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Related lectures (30)
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Band and Band-like Transport
Explores band and band-like transport in materials, including criteria, examples, charge transfer, and second quantization.
Atoms and Radiation: Electromagnetic Wave Propagation
Explores electromagnetic wave propagation, including Poynting vector, irradiance, dipole radiation, dielectric constant, and natural linewidth in atoms and radiation.
Surface Energy and Semiconductor Nanostructures
Explores surface energy, semiconductor surface reconstruction, band schemes, and donor deactivation in silicon nanostructures.
Microscopic Maxwell equations
Explores nonlinear optics, photonics, quantum computing, and Maxwell's equations in the microscopic form.
Titanium: Fatigue and Creep Resistance
Explores fatigue, anisotropy, creep resistance, and the advantages of Titanium alloys.
Introduction to Thermotropic Liquid Crystals
Explores self-assembly in soft materials, focusing on the formation of thermotropic liquid crystals and their transition temperatures.
Effective Masses in Semiconductor Physics
Covers effective masses in semiconductors, focusing on energy bands and their implications for materials like silicon and gallium arsenide.
Magnetoelastic Effects: Anisotropic Magnetostriction and Transducer Applications
Explores anisotropic magnetostriction, stress-induced anisotropy, and smart magnetostrictive metals in transducer applications.
Fine Structure Analysis in EELS: Quantum Mechanics and Applications
Covers fine structure analysis in EELS, focusing on quantum mechanics and its applications in material characterization.
Effective Elasticity: Rigorous Bounds
Explores effective elasticity through rigorous bounds for material properties and the minimization of total elastic energy in composites.
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