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Related lectures (29)
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Reconstruction: Sampling Theorem and Stroboscopic Effect Explained
Explores the stroboscopic effect and the impact of inverting time on signal reconstruction.
Oscillators: Principles and Analysis
Explores the principles and analysis of oscillators, including sinusoidal and square wave types, with practical examples.
Position and Momentum Operators
Explores position and momentum operators, eigenstates, and probability density in three dimensions.
Quantum General Physics: Wave Function and Schrödinger Equation
Explores the wave function, Schrödinger equation, classical-quantum mechanics relationship, and eigenvalue problem in quantum physics.
Sampling Signals: Stroboscopic Effect (Spectrum Folding)
Covers the consequences of undersampling signals and the stroboscopic effect.
AC Circuits Analysis: Impedance and Admittance
Explores AC circuits analysis, focusing on impedance, admittance, phasors, and sinusoidal quantities.
Principles of Quantum Mechanics: Wave-Particle Dualism
Explores the wave-particle dualism in quantum mechanics and the quantification of energy levels in atoms.
Electromagnetic Waves: Reflection, Refraction, and Interference
Explores electromagnetic waves, wave optics, interference, and diffraction phenomena in experimental physics II.
Superposition and Interference in Electromagnetic Waves
Explores the superposition and interference of electromagnetic waves, discussing energy redistribution and standing waves.
Parallel Flow Instability
Explores parallel flow instability, velocity ratio effect, and solving the Rayleigh equation.