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Thermal Conductivity: Non-Stationary Regime
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Related lectures (38)
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Explores thermal conduction, Fourier's law, thermal resistance, local equilibrium, and conductive-convective phenomena.
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Explores heat transfer mechanisms and the design of heat exchangers for various applications.
Heat Exchangers: Fundamentals and Applications
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Explores the fundamentals of heat exchangers, including conduction, convection, and temperature profiles, with practical examples.
Thermal Bridges in Building Technology
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Introduction to Heat Transfer
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Covers the fundamentals of heat transfer, including conduction, convection, and radiation, emphasizing the importance of transport laws.
Thermal Transfer Fundamentals
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Explores thermal transfer principles, including laws of thermodynamics, heat mechanisms, and Fourier's equation.
Fourier Equation in 2D: Stationary Regime
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Explores the Fourier equation in 2D for a stationary regime without heat production in a semi-infinite wall.
Microscopic Heat Transport: Modes and Laws
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Explores microscopic heat transport modes and laws, including Fourier's law and Newton's law, highlighting thermal conductivity principles.
Thermal Circuits: Overall Heat Transfer Coefficient
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Explores thermal circuits and the overall heat transfer coefficient in the context of heat conduction.
Fin Performance: Efficiency & Resistance
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Heat Transport in Building Physics
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Thermal Resistances & Bi Number
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Heat Transfer Fundamentals
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Heat Diffusion with Heat Sources
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Explores heat diffusion in 1D steady-state conduction with heat sources and discusses thermal resistance and Kirchhoff's laws.
Heat Transport Fundamentals
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Explores heat transport through conduction, convection, and radiation, including thermal resistance and practical examples.
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