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@trochee@dair-community.social
2026-02-23 06:45:57

> for a large share of actual product work, the person who can say "here is what done looks like, prove it without seeing my rubric" is more valuable than the person who can write the code.
> Implementation is what AI is getting good at. Knowing whether the result actually solves the real problem is not an engineering judgment call, it is a domain judgment call.
Reposting to call out those two quotes and agree that this matches my experience as a staff developer…

@netzschleuder@social.skewed.de
2026-04-22 07:00:04

physics_collab: Multilayer physicist collaborations (2015)
Two multiplex networks of coauthorships among the Pierre Auger Collaboration of physicists (2010-2012) and among researchers who have posted preprints on arXiv.org (all papers up to May 2014). Layers represent different categories of publication, and an edge's weight indicates the number of reports written by the authors. These layers are one-mode projections from the underlying author-paper bipartite network.
This n…

physics_collab: Multilayer physicist collaborations (2015). 14488 nodes, 59026 edges. https://networks.skewed.de/net/physics_collab#arXiv

Four weeks into a war that was going to take four days,
and that has so far cost the US about $30-40bn
and Israel $300m a day,
Washington is further away from a diplomatic agreement with Iran than it was in May 2025.
Not only has the war failed to persuade Iran to agree to dismantle its nuclear programme in the comprehensive and irreversible way the US demanded in a 15-point paper that it tabled on 23 May last year,
Washington is now having to negotiate to reopen…

@netzschleuder@social.skewed.de
2026-02-03 08:00:04

physics_collab: Multilayer physicist collaborations (2015)
Two multiplex networks of coauthorships among the Pierre Auger Collaboration of physicists (2010-2012) and among researchers who have posted preprints on arXiv.org (all papers up to May 2014). Layers represent different categories of publication, and an edge's weight indicates the number of reports written by the authors. These layers are one-mode projections from the underlying author-paper bipartite network.
This n…

physics_collab: Multilayer physicist collaborations (2015). 514 nodes, 7153 edges. https://networks.skewed.de/net/physics_collab#pierreAuger
@netzschleuder@social.skewed.de
2026-01-30 12:00:05

physics_collab: Multilayer physicist collaborations (2015)
Two multiplex networks of coauthorships among the Pierre Auger Collaboration of physicists (2010-2012) and among researchers who have posted preprints on arXiv.org (all papers up to May 2014). Layers represent different categories of publication, and an edge's weight indicates the number of reports written by the authors. These layers are one-mode projections from the underlying author-paper bipartite network.
This n…

physics_collab: Multilayer physicist collaborations (2015). 14488 nodes, 59026 edges. https://networks.skewed.de/net/physics_collab#arXiv
@netzschleuder@social.skewed.de
2026-04-09 10:00:05

physics_collab: Multilayer physicist collaborations (2015)
Two multiplex networks of coauthorships among the Pierre Auger Collaboration of physicists (2010-2012) and among researchers who have posted preprints on arXiv.org (all papers up to May 2014). Layers represent different categories of publication, and an edge's weight indicates the number of reports written by the authors. These layers are one-mode projections from the underlying author-paper bipartite network.
This n…

physics_collab: Multilayer physicist collaborations (2015). 14488 nodes, 59026 edges. https://networks.skewed.de/net/physics_collab#arXiv
@netzschleuder@social.skewed.de
2026-02-25 15:00:04

physics_collab: Multilayer physicist collaborations (2015)
Two multiplex networks of coauthorships among the Pierre Auger Collaboration of physicists (2010-2012) and among researchers who have posted preprints on arXiv.org (all papers up to May 2014). Layers represent different categories of publication, and an edge's weight indicates the number of reports written by the authors. These layers are one-mode projections from the underlying author-paper bipartite network.
This n…

physics_collab: Multilayer physicist collaborations (2015). 14488 nodes, 59026 edges. https://networks.skewed.de/net/physics_collab#arXiv
@netzschleuder@social.skewed.de
2026-02-25 20:00:04

physics_collab: Multilayer physicist collaborations (2015)
Two multiplex networks of coauthorships among the Pierre Auger Collaboration of physicists (2010-2012) and among researchers who have posted preprints on arXiv.org (all papers up to May 2014). Layers represent different categories of publication, and an edge's weight indicates the number of reports written by the authors. These layers are one-mode projections from the underlying author-paper bipartite network.
This n…

physics_collab: Multilayer physicist collaborations (2015). 14488 nodes, 59026 edges. https://networks.skewed.de/net/physics_collab#arXiv
@netzschleuder@social.skewed.de
2026-04-07 05:00:05

physics_collab: Multilayer physicist collaborations (2015)
Two multiplex networks of coauthorships among the Pierre Auger Collaboration of physicists (2010-2012) and among researchers who have posted preprints on arXiv.org (all papers up to May 2014). Layers represent different categories of publication, and an edge's weight indicates the number of reports written by the authors. These layers are one-mode projections from the underlying author-paper bipartite network.
This n…

physics_collab: Multilayer physicist collaborations (2015). 14488 nodes, 59026 edges. https://networks.skewed.de/net/physics_collab#arXiv