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Lecture
Transient Heat Diffusion: Infinite Wall
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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.
Introduction to Free Convection: Governing Equations
Explores free convection, laminar flow boundary layer equations, and heat transfer principles.
Electrokinetic Devices: Streaming, Drawing and Waving Potentials
Explores electrokinetic devices, focusing on leveraging nanoscale structures to improve device performance and energy conversion.
Internal Forced Convection
Explores internal forced convection, covering convection coefficients, velocity profiles, and energy balances in pipes.
Heat Transfer from Extended Surfaces: Fins
Covers the heat transfer from fins, exploring their behavior and optimization for efficiency.
Heat Diffusion with Heat Sources
Explores heat diffusion in 1D steady-state conduction with heat sources and discusses thermal resistance and Kirchhoff's laws.
Heat Exchangers Design and Performance Analysis
Covers the design and performance analysis of heat exchangers using the effectiveness-NTU method and finned-tube examples.
Transient Regime: Heat Transfer
Explores the transient regime in heat transfer, solidification, boundary conditions, and heat flux density.
Radiative Heat Transfer: Formal Solutions
Covers the derivation of formal solutions to the Radiative Transfer Equation and discusses isotropic scattering, optical thickness, and Monte Carlo method applications.
Overall Heat Transfer Coefficient
Explores heat transfer mechanisms, thermal resistances, and heat exchanger design.