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Lecture
Signal Processing Fundamentals
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Related lectures (29)
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Frequency Analysis of Linear Circuits: Passive Linear Circuits (Frequency Analysis 1)
Covers the analysis of analog signals, complex impedance, and Fourier series in linear circuits.
Fourier Transform: Properties and Convolution
Covers the properties and convolution of the Fourier transform.
Fourier Transform: Derivatives and Laplace Transform
Explores the Fourier transform properties with derivatives and introduces the Laplace transform for signal transformation and solving differential equations.
Fourier Analysis: Fourier Series and Transform
Explores Fourier series, DFT, FFT, and their applications in signal processing and spectroscopy.
Circuit Fundamentals: Kirchhoff's Laws
Covers the basics of electric circuits and Kirchhoff's laws for circuit analysis.
Kirchhoff's Laws: Circuits Analysis
Covers Kirchhoff's laws for circuit analysis, emphasizing conservation of charge and energy.
Signals, Instruments, and Systems: System Properties and Transforms
Introduces system properties, Laplace Transform, and analog filters for signal analysis.
The Discrete Fourier Transform (DFT): Definition
Explains the practical use of the Discrete Fourier Transform (DFT) for digital signal processing.
Fourier and Laplace Transforms: Concepts and Applications
Provides an overview of Fourier and Laplace transforms, their properties, and applications in signal analysis.