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Lecture
LTI Systems Properties
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Related lectures (32)
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Signal and System Analysis: Impulse Response and Convolution
Covers the analysis of LTI systems using impulse response and convolution.
Signals & Systems II: Difference Equations and Inverse Operators
Explores difference equations, impulse response, BIBO stability, and inverse operators in signal processing.
Frequency Response: LTI Systems
Explores the frequency response of stable LTI systems in both continuous-time and discrete-time domains.
Fourier Transform: Concepts and Applications
Covers the Fourier transform, its properties, and applications in signal processing and differential equations, demonstrating its importance in mathematical analysis.
Partial Fraction Expansion
Introduces Partial Fraction Expansion as a valuable tool for analyzing stable LTI systems.
Fourier Transform Pairs and System Analysis
Covers Fourier transform pairs, system analysis with difference equations, and frequency response.
Discrete Systems Analysis: Z-Transform and System Properties
Explores Z-transform, system properties, and analysis of discrete systems, focusing on stability and transfer functions.
Signals, Instruments, and Systems: System Properties and Transforms
Introduces system properties, Laplace Transform, and analog filters for signal analysis.
Linear Time Invariant Systems
Covers LTI systems, impulse response, convolution, Fourier Transform, and system characterization.
Poisson Problem: Fourier Transform Approach
Explores solving the Poisson problem using Fourier transform, discussing source terms, boundary conditions, and solution uniqueness.