Commission on Charge, Spin and Momentum Densities
E1579676
UNEXPLORED
The Commission on Charge, Spin and Momentum Densities is a specialist body within the International Union of Crystallography that promotes research, standards and collaboration in the study of electronic charge, spin distributions and momentum densities in crystalline materials.
All labels observed (1)
| Label | Occurrences |
|---|---|
| Commission on Charge, Spin and Momentum Densities canonical | 1 |
How this entity was disambiguated
This entity first appeared as the object of triple T23332667 — resolving that mention is where its identity was fixed. The disambiguator weighed these candidate entities and picked the highlighted one (or “None”, minting a new entity). This is how homonymy is resolved: the same surface form can point to different entities.
Target entity: Commission on Charge, Spin and Momentum Densities Context triple: [commissions of the International Union of Crystallography, hasCommission, Commission on Charge, Spin and Momentum Densities]
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A.
Simons Collaboration on the Many Electron Problem
The Simons Collaboration on the Many Electron Problem is a research initiative that brings together mathematicians and physicists to develop new theoretical and computational approaches for understanding complex many-electron systems in quantum mechanics and condensed matter physics.
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B.
Elementary Excitations in Solids
"Elementary Excitations in Solids" is a classic theoretical physics monograph that systematically develops the concept of quasiparticles and collective excitations to explain the behavior of electrons, phonons, and other excitations in condensed matter systems.
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C.
The Many-Body Problem
The Many-Body Problem is a seminal physics text that systematically develops the theory of interacting many-particle systems, laying foundational methods for modern condensed matter and quantum many-body physics.
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D.
Quantum Theory of Solids
Quantum Theory of Solids is a foundational physics text that systematically applies quantum mechanics to explain the electronic, thermal, and structural properties of crystalline solids.
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E.
Neumann’s principle in crystallography
Neumann’s principle in crystallography is a fundamental rule stating that the symmetry elements of any physical property of a crystal must include the symmetry elements of the crystal’s point group.
- F. None of above. chosen
- G. Unsure - the case is ambiguous/there is not enough information to decide.
Target entity: Commission on Charge, Spin and Momentum Densities Target entity description: The Commission on Charge, Spin and Momentum Densities is a specialist body within the International Union of Crystallography that promotes research, standards and collaboration in the study of electronic charge, spin distributions and momentum densities in crystalline materials.
-
A.
Simons Collaboration on the Many Electron Problem
The Simons Collaboration on the Many Electron Problem is a research initiative that brings together mathematicians and physicists to develop new theoretical and computational approaches for understanding complex many-electron systems in quantum mechanics and condensed matter physics.
-
B.
Elementary Excitations in Solids
"Elementary Excitations in Solids" is a classic theoretical physics monograph that systematically develops the concept of quasiparticles and collective excitations to explain the behavior of electrons, phonons, and other excitations in condensed matter systems.
-
C.
The Many-Body Problem
The Many-Body Problem is a seminal physics text that systematically develops the theory of interacting many-particle systems, laying foundational methods for modern condensed matter and quantum many-body physics.
-
D.
Quantum Theory of Solids
Quantum Theory of Solids is a foundational physics text that systematically applies quantum mechanics to explain the electronic, thermal, and structural properties of crystalline solids.
-
E.
Neumann’s principle in crystallography
Neumann’s principle in crystallography is a fundamental rule stating that the symmetry elements of any physical property of a crystal must include the symmetry elements of the crystal’s point group.
- F. None of above. chosen
Referenced by (1)
Full triples — surface form annotated when it differs from this entity's canonical label.