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Critical point (thermodynamics)
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Related lectures (29)
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Renormalization Group: Universal Critical Exponents
Explores the universal critical exponents of microscopic systems and the role of the renormalization group.
The Curie-Weiss Model: Overview and Applications
Covers the Curie-Weiss model, discussing its theoretical foundations and practical applications in physical systems.
Solvents: Properties and Applications
Explores the properties and applications of solvents, including polarity, density, viscosity, and solubility, as well as their role in heterogeneous mixtures and auto-ignition.
DC Current and Superconductors
Covers the basics of DC currents, resistors, capacitors, and superconductors, including historical context and Nobel Prize-winning discoveries.
Optimal Detection in Spinodal Systems
Explores optimal detection in spinodal systems, discussing stability analysis and phase transitions.
Spherical Symmetry in Statistical Mechanics
Explores spherical symmetry in statistical mechanics and its role in phase transitions.
FK-Percolation and the Six-Vertex Model: Critical Phenomena
Covers the transition from the six-vertex model to FK-percolation, focusing on critical phenomena and phase transitions in two-dimensional systems.
Exchange Interaction: Isotropic and Magnetic Field Interpretation
Explores isotropic exchange interaction in materials and its magnetic field interpretation, affecting ferromagnetic behavior and critical temperature.
Magnetic Order: Critical Behavior
Explores critical exponents in ferromagnets, different models like Heisenberg, XY, and Ising, and their significance in various systems.