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Related lectures (32)
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Quantum Computing with NV-centers in Diamond
Explores size-dependent phononic transport in nanowires, covering phonon scattering, thermal conductivity, and length dependence.
Transient Heat Diffusion: Lumped Capacitance Model
Introduces the lumped capacitance model for solving transient heat conduction under convective cooling, emphasizing the importance of the Biot number.
Thermal Conduction: Basics and Fourier Equation
Explores thermal conduction, Fourier equation, heat flux, and specific heat in steady and unsteady regimes.
Thermal Equivalent Circuits: Basics
Explores thermal equivalent circuits, heat conduction, 1D heat flux, steady-state, transient state, and thermal-electrical system analogy.
Heat Transfer Applications
Explores the applications of the Fourier equation in heat transfer phenomena.
Thermal Conduction: Stationary vs. Unsteady
Explores thermal conduction, comparing stationary and unsteady regimes, the Fourier equation, and material thermal conductivity.
Diffusion Equation
Covers the Fourier law, heat equation, Righi-Leduc effect, and related experiments.
Thermal Conduction: Fourier Equation Simplifications
Covers topics related to thermal conduction and the Fourier equation simplifications.
Thermal Conductivity: Non-Stationary Regime
Explores thermal behavior of electronic components in non-stationary and steady-state regimes.
Thermal Sensors: Bolometers
Explores the principles and applications of bolometers, focusing on thermal sensors and infrared cameras.
Heat Conduction: Equations and Methods
Covers the equations and methods used to describe heat transfers in a similar way to the analysis of diffusion.
Classical Size Effects: Transport Perpendicular to Boundaries
Explores classical size effects in transport perpendicular to boundaries, focusing on nanoscale heat transfer and energy conversion.
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