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Semiconductors and Charge Carriers
Introduces semiconductor physics, covering materials, charge density, energy levels, doping, transport, and conductivity.
Electrical Conductivity of Metals
Explores electrical conductivity in metals, semiconductors, and the optical properties of semiconductors.
Physics of p-n Junctions
Covers the physics of p-n junctions, including properties at thermal equilibrium, space charge region formation, and optical lithography.
Doping in Semiconductors: Energy Band Models
Covers the impact of doping on semiconductor properties and energy levels.
Carrier Concentration: Extrinsic Semiconductors Overview
Covers the influence of doping on carrier concentrations in extrinsic semiconductors and the resulting shifts in the Fermi energy level.
Semiconductor Behavior
Covers the behavior of semiconductors, including intrinsic and extrinsic properties, doping, charge carriers, band bending, and p-n junction formation.
Charge Formation and Delocalization: Solitons, Polarons, and Interfaces
Explores charge carriers in organic semiconductors, including solitons, polarons, and band transport regimes.
Organic Electronics: Devices & Materials
Explores organic electronics, focusing on devices like transistors and photovoltaic cells, and the preparation of semiconductor materials.
Electrical and Magnetic Properties of Materials
Explores electrical and magnetic properties of materials, including semiconductors, dielectric behavior, and optical phenomena.
Semi-classical Approximation: Quantum Hall Effect
Covers the semi-classical approximation in periodic potentials and the quantum Hall effect.