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20 February 2026
- 13:0913:09, 20 February 2026 Quotations on physics collected by Niels Bohr Institute (hist | edit) [167 bytes] Vigen (talk | contribs) (Created page with "Colleagues at Niels Bohr Institute has a niece compilation of physics quotes, see https://www.nbi.dk/~petersen/Quotes/Physics/physics.html. Category:Physics quotes") Tag: Visual edit
18 February 2026
- 09:4609:46, 18 February 2026 Super Large Hadron Collider (hist | edit) [1,443 bytes] Vigen (talk | contribs) (Created page with "{{Lowercase title}} '''sLHC''', also known as '''Super-LHC''' or '''Super Large Hadron Collider'''<ref>The Super-LHC is on the starting blocks, 8 July 2008, https://cerncourier.com/a/the-super-lhc-is-on-the-starting-blocks/.</ref> was the original name for what later became officially called the High-Luminosity Large Hadron Collider. The R&D for the sLHC was funded by several national sources, additional funding made available t...") Tag: Visual edit originally created as "SLHC"
16 February 2026
- 18:3918:39, 16 February 2026 SynRad+ (hist | edit) [301 bytes] Vigen (talk | contribs) (Created page with "A modified MolFlow+ software developed at CERN to trace photons in order to calculate flux and power distribution caused by synchrotron radiation on a surface. For more information, see https://molflow.docs.cern.ch/guide/synrad/getting_started/. Category:Abbreviations Category:CERN software") Tag: Visual edit
- 18:3618:36, 16 February 2026 SWOT (hist | edit) [313 bytes] Vigen (talk | contribs) (Created page with "Strengths, weaknesses, opportunities and threats, a decision-making technique that identifies the strengths, weaknesses, opportunities, and threats of an organization or project. For more information, see Wikipedia. Category:Abbreviations Category:Pages linking to Wikipedia") Tag: Visual edit
- 18:3318:33, 16 February 2026 STFC (hist | edit) [79 bytes] Vigen (talk | contribs) (Created page with "Science and Technology Facilities Council in the UK. Category:Abbreviations") Tag: Visual edit
- 18:3318:33, 16 February 2026 SSS (hist | edit) [50 bytes] Vigen (talk | contribs) (Created page with "Short straight section. Category:Abbreviations") Tag: Visual edit
- 18:3218:32, 16 February 2026 SSM (hist | edit) [53 bytes] Vigen (talk | contribs) (Created page with "Sequential Standard Model. Category:Abbreviations") Tag: Visual edit
- 18:3018:30, 16 February 2026 SPN (hist | edit) [57 bytes] Vigen (talk | contribs) (Created page with "Support pre-alignment network. Category:Abbreviations") Tag: Visual edit
- 18:2818:28, 16 February 2026 SMEFT (hist | edit) [197 bytes] Vigen (talk | contribs) (Created page with "The '''Standard Model effective field theory''' is a model independent framework for parameterising deviations from the Standard Model in the absence of light states. Category:Abbreviations") Tag: Visual edit
- 18:2718:27, 16 February 2026 SME (hist | edit) [62 bytes] Vigen (talk | contribs) (Created page with "Small and medium-sized enterprises. Category:Abbreviations") Tag: Visual edit
- 18:2718:27, 16 February 2026 SMDT (hist | edit) [78 bytes] Vigen (talk | contribs) (Created page with "{{Lowercase title}} Small diameter muon drift tube. Category:Abbreviations") Tag: Visual edit
- 18:2518:25, 16 February 2026 SMC (hist | edit) [44 bytes] Vigen (talk | contribs) (Created page with "Short model coil. Category:Abbreviations") Tag: Visual edit
- 18:2318:23, 16 February 2026 SIRIUS (hist | edit) [238 bytes] Vigen (talk | contribs) (Created page with "'''Sirius''' is a synchrotron light source facility based on a 4th generation low emittance storage ring that is under construction in Campinas, Brazil. For more information, see Wikipedia.") Tag: Visual edit
- 18:2118:21, 16 February 2026 SiPM (hist | edit) [51 bytes] Vigen (talk | contribs) (Created page with "Silicon photomultiplier. Category:Abbreviations") Tag: Visual edit
- 18:1918:19, 16 February 2026 SiC (hist | edit) [495 bytes] Vigen (talk | contribs) (Created page with "'''Silicon carbide''' ('''SiC''') devices belong to the so-called wide band gap semiconductor group. They offer a number of attractive characteristics for high voltage power semiconductors when compared to commonly used silicon (Si). In particular, the much higher breakdown field strength and thermal conductivity of SiC allow devices to be created which by far outperform the corresponding Si ones. This way previously unattainable efficiency levels can be achieved. Cate...") Tag: Visual edit