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Lecture
Transport Phenomena in 3D
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Related lectures (40)
Introduction to Heat Exchangers
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Explores heat transfer mechanisms and the design of heat exchangers for various applications.
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Transport Phenomena: Introduction
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Introduces transport phenomena, covering diffusion and thermal conduction in daily life.
Heat Conduction: Equations and Methods
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Covers the equations and methods used to describe heat transfers in a similar way to the analysis of diffusion.
Entropy and the Second Law of Thermodynamics
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Covers entropy, its definition, and its implications in thermodynamics.
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.
Heat Transfer Fundamentals
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Covers the basics of heat transfer, including conduction, convection, and radiation, as well as the principles of thermodynamics and phase changes.
Transfer Phenomena: Heat and Mass Transfer
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Introduces heat and mass transfer principles and their practical applications in various phenomena, along with details about the examination format.
First Law of Thermodynamics: Energy Conservation and Work Calculation
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Explores the first law of thermodynamics, energy conservation, and work calculation in detail.
Transient Heat Transfer
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Covers exercises on heat and mass transfer, including multimodal heat transfer and transient conduction.
Thermodynamics and Chromatography
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Explores thermodynamics, chromatography, retention factors, and equilibrium constants in chemical analysis.
Exercises: Series 22, Exercise 2
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Covers the solution to Series 22, Exercise 2 involving calculations of various physical parameters.
Diffusion in Alloys: Diluted and Binary Alloys
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Explores diffusion in diluted and binary alloys, phase separation, and the impact of concentration on intermolecular forces.
Energy Transfer by Waves
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Explores energy transfer by waves, including photons, electrons, and phonons, discussing interfaces, evanescent waves, and tunneling.
Vector Fields: Gradient and Divergence
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Covers vector fields, gradient, divergence, heat flux, and stress tensors.
Composite Processing: Consolidation and Compression
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Covers the consolidation and compression processes in composite materials, focusing on impregnation time evaluation and resin content optimization.
Solidification: Phenomena and Heat Transfer
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Explores solidification in metals, mold shape effects, heat flux, and interface resistance.
Thermal Effects
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Explores dynamics of thermal effects, including time constants, conductivity, and dissipated power, with applications in inkjet heaters, gas sensing, DNA amplification, and actuator technology.
Pool Boiling Regimes
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Explores pool boiling regimes, convective heat transfer, and homogeneous equilibrated models in heat transfer studies.
Condensation Correlations
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Explores condensation principles, including fluid motion factors and correlations for convection coefficients in different scenarios.
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