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System Dynamics and Control: Module 27a - Introduction to State-Space Modeling

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Introduces the idea of modeling a dynamic system in state-space form. A simple example that puts a general differential equation into state-space form is carried out.
System Dynamics and Control: Module 27a - Introduction to State-Space Modeling
System Dynamics and Control: Module 13d - Introductory Control Design Example
Introduction to System Dynamics Models
System Dynamics and Control: Module 13a - Introduction to Control
System Dynamics and Control: Module 8 - Electromechanical Systems (Sensors)
System Dynamics and Control: Module 17c - Angle and Magnitude Conditions
System Dynamics and Control: Module 26d - Controller Implementation
System Dynamics and Control: Module 23 - More Advanced Architectures
System Dynamics and Control: Module 14b - Design Example
System Dynamics and Control: Module 22d - Designing for Robustness
System Dynamics and Control: Module 20d - Bode Diagrams of Complex Poles and Zeros
System Dynamics and Control: Module 16d - System Type
System Dynamics and Control: Module 14d - Intro to PID, PD and PI control
System Dynamics and Control: Module 10 - First-Order Systems
System Dynamics and Control: Module 21b - System Identification
System Dynamics and Control: Module 19b - Introduction to Bode Diagrams
System Dynamics and Control: Module 19 - Introduction to Frequency Response
System Dynamics and Control: Module 14a - Introduction to Controller Design
System Dynamics and Control: Module 19a - Concept of Frequency Response
System Dynamics and Control: Module 11 - Stability and Second-Order Systems
System Dynamics and Control: Module 13 - Introduction to Control, Block Diagrams
System Dynamics and Control: Module 26a - Sensor/Actuator Dynamics
System Dynamics and Control: Module 18b - Design with Root Locus Example
System Dynamics and Control: Module 26c - Design without a Model
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