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Semiconductor Materials: Electron Mobility and Conductivity
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Related lectures (31)
Semiconductor Band Structure
Explores the bandgap in semiconductors, focusing on the interaction between atoms in a crystal and the derivation of the secular equation.
Transport Properties in Semiconductors: Charge Dynamics and Conductivity
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Covers the transport properties of semiconductors, focusing on charge dynamics, drift currents, and the relationship between mobility and conductivity.
Electronic Bands: Conductors and Insulators
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Delves into electronic bands, energy levels, conductors, insulators, and electron holes.
Semiconductors and Charge Carriers
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Introduces semiconductor physics, covering materials, charge density, energy levels, doping, transport, and conductivity.
Semiconductor Materials: Charges and Energy Levels
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Covers the fundamentals of semiconductor materials, including crystal structure, energy levels, electrons, holes, charge density, and doping.
Intrinsic Semiconductors: Thermal Generation and Carrier Concentration
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Covers intrinsic semiconductors, focusing on thermal generation and carrier concentration calculations.
Effective Masses in Semiconductor Physics
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Covers effective masses in semiconductors, focusing on energy bands and their implications for materials like silicon and gallium arsenide.
Quantum Structures: Band Gaps and Heterostructures
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Covers the formation and properties of quantum wells and heterostructures in semiconductor materials.
Electrical and Magnetic Properties of Materials
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Explores electrical and magnetic properties of materials, including semiconductors, dielectric behavior, and optical phenomena.
Electrical Properties Introduction
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Covers the introduction to electrical properties of materials and their variations.
Semiconductors: Equilibrium Properties and Charge Dynamics
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Covers the equilibrium properties of semiconductors, focusing on charge dynamics and the influence of temperature on electron-hole generation.
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