Difference between revisions of "Examples"
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|Chapter summary=In this chapter we present a collection of examples spanning many different fields of science and engineering. These examples are used throughout the text and in exercises to illustrate different concepts. First-time readers may wish to focus on only a few examples with which they have had the most prior experience or insight to understand the concepts of state, input, output, and dynamics in a familiar setting. | |Chapter summary=In this chapter we present a collection of examples spanning many different fields of science and engineering. These examples are used throughout the text and in exercises to illustrate different concepts. First-time readers may wish to focus on only a few examples with which they have had the most prior experience or insight to understand the concepts of state, input, output, and dynamics in a familiar setting. | ||
|Chapter contents=# [[Cruise control|Cruise Control]] | |Chapter contents=# [[Cruise control|Cruise Control]] | ||
− | # Bicycle Dynamics | + | # [[Bicycle dynamics|Bicycle Dynamics]] |
# Operational Amplifier Circuits | # Operational Amplifier Circuits | ||
# Computing Systems and Networks | # Computing Systems and Networks |
Latest revision as of 20:44, 24 November 2024
Prev: System Modeling | Chapter 4 - Examples | Next: Dynamic Behavior |
In this chapter we present a collection of examples spanning many different fields of science and engineering. These examples are used throughout the text and in exercises to illustrate different concepts. First-time readers may wish to focus on only a few examples with which they have had the most prior experience or insight to understand the concepts of state, input, output, and dynamics in a familiar setting.
Contents
- Cruise Control
- Bicycle Dynamics
- Operational Amplifier Circuits
- Computing Systems and Networks
- Web Server Control
- Congestion Control
- Atomic Force Microscopy
- Drug Administration
- Compartment Models
- Insulin--Glucose Dynamics
- Population Dynamics
- Logistic Growth Model
- Predator-Prey Models
- Exercises
Teaching MaterialsNone available Additional ExercisesNone available Frequently Asked Questions
ErrataNone reported |
Python CodeThe following Python scripts are available for producing figures that appear in this chapter.
See the software page for more information on how to run these scripts. Additional Information |