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Lecture
Thermal Conduction: Fourier Equation Simplifications
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Thermal Conduction: Basics
Covers the basics of thermal conduction, including the Fourier equation and heat transfer regimes.
Thermal Conduction: Basics and Fourier Equation
Explores thermal conduction, Fourier equation, heat flux, and specific heat in steady and unsteady regimes.
Thermal Conduction: Basics
Covers the basics of thermal conduction, including Fourier's equation and heat transfer regimes.
Applications of Fourier Equation
Explores applications of the Fourier equation in different heat transfer scenarios.
Thermal Conduction: Stationary vs. Unsteady
Explores thermal conduction, comparing stationary and unsteady regimes, the Fourier equation, and material thermal conductivity.
Transient Regime: Heat Transfer
Explores the transient regime in heat transfer, solidification, boundary conditions, and heat flux density.
Fourier Equation in 2D: Stationary Regime
Explores the Fourier equation in 2D for a stationary regime without heat production in a semi-infinite wall.
Heat Transfer Phenomena
Explores the applications of the Fourier equation in heat transfer phenomena, covering conduction, convection, and radiation.
Microscopic Heat Transport: Modes and Laws
Explores microscopic heat transport modes and laws, including Fourier's law and Newton's law, highlighting thermal conductivity principles.
Transient Heat Transfer: Examples and Solutions
Explores transient heat transfer, Biot number, and practical applications in cooling metal.