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ME-469: Nano-scale heat transfer
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Lectures in this course (29)
Boltzmann Equation: Scattering Term
Covers the Boltzmann equation's scattering term and carrier scattering, including phonons, electrons, photons, and molecules.
Quantum Thermal Conductance: Phonon Scattering
Explores phonon scattering, the Landauer formalism, and the Boltzmann equation.
Approximated Boltzmann Equation & Classical Laws
Explores the approximated Boltzmann equation, classical laws, and energy transport.
Thermoelectric Effects: Ohm's Law and Beyond
Explores thermoelectric effects, including Ohm's Law, Seebeck, Peltier, and Thomson effects, and their applications.
Classical Equations and Conservation Laws
Explores classical equations, conservation laws, and quantum distributions in various systems, shedding light on particle behavior.
Classical Size Effects: Transport Parallel to Boundaries
Explores classical size effects in energy transport parallel to boundaries, emphasizing kinetic and thermal energy characteristics.
Classical Size Effects: Transport Perpendicular to Boundaries
Explores classical size effects in transport perpendicular to boundaries, focusing on nanoscale heat transfer and energy conversion.
Approximation to Boltzmann Equation
Covers the approximation treatments of the Boltzmann Equation for photons, phonons, and electrons, exploring diffusion and ballistic-diffuse approaches.
Carrier Scattering, Generation, Recombination
Explores carrier scattering, generation, and recombination in nanoscale energy systems.
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