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| 2025-03-09
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| In [[Kaluza–Klein theory]], a unification of [[general relativity]] and [[electromagnetism]], the five-fimensional Kaluza–Klein–Riemann curvature tensor (or Kaluza–Klein–Riemann–Christoffel curvature tensor) is the generalization of the four-dimensional [[Riemann curvature tensor]] (or Riemann–Christoffel curvature tensor).
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| The [[Ising model]] is a prototypical model in [[statistical physics]]. The model consists of discrete variables that represent magnetic dipole moments of atomic "spins" that can be in one of two states (+1 or −1). The spins are arranged in a graph, usually a lattice (where the local structure repeats periodically in all directions), allowing each spin to interact with its neighbors.
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| The 1859 City of Adelaide colonial by-election was held on 13 May 1859 to elect one of six members for [[Electoral district of City of Adelaide|City of Adelaide]] in the [[South Australian House of Assembly]], after sitting member [[William Henville Burford]] resigned on 29 April 1859.
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| data-sort-value=2829 | [[Special:Contribs/Faster than Thunder|Faster than Thunder]] (2829)
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| In [[differential geometry]] and in particular [[Yang–Mills theory]], Uhlenbeck's singularity theorem is a result allowing the removal of a [[Singularity (mathematics)|singularity]] of a [[Four-dimensional Yang–Mills theory|four-dimensional Yang–Mills]] field with finite energy using gauge. It states as a consequence that Yang–Mills fields with finite energy on flat [[euclidean space]] arise from Yang–Mills fields on the curved [[sphere]], its [[one-point compactification]].
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| data-sort-value=66 | [[Special:Contribs/PikutaMe|PikutaMe]] (66)
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| 2024-01-09
| [[Ian Smith (civil engineer)]] <small>(Canadian and Swiss civil engineer)</small>
| Ian F. C. Smith is a Canadian and Swiss [[civil engineer]]. He is Emeritus Professor at the [[École Polytechnique Fédérale de Lausanne]] (EPFL) in Switzerland and was the founding director of the [[Nemetschek#Georg_Nemetschek_Institute_-_Artificial_Intelligence_for_the_Built_World|TUM Georg Nemetschek Institute Artificial Intelligence for the Built World]] at the [[Technical University of Munich]] in Germany.
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| data-sort-value=18 | [[Special:Contribs/Ronal tarim|Ronal tarim]] (18)
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| 2024-01-22
| [[Silvano Donati]] <small>(Italian physicist in the field of photonics)</small>
| Silvano Donati (born 19 August 1942) is a physicist in the field of [[photonics]]. He is an emeritus professor at the [[University of Pavia]] where he has been Full Professor for 30 years and created the Electro-Optical Engineering Group.
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| data-sort-value=35 | [[Special:Contribs/Fratilias|Fratilias]] (35)
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| 2025-07-20
| [[John Donegan]] <small>(Irish physicist)</small>
| John Donegan is an Irish physicist and academic specializing in photonics, nanophotonics, and optical communications. He is the Professor of Physics and Applications of Light at Trinity College Dublin and Deputy Director of the [[CRANN]] Nanoscience Research Centre having previously served as Head of the School of Physics at Trinity.
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| data-sort-value=166 | [[Special:Contribs/Gukecavoran|Gukecavoran]] (166)
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| 2025-08-03
| [[Dora Reisser]] <small>(British actress (b.1942))</small>
| Dora Reisser (born February 1942) is a former British actress and fashion designer.
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| data-sort-value=16428 | [[Special:Contribs/Rigg|Rigg]] (16428)
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| 2025-07-13
| [[Gravitational self-force]] <small>(Gravitational self-force formalism)</small>
| In [[gravitational wave]] [[physics]], the gravitational self-force formalism is an approach to solving the [[relativistic two body problem]] using a systematic expansion of the dynamics is powers of the ratio of the masses of the two components of the binary. The gravitational self-force formalism is generally perceived as the only viable route towards predicting accurate gravitational waveform templates for observing [[extreme mass-ratio inspiral]]s with the [[Laser Interferometer Space Antenna]].
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| data-sort-value=15431 | [[Special:Contribs/TimothyRias|TimothyRias]] (15431)
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| 2025-02-21
| [[Modular tensor category]] <small>(Category theory)</small>
| A modular tensor category (also called a modular fusion category) is a type of [[tensor category (disambiguation)|tensor category]] that plays a role in the areas of [[topological quantum field theory]], [[conformal field theory]], and [[quantum algebra]]. Modular tensor categories were introduced in 1989 by the physicists [[Greg Moore (physicist)|Greg Moore]] and [[Nathan Seiberg]] in the context of [[rational conformal field theory]].
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| data-sort-value=137 | [[Special:Contribs/Meelo Mooses|Meelo Mooses]] (137)
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| Dmitry Volkov ({{langx|uk|Дмитро Васильович Волков}}; 3 July 1925 – 5 January 1996) — physicist. [[Doctor of Philosophy|PhD]] in 1956. Doctor of Physical and Mathematical Sciences ([[Habilitation]]) in 1968. Professor (1977). [[Academician]] of [[National Academy of Sciences of Ukraine]] (1988).
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| The Atominstitute ({{langx|de|[[:de:Atominstitut|Atominstitut]]}}) is an [[Austria|Austrian]] [[University]] research facility with its own inhouse [[nuclear reactor]] located in [[Vienna]]. The institute most known member is 2022 [[Nobel laureate]] [[Anton Zeilinger]].
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| 2025-01-19
| [[Fluorescence upconversion]] <small>(Ultrafast laser spectroscopic technique)</small>
| Fluorescence upconversion (FU) is an [[Ultrafast laser spectroscopy|ultrafast laser spectroscopic]] technique. It is a variant of [[sum-frequency generation]] (of which the [[second-harmonic generation]] (SHG) is a special case) but applied to the detection of the incoherent [[fluorescence]]. It is therefore closely related to the [[Optical Kerr Gating]] (OKG) technique.
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| data-sort-value=104 | [[Special:Contribs/Ozzwah|Ozzwah]] (104)
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| David D. O'Regan is an Irish physicist and professor in physics at [[Trinity College Dublin]], where he leads the Quantum Theory of Materials Research Group. He is also a member of the [[CRANN]] institute, a large centre for nanoscience research at Trinity.
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| Stephen (Geoffrey) Lipson (born 8 January 1941) is an Israeli-British physicist. He is Emeritus Professor of Physics at [[Technion]].
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| Gallium indium antimonide, also known as indium gallium antimonide, GaInSb, or InGaSb ([[Gallium|Ga]]<sub>x</sub>[[Indium|In]]<sub>1-x</sub>[[Antimony|Sb]]), is a ternary [[III-V|III-V semiconductor]] compound. It can be considered as an alloy between [[gallium antimonide]] and [[indium antimonide]]. The alloy can contain any ratio between gallium and indium.
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| In [[optics]], the Herschel's condition is a condition for an [[optical system]] to produce sharp images for objects over an extended axial range, i.e. for objects displaced along the optical axis. It was formulated by [[John Herschel]].
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| Thomas L. Gilbert (November 24, 1922 – May 19, 2016) was an American physicist, a specialist in statistical physics.
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| ''Amouna'' (Arabic: أمونة), or alternatively known as Amouna al Mazyouna (Arabic: أمونة المزيونة) is an Emirati children's animated series created by Amer Kokh. It premiered on 25 September 2015 and aired on [[:ar:قناة_ماجد_للأطفال|Majid Kids TV]]. the series about Amouna is going on a adventure with her brother, Ali and Seif.
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| data-sort-value=61 | [[Special:Contribs/RobinHarrisonfan2008|RobinHarrisonfan2008]] (61)
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| 2025-08-21
| [[Shaofan Li]] <small>(Chinese-American computational mechanics researcher)</small>
| Shaofan Li is a Chinese-American professor of applied and [[computational mechanics]] in the Department of [[Civil and Environmental Engineering]] at the [[University of California, Berkeley]].
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| In [[gauge theory]], the Yang–Mills moduli space (short YM moduli space, also instanton moduli space) is the [[moduli space]] of the [[Yang–Mills equations]], hence the space of its solutions up to [[gauge]]. It is used in [[Donaldson's theorem]], proven in and improved in , which was listed as a contribution for [[Simon Donaldson]] winning the [[Fields Medal]] in 1986, and to defined the [[Donaldson invariant|Donaldson invariants]] used to study four-dimensional smooth manifolds (short 4-manifolds).
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| In [[special relativity]], a [[Lorentz transformation]] is a real [[linear transformation]] of the [[spacetime coordinates]] t, x, y, z that preserves the Minkowski invariant or [[spacetime interval]] <math display="block">c^2 \, t^2-x^2-y^2-z^2</math> Using the 4x4 [[metric tensor]] <math>\eta</math>, this is
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