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Magnetism and Optical Properties
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Related lectures (52)
Magnetic Properties Overview
Introduces magnetization, magnetic moments, and properties of materials, focusing on diamagnetism, paramagnetism, and ferromagnetism.
Magnetism: Materials & Fields
Explores induction, Maxwell's equations, magnetic materials, electromagnetism, and hysteresis cycles in ferromagnets.
Magnetic Properties: Materials and Magnetization
Explores magnetic properties of materials, types of magnetism, and hysteresis curves.
Photon: the light particle
MOOC: The Radio Sky I: Science and Observations
Delves into the properties and significance of the photon as a fundamental entity in the Universe.
Magnetic Interactions: Ferromagnetism & Exchange
Covers ferromagnetism, antiferromagnetism, and paramagnetism, explaining exchange interactions and magnetic domains.
Light Propagation and Absorption
Explores light propagation, absorption, and color phenomena in different media, including conductors, semiconductors, and metals.
Ferromagnetism: Magnetic Properties
Explores the magnetic properties of ferromagnetic materials, including retention of magnetization and hysteresis cycles.
Interaction of E-M Waves with Matter: Transmission, Absorption, Reflection
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Explores how electromagnetic waves interact with matter, emphasizing transmission, absorption, and reflection.
Exchange Interaction: Basic Concepts
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Covers the basic concepts of exchange interaction in magnetic materials, including discrimination between different magnetic materials and critical temperatures.
General Physics: Quantum
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Explores quantum physics, wave-particle duality, and optical phenomena like reflection and interference.
Magnetic Moments: Atoms & Ions
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Explores the computation of total magnetic moments of atoms and ions, covering electron-nucleus interactions, filled shells, and types of magnetism.
Reflection and Refraction in Transparent Matter
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Explores the laws of reflection and refraction in transparent matter, focusing on wave interaction with dielectric slabs.
Magnetic Materials: Properties and Applications
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Covers the classification, properties, and applications of various magnetic materials.
Magnetism: Types and Susceptibility
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Explores magnetism types, susceptibility, and magnetic domain behavior at different temperatures.
Nanomagnetism: Magnetic Structures and Interactions
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Covers fundamental concepts of magnetism, types of magnetism, and techniques for investigating magnetic structures at the nanoscale.
Materials Behavior with Magnetic Fields
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Covers the behavior of materials in magnetic fields and their applications.
Principles of Quantum Mechanics: Wave-Particle Dualism
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Explores the wave-particle dualism in quantum mechanics and the quantification of energy levels in atoms.
Photon: Quantum Properties and Experiments
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Explores the quantum properties of photons, covering their wave-particle duality and implications in various experiments.
Semiconductor Physics: Band Formation and Experiments
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Covers semiconductor band formation and presents experiments demonstrating charge carrier behavior and wave-particle duality in electrons.
Magnetic Materials: Properties and Applications
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Covers the classification and properties of magnetic materials used in modern technologies.
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