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Lecture
Z-Transform and LTI Systems
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LTI Systems: Analysis and Properties
Covers the analysis and properties of Linear Time-Invariant (LTI) systems.
Signals & Systems II: Roots, Equations, and Impulse Responses
Explores roots verification, stability, reproduction modeling, Z transform, and LTI systems realization.
Laplace Transform: Basics and Properties
Covers the basics of the Laplace transform, properties, and applications to LTI systems, including transfer function and frequency response.
Signals & Systems Review
Provides a comprehensive review of signals and systems, covering topics such as time-domain analysis, frequency-domain analysis, and Fourier transform.
Z-Transform: Basics
Covers the Z-Transform, transfer function for LTI systems, and its properties, including linearity and time shift.
LTI Systems and z-Transform
Covers LTI systems, z-Transform, and the Region of Convergence (ROC) with stability criteria and illustrative examples.
Introduction to the Laplace Transform
Covers the Laplace Transform, LTI systems, Fourier Transforms, and properties.
Laplace Transform Basics
Covers the Laplace transform basics, including examples of complex-valued poles and its application to LTI systems.
Region of Convergence and Stability
Explains Region of Convergence and system stability in signal processing.
Discrete-Time Systems Analysis
Explores Z-transform analysis for discrete-time systems and transfer functions in control systems.