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Low-power Radio Design for the IoT
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Related lectures (30)
Harmonic Oscillators: Definitions and Dynamics
Covers the definitions and dynamics of harmonic oscillators, including ladder operators and coherent states.
Mechanics: Oscillator Harmonics
Explores harmonic oscillators' behavior under various damping conditions, covering Newton's laws, complex numbers, and Euler's formula.
Oscillations libres pendule
Explores the theory of simple harmonic oscillators, with a focus on pendulum dynamics.
Forced Harmonic Oscillator
Explores forced harmonic oscillators, resonance, initial conditions, and collision conservation principles.
Entrainment and Synchronization of Oscillators
Explores entrainment and synchronization of oscillators, focusing on the Kuramoto model and resonance phenomena in human circadian rhythms.
Simple Harmonic Oscillator
Explores simple harmonic oscillators, Hooke's Law, equations of motion, and graphical representations.
Forced Harmonic Oscillator: Resonance Phenomenon
Covers the forced and damped harmonic oscillator, including the harmonic solution and resonance phenomenon.
Basic Principles of Oscillators
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Covers the fundamental principles of oscillators, including signal generators, OPAMP RC oscillator circuits, and multivibrators.
Colpitts and Cross-coupled Oscillators
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Covers the analysis of Colpitts and Cross-coupled oscillators, focusing on nonlinear effects and phase noise.
Oscillators: Definition and Conditions
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Explores the definition and conditions of oscillators, emphasizing the Barkhausen criterion for oscillation and practical implementation.
Harmonic Oscillator: LC Resonator Analysis
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Analyzes an LC resonator as a harmonic oscillator, discussing transient behavior, oscillations in charge and current, and the interplay between electrical and magnetic energy.
Function Generator and Oscillator
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Explores autonomous circuits for generating periodic signals and the principles behind oscillators and signal generators.
Non-Harmonic Oscillators: Dynamics and Resonance
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Explores non-harmonic oscillators dynamics, including forced oscillations and damped oscillations.
Oscillators: Definition and Conditions
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Covers the definition and conditions of oscillators, focusing on the Barkhausen criterion for oscillation.
Forced Oscillations: Damping, Resonance, and Coupling
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Explores forced oscillations in mechanical and electrical systems, damping, resonance, and coupling of oscillators.
Advanced Physics I: Kepler's Laws and Oscillations
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Covers advanced physics topics such as angular momentum, gravitational forces, Johannes Kepler's laws, and harmonic oscillators.
Advanced Physics I: Oscillations and Dynamics
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Covers advanced topics in physics, focusing on oscillations and dynamics, including the harmonic oscillator and forced oscillations.
Energy, Damped and Driven Oscillators
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Explores harmonic motion, energy in oscillators, damping effects, and resonance.
Oscillators: Principles and Analysis
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Explores the principles and analysis of oscillators, including sinusoidal and square wave types, with practical examples.
Harmonic Oscillator: Free Oscillation and Damping
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Explores harmonic oscillators, free oscillation, and damping, including critical damping and energy analysis.
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