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Related lectures (21)
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Thermal Machines: Carnot Cycle and Efficiency
Discusses the Carnot cycle, its efficiency, and the principles of thermal machines in thermodynamics.
Entropy, Irreversible Transformations
Explores reversible and irreversible transformations, entropy generation, and efficiency comparison of real and Carnot cycles.
Thermodynamics and Energetics I
Explores fundamental thermodynamics concepts, laws, energy transfer, and system analysis.
Elementary Work in Thermodynamics
Introduces elementary work and heat exchange in thermodynamics, emphasizing work interactions in fluids, especially gases.
Elastic and Calorimetric Coefficients
Explores the choice of elastic and calorimetric coefficients in thermodynamics and their practical applications in everyday materials.
First Principle of Thermodynamics
Explains the conservation of energy in thermodynamic systems during heat and work exchange processes.
Thermodynamics: Otto and Diesel Engine Cycles
Explains the thermodynamic principles of Otto and Diesel engine cycles, including their efficiencies and applications in automotive engineering.
Entropy and Second Law
Explores entropy, ideal gases, Carnot cycle, and T-S diagrams in thermodynamics.
States and Phases: Introduction to Thermal Properties
Covers states, phases, and thermal properties in materials, including phase transformations and phase diagrams.
Phase Diagrams: Understanding Materials Science
Explores phase diagrams in materials science, covering phase transitions, system composition, solvents, and solutes.
Thermodynamics: Real Gases and Phase Transitions
Discusses the thermodynamic behavior of real gases and phase transitions, including the Joule-Thomson effect and latent heat values.
Temperature and Kinetic Energy in Ideal Gas
Explores ideal gas behavior, temperature, pressure, and kinetic energy relationships, and the principle of thermodynamics.
Phase Transitions: 1st Order
Explores phase transitions, focusing on 1st order transitions, 2nd order transitions, and the Gibbs phase rule.
Phase Equilibria: Understanding Vapor-Liquid Separation
Provides an overview of vapor-liquid phase diagrams and their role in separation processes, focusing on phase equilibria and the Gibbs phase rule.
Thermodynamic Modeling: Ge-Ni System
Explores thermodynamic modeling of the Ge-Ni binary system, focusing on phase diagrams, enthalpy of mixing, and Gibbs energy.
Phase transitions in curie-weiss model
Explores phase transitions in the Curie-Weiss model, illustrating the differences between second and first-order transitions and their relevance to real thermodynamic systems.
Ideal Gas Law
Explores the ideal gas law, describing the behavior of gas molecules in a box and the relationships between pressure, volume, and temperature.
Thermodynamics and Phase Diagrams
Explores thermodynamics, phase diagrams, diffusion, and solidification in materials science.
Computational Materials Science: CALPHAD
Explores the principles of Computational Materials Science, emphasizing CALPHAD and the design of high-performance alloys.
Thermodynamic Modeling: Real Solutions
Explores thermodynamic modeling of real solutions in materials science, focusing on regular and sublattice models.
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