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Related lectures (27)
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Critical Exponents: Theory and Applications
Explores the derivation of critical exponents and the scaling laws in phase diagrams.
Modeling Interactions in Statistical Physics
Explores modeling interactions in statistical physics, focusing on energy, magnetization, and phase transitions.
Structural Mechanics Part 2: FEM & Scaling Laws
Explores Finite Element Modeling in Structural Mechanics, covering convergence, nonlinear displacement, and scaling laws in micro and nanosystems.
Isolated Magnetic Moments: Langevin, Curie Law
Delves into the Langevin and Curie law limits of magnetic moments.
Optical Methods in Chemistry: Materials Properties and Applications
Explores optical methods in chemistry, focusing on materials properties and applications, including non-linear optics and self-focusing phenomena.
Antiferromagnetic Resonance
Explores the spin-flop transition, susceptibility, and magnetic resonance in antiferromagnets.
Magnetic Properties: Materials and Magnetization
Explores magnetic properties of materials, types of magnetism, and hysteresis curves.
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