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Lecture
Z-Transform Properties
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Related lectures (30)
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Z-transform Theory: Part 1
Explores the Z-transform theory, including geometric progressions, linearity, convolution, and temporal shifts.
Laplace Transform: Properties and Applications
Covers the properties and applications of the Laplace transform in solving differential equations.
Discrete Systems: Relations, Linear Dynamics, and Operators
Covers discrete systems, linear dynamics, causality, impulse response, convolution, and operators' effects.
Systems: Properties and Behavior
Covers the fundamental properties of systems in discrete and continuous time domains.
Laplace Transform: Rules and Examples
Covers Laplace transform rules, examples, signal transformation, and process control.
Physics 1: Vectors and Dot Product
Covers the properties of vectors, including commutativity, distributivity, and linearity.
Inverse Laplace Transform
Covers the Inverse Laplace Transform and its applications in finding projections from the Laplace domain to the time domain.
MHD Stability and Equilibrium
Explores MHD equilibrium and stability, emphasizing energy considerations for determining stability.
The z-transform: Basics and Applications
Introduces the z-transform, covering its basics, applications to systems, and practical examples.
Fourier Transform: Concepts and Applications
Covers the Fourier transform, its properties, applications in signal processing, and differential equations, emphasizing the concept of derivatives becoming multiplications in the frequency domain.