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Lecture
Relativistic Kinematics: Experiments and Doppler Shift
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Related lectures (32)
Experimental Techniques: Magnetization & Susceptibility
Covers experimental techniques for measuring magnetization and susceptibility, including DC and AC methods.
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Astroparticle Physics: High-Energy Particles and Dark Matter
Covers high-energy particles, gamma-ray and neutrino astronomy, and dark matter detection in the Universe.
Demagnetization Field: External vs Internal Fields
Explores demagnetization field in non-ellipsoidal bodies, comparing external and internal fields and discussing magnetic energy and shape anisotropy.
Effect of RF field
Explores the motion of magnetization induced by an RF field and the concept of resonance.
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Blood flow and signal phase
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Experimental Techniques: Induction Magnetometers
Explores copper-based magnetometers for measuring magnetization and susceptibility using dynamic flux changes and different detector configurations.
Isolated Magnetic Moments: Magnetic Susceptibility
Explores the concept of magnetic susceptibility as a tensor of proportionality between magnetization and the magnetizing field.
Magnetic Field Measurement: Hall Sensor
Explores magnetic field measurement using Hall sensors, soft ferromagnetic materials, flow sensors, and synchronization demodulation.
Phase Transition in Ising Model
Explores phase transitions in the Ising model, discussing equilibrium states, magnetization, and critical points.
Curie-Weiss Model: Magnetization and Phase Transition
Explores the Curie-Weiss model, magnetization, and phase transitions in materials.
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 anisotropy: fundamentals and applications
Explores magnetic anisotropy energy, orbital moments, bit magnetization, superparamagnetism, and atomic-scale engineering in nanostructures.
Magnetic Materials and Spintronics: Recent Advances
Explores recent advances in magnetic materials and spintronics, including manipulating magnetization with light pulses and essentials for high-density magnetic random-access memory.
Ferromagnetism: Magnetic Properties
Explores the magnetic properties of ferromagnetic materials, including retention of magnetization and hysteresis cycles.
Electrical Properties of Materials
Explores electrical and magnetic properties of materials, including conductivity, resistivity, insulators, and dipoles in electric fields.
Different hysteresis curves: Soft vs Hard Magnet
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