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Natural remanent magnetization
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Related lectures (32)
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Echo Formation: Dephasing and Rephasing
MOOC: Fundamentals of Biomedical Imaging: Magnetic Resonance Imaging (MRI)
Explores echo formation in biomedical imaging, emphasizing dephasing and rephasing concepts for signal optimization.
Effect of RF field
MOOC: Fundamentals of Biomedical Imaging: Magnetic Resonance Imaging (MRI)
Explores the motion of magnetization induced by an RF field and the concept of resonance.
Blood flow and signal phase
MOOC: Fundamentals of Biomedical Imaging: Magnetic Resonance Imaging (MRI)
Covers the impact of blood flow on the rephased signal in biomedical imaging.
Plasma Waves: Characteristics and Magnetization
Explores plasma wave characteristics in magnetized plasma and discusses Doppler shifted resonances.
Curie-Weiss Model: Magnetization and Phase Transition
Explores the Curie-Weiss model, magnetization, and phase transitions in materials.
Phase Transition in Ising Model
Explores phase transitions in the Ising model, discussing equilibrium states, magnetization, and critical points.
Plasma Physics: Collective Behavior
Explores plasma properties, long-range forces, and magnetization in astrophysical contexts.
Magnets: Operating Point
MOOC: Electromechanical conversion I
Explores the relationship between magnetic induction and field strength in permanent magnets.
Magnetic anisotropy: fundamentals and applications
Explores magnetic anisotropy energy, orbital moments, bit magnetization, superparamagnetism, and atomic-scale engineering in nanostructures.
Electrical Properties of Materials
Explores electrical and magnetic properties of materials, including conductivity, resistivity, insulators, and dipoles in electric fields.
Ferromagnetism: Magnetic Properties
Explores the magnetic properties of ferromagnetic materials, including retention of magnetization and hysteresis cycles.
Curie-Weiss Model: Magnetic Materials Simplified
Explores the Curie-Weiss model, illustrating how temperature affects magnetization in materials.
Relativistic Kinematics: Experiments and Doppler Shift
MOOC: Mechanics: Change of Reference Frame and Relativity
Explores experiments on relativistic kinematics and the Doppler shift phenomenon in various contexts, including the Moessbauer effect.
Magnetic Properties: Ferromagnetics & Miller Indices
Discusses stationary creep, material properties, magnetic properties of ferromagnetics, and Miller indices in crystallography.
Thermal Properties: Specific Heat and Magnetization
Covers the thermal properties of materials, focusing on specific heat and magnetization.
Quantum Mechanics: Maxwell Equations
Covers the application of Maxwell's equations in quantum mechanics.
Demagnetization Field: External vs Internal Fields
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Explores demagnetization field in non-ellipsoidal bodies, comparing external and internal fields and discussing magnetic energy and shape anisotropy.
Experimental Techniques: Induction Magnetometers
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Explores copper-based magnetometers for measuring magnetization and susceptibility using dynamic flux changes and different detector configurations.
Isolated Magnetic Moments: Magnetic Susceptibility
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Explores the concept of magnetic susceptibility as a tensor of proportionality between magnetization and the magnetizing field.
Itinerant Magnetism: Elemental Magnets
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Delves into the properties of elemental magnets and the role of band structure in governing magnetic ordering.
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