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Related lectures (32)
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Magnetic anisotropy: fundamentals and applications
Explores magnetic anisotropy energy, orbital moments, bit magnetization, superparamagnetism, and atomic-scale engineering in nanostructures.
Relativistic Kinematics: Experiments and Doppler Shift
Explores experiments on relativistic kinematics and the Doppler shift phenomenon in various contexts, including the Moessbauer effect.
Experimental Techniques: Magnetization & Susceptibility
Covers experimental techniques for measuring magnetization and susceptibility in materials.
Soft Magnets for Technical Applications
Explores soft magnets' definition, magnetization processes, applications in transformers, RF circuits, and sensors, along with global market insights.
Magnets: Operating Point
Explores the relationship between magnetic induction and field strength in permanent magnets.
Magnetic Order: Ferromagnetism
Explores ferromagnetism, domains, domain walls, remnant magnetization, coercive field, and the Barkhausen effect.
Thermal Properties: Specific Heat and Magnetization
Covers the thermal properties of materials, focusing on specific heat and magnetization.
Magnetic Materials: Introduction
Covers the fundamentals of magnetic materials, including H-fields and demagnetization factors.
Different hysteresis curves: Soft vs Hard Magnet
Covers the different hysteresis curves of soft and hard magnets.
Antennas, bandpass filters, nonreciprocal devices: Sect. 9.1 to 9.4
Covers antennas, bandpass filters, and nonreciprocal devices in modern technologies.