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Fermi Gas: Theory and Applications
Explores the Fermi gas model, energy levels, and Fermi surface in metals.
Basic Semiconductor Properties
Explores semiconductor fundamentals, including band structure, carrier concentration, and Fermi levels.
Semiconductors: Band Structure and Carrier Concentration
Explains band structure, density of states, Fermi distribution, and carrier densities.
Electronic Band Structure: Kronig-Penney Potential
Explores electronic band structure, material properties, and density of states in periodic potentials, including energy levels and wavefunctions.
Photoelectric Effect: Principles and Applications
Covers the principles of photoemissive detectors and the photoelectric effect, detailing electron behavior in metals and semiconductors under different light conditions.
P-n Junction: Equilibrium and Out of Equilibrium
Explores the linearly graded p-n junction, quasi-Fermi levels, ideal current-voltage characteristics, and asymmetrical J-V curve.
Classical Equations and Conservation Laws
Explores classical equations, conservation laws, and quantum distributions in various systems, shedding light on particle behavior.
Itinerant Magnetism: Pauli Paramagnetism
Explores the development of magnetization and stability in itinerant systems.
Intrinsic Semiconductors: Thermal Generation and Carrier Concentration
Covers intrinsic semiconductors, focusing on thermal generation and carrier concentration calculations.
Intermolecular Charge Delocalization in Organic Materials
Explores intermolecular charge delocalization in organic materials and the behavior of organic semiconductors.