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Related lectures (17)
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Temperature, Pressure, Chemical Potential
Explores temperature, pressure, and chemical potential in simple systems, along with reversible processes and powers.
Thermodynamic Energy Conversion: Chemical to Electrical
Explores the conversion of chemical energy into electrical work and the derivation of Gibbs free energy.
Response Theory: Trajectory-Based Approach
Explores response theory using a trajectory-based approach in nonequilibrium statistical mechanics, emphasizing dynamical activity and entropy flux.
Glass Transition: Theoretical Insights
Covers glass transition, DSC analysis, viscosity, elasticity, molecular weight effect, and transition theories.
Quantum to Classical Mechanics: Fundamentals
Covers the transition from quantum to classical mechanics, statistical mechanics, Monte Carlo simulations, and molecular dynamics simulations.
Thermal Machines: Carnot Cycle and Efficiency Principles
Discusses the Carnot cycle, thermodynamic temperature, and the efficiency of thermal machines, including real and ideal models.
Second Law of Thermodynamics, Entropy Introduction
Explores the second law of thermodynamics, focusing on entropy and its implications in different systems.
Diffusion in Compound Alloys
Covers diffusion in compound alloys, chemical diffusion, ionic crystals, and defects.
Grand Canonical and Isothermal Ensembles
Explores the grand canonical and isothermal isobaric ensembles and their thermodynamic implications.
Diffusion in Alloys: Diluted and Binary Alloys
Explores diffusion in diluted and binary alloys, phase separation, and the impact of concentration on intermolecular forces.
Paramagnetism: Microcanonical vs Canonical Treatment
Delves into the microcanonical and canonical treatment of paramagnetism in external fields.
Curie-Weiss Model: Magnetic Materials Simplified
Explores the Curie-Weiss model, illustrating how temperature affects magnetization in materials.
Understanding Chaos in Quantum Field Theories
Explores chaos in quantum field theories, focusing on conformal symmetry, OPE coefficients, and random matrix universality.
Boltzmann Distribution & Thermodynamic Ensembles
Explores Boltzmann distribution, quantum particles, thermodynamic ensembles, and ensemble sampling methods.
Belief Propagation for Graph Coloring
Explores Belief Propagation for graph coloring and its convergence properties.
Energy Minimization in Biological Systems: Equilibrium Models
Covers energy minimization models in biological systems, focusing on equilibrium and the roles of entropy and hydrophobicity.
Advanced Physics: Introduction to Mechanics
Introduces the fundamentals of advanced physics, emphasizing mechanics and historical developments from Aristotle to Newton.
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