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Lecture
Electric Motors: Principles and Applications
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Modeling Dynamic Systems: Definitions and Examples
Covers the modeling of dynamic systems, including definitions, examples, and linearization processes for easier analysis.
Convolution and Laplace Transform
Explores control of dynamic systems, impulse response, Laplace transform, and Fourier transform for solving differential equations.
Applications of Laplace Transform: State Space Modeling
Explores the application of Laplace transform in state space modeling of linear systems and the control of dynamic systems.
Simulation: Control of Dynamic Systems
Explores simulation of common structures and control of dynamic systems through friction and elasticity constants.
Laplace Transform Application: LTI Systems
Covers the application of Laplace transform to LTI Systems, including examples and differential equations.
Notion of Transfer Function
Introduces the concept of transfer function in dynamic systems analysis.
LTI Systems Properties
Covers the properties of Linear Time-Invariant (LTI) systems and their implications.
Laplace Transform: Solving Differential Equations
Discusses the application of the Laplace transform to solve differential equations and explores its properties and examples.
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Discrete Systems Analysis: Z-Transform and System Properties
Explores Z-transform, system properties, and analysis of discrete systems, focusing on stability and transfer functions.