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Lecture
Electron Theory: Drude and Sommerfeld
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Surface States and Charge Transport
Explores surface states, charge transport in semiconductors, and factors affecting mobility, emphasizing the importance of understanding and improving carrier mobility.
Band Structure: Energy Levels and Fermi Sphere
Explains energy levels, Fermi sphere, and periodic potentials in different dimensions.
Chemical Bonds: Energy and Conductivity
Explores chemical bonds, bond energy, covalent bonds, carbon hybridization, delocalized bonding, and conductivity in solids.
Tight-binding Approximation: 3D Lattice of Na Atoms
Explores the tight-binding approximation for a 3D lattice of Na atoms and its impact on the Fermi surface and band structure.
Chemical Bonding: Basics and Types
Covers the basics of chemical bonding, including types of bonds, bond polarity, and ion behavior in solution.
Electron Theory: Electrical Resistivity and Thermal Conductivity
Explores the electron theory's effects on electrical resistivity and thermal conductivity in metals.
Intrinsic Semiconductors: Thermal Generation and Carrier Concentration
Covers intrinsic semiconductors, focusing on thermal generation and carrier concentration calculations.
Chemical Bonding: Lewis Structures and Molecular Shapes
Explores chemical bonding, Lewis structures, molecular shapes, and molecular polarity.
Electronic Structure at Surfaces
Explores electronic properties of surfaces, absorption, charge transfer, and materials with high surface area.
Drude Model: Moving Charges
Explores the Drude model, charge scattering, conductivity, and temperature effects on materials.