Skip to main content
Graph
Search
fr
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Quizes
Exercises
Publications
Startups
Units
Show all results for
Home
Lecture
Modeling Interactions in Statistical Physics
Graph Chatbot
Related lectures (39)
Renormalization & Scaling
Explores renormalization, scaling, critical points, exponents, and phase transitions in conformal field theory and quantum gravity.
The Curie-Weiss Model: Overview and Applications
Covers the Curie-Weiss model, discussing its theoretical foundations and practical applications in physical systems.
Phase Transition in Ising Model
Explores phase transitions in the Ising model, discussing equilibrium states, magnetization, and critical points.
Phase Transitions in Statistical Mechanics
Covers phase transitions, correlation length, critical exponents, and universality in Statistical Mechanics.
Scaling & Renormalization in Statistical Mechanics
Explores scaling and renormalization in statistical mechanics, emphasizing critical points and invariant properties.
Phase diagram of the Ising model
Explores the phase diagram of the Ising model, focusing on Gibbs state uniqueness and critical temperatures.
Renormalization Group in Field Theory
Explores the Renormalization Group in field theory, discussing scaling functions, critical exponents, and Gaussian fixed points.
Phase Transitions: Understanding Thermodynamic Stability
Explores phase transitions in thermodynamics, focusing on stability criteria and real-world applications.
Spherical Symmetry in Statistical Mechanics
Explores spherical symmetry in statistical mechanics and its role in phase transitions.
Curie-Weiss Model: Magnetization and Phase Transition
Explores the Curie-Weiss model, magnetization, and phase transitions in materials.
Critical Exponents from RG
Covers CFT, gravity, phase transitions, critical exponents, and RG formalism.
Phase Transitions
Explores phase transitions, critical points, opalescence, and metastability in substances.
Magnetic Interactions: Ferromagnetism & Exchange
Covers ferromagnetism, antiferromagnetism, and paramagnetism, explaining exchange interactions and magnetic domains.
Magnetic anisotropy: fundamentals and applications
Explores magnetic anisotropy energy, orbital moments, bit magnetization, superparamagnetism, and atomic-scale engineering in nanostructures.
Ferromagnetism: Magnetic Properties
Explores the magnetic properties of ferromagnetic materials, including retention of magnetization and hysteresis cycles.
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.
Conformal Field Theories: Review and Scaling
Covers statistical mechanics, conformal field theories, and critical exponents, emphasizing the importance of universality and renormalization group flows.
Renormalization Group: Universal Critical Exponents
Explores the universal critical exponents of microscopic systems and the role of the renormalization group.
Materials Science of Magnetic Materials
Covers the materials science of magnetic materials, focusing on properties, concepts, and optimization for functional applications.
Phase Transitions in the Ising Model
Log in to Mediaspace to watch this video
Explores phase transitions in the Ising model, mean magnetization, susceptibility, critical exponents, and the universality of critical exponents.
Previous
Page 1 of 2
Next