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solid-state physics
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branch of physics focused on matter in the solid state
Solid-state physics is the branch of physics that studies the properties and behavior of matter in solid form. It matters because understanding solids is essential for developing technologies like semiconductors, metals, and magnetic materials that power modern electronics and devices.
AI-generated from the Wikipedia summary — may contain errors.
In the Vinony graph
Vinony's link graph records 885 inbound references to solid-state physics, and connects out to optics, material and continuum mechanics.
It is catalogued under topics including Condensed matter physics and Metallurgy.
Vinony links it to 53 Wikipedia language editions.
Wikidata facts
- Image
- Electronic density difference Cl Cu111.png
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- Stack Exchange tag
- mathoverflow.net/tags/solid-state-physics
- Commons category
- Solid state physics
Sources (2)
via Wikidata · CC0
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Encyclopedic overview
Solid-state physics is the study of rigid matter, or solids, through methods such as solid-state chemistry, quantum mechanics, crystallography, electromagnetism, and metallurgy. It is the largest branch of condensed matter physics. Solid-state physics studies how the large-scale properties of solid materials result from their atomic-scale properties. Thus, solid-state physics forms a theoretical basis of materials science. Along with solid-state chemistry, it also has direct applications in the technology of transistors and semiconductors.
Background
Excerpted from Wikipedia’s “solid-state physics” article, available under the CC BY-SA 4.0 licence.