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Lecture
Classical Thermodynamics: Fundamentals
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Related lectures (43)
Thermodynamic Systems: Basics
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Covers the basics of thermodynamic systems, energy transfer, state functions, forms of work, and energy conservation.
Thermodynamics Fundamentals
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Introduces the fundamentals of thermodynamics, covering energy transfer, laws, and applications in aircraft propulsion and alternative energy systems.
Second Principle: Thermodynamic Systems and Entropy Analysis
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Covers the second principle of thermodynamics, focusing on entropy and reversible processes in thermodynamic systems.
Thermodynamics: Adiabatic Transformations and Cyclic Processes
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Discusses adiabatic transformations, cyclic processes, and the efficiency of thermodynamic cycles in ideal gases.
Thermodynamics: Exploring the Second Principle and Entropy
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Covers thermodynamic principles, focusing on the second principle and the concept of entropy.
Entropy and Thermodynamics: Microstates and Macrostates
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Covers the concepts of microstates and macrostates in thermodynamics, focusing on entropy and its implications for isolated systems.
Thermoelastic and Calorimetric Coefficients: Elastic Wire Example
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Analyzes thermoelastic and calorimetric coefficients using an elastic wire example.
Applications of the First Law of Thermodynamics
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Explores the rules for calculating different types of ideal gas transformations.
Thermo-Calc Software Overview
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Covers the history and usage trends of Thermo-Calc software for materials engineering.
Applications of the First Law of Thermodynamics
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Explores molar specific heat for gases and solids, emphasizing differences in behavior.
Heat Transfer Applications
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Explores the applications of the Fourier equation in heat transfer phenomena.
Martensitic Transformation: Characteristics and Influences
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Covers the martensitic transformation in metals, focusing on its characteristics and the influence of temperature and alloying elements.
Snow Properties: Physical and Mechanical Characteristics
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Explores the physical and mechanical properties of snow, including thermodynamics and strength factors.
Linear Momentum Balance in Continuum Mechanics
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Covers the evaluation of linear momentum balance in continua, focusing on stress vectors and tensors, and deriving the governing equations for momentum conservation.
Snow Mechanics: Crack Propagation and Avalanches
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Explores crack propagation in snow mechanics, focusing on slab bending and practical applications.
Linear Elasticity: Cylindrically-symmetric Problems
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Covers linear elasticity, focusing on cylindrically-symmetric problems and the simplification of Hooke's Law for axially-symmetric cases.
Laplace Equation in a Rectangle
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Explores the Laplace equation in a rectangle using the separation of variables method.
Iterative Methods: Jacobi
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Covers the Jacobi iterative method for solving electrostatic problems and discusses convergence and practical examples.
Gaussian Denoising: Statistical Physics Connection
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Explores deriving key identities for statistical physics and their application in Gaussian denoising problems.
Finite Differences in Advection-Diffusion
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Explores the explicit 2-level scheme for advection-diffusion and the convergence of digital solutions.
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