can replicate it at all. If they really had a superconductor that nobody could reproduce, rather than file patents they'd take the route Heinlein's Shipstone took: lock down the few people who know how to do it so tight they'll never want to leave, then set up shop and start producing the stuff. Nobody will care how it works, as long as it works.