Solid state physics

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Focuses on the properties of solids, such as their electronic, magnetic, and mechanical properties.

"Solid-state physics is the study of rigid matter, or solids, through methods such as solid-state chemistry, quantum mechanics, crystallography, electromagnetism, and metallurgy."
"...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."
"...it also has direct applications in the technology of transistors and semiconductors."
"Along with solid-state chemistry, it also has direct applications in the technology of transistors and semiconductors."
"...solid-state physics studies how the large-scale properties of solid materials result from their atomic-scale properties."
"...methods such as solid-state chemistry, quantum mechanics, crystallography, electromagnetism, and metallurgy."
"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."
"Solid-state physics is the study of rigid matter, or solids..."
"...the large-scale properties of solid materials result from their atomic-scale properties."
"...solid-state chemistry, quantum mechanics, crystallography, electromagnetism, and metallurgy."
"Along with solid-state chemistry, it also has direct applications in the technology of transistors and semiconductors."
"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."
"...through methods such as solid-state chemistry, quantum mechanics, crystallography, electromagnetism, and metallurgy."
"Solid-state physics is the study of rigid matter, or solids, through methods such as solid-state chemistry, quantum mechanics, crystallography, electromagnetism, and metallurgy."
"...direct applications in the technology of transistors and semiconductors."