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Differential Equation Models
Overview of attention for book
Table of Contents
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Book Overview
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Chapter 1
Setting Up First-Order Differential Equations from Word Problems
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Chapter 2
Qualitative Solution Sketching for First-Order Differential Equations
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Chapter 3
Difference and Differential Equation Population Growth Models
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Chapter 4
The Van Meegeren Art Forgeries
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Chapter 5
Single Species Population Models
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Chapter 6
The Spread of Technological Innovations
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Chapter 7
A Model for the Detection of Diabetes
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Chapter 8
Combat Models
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Chapter 9
Modeling Linear Systems by Frequency Response Methods
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Chapter 10
How Long Should a Traffic Light Remain Amber?
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Chapter 11
Queue Length at a Traffic Light via Flow Theory
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Chapter 12
Car-Following Models
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Chapter 13
Equilibrium Speed Distributions
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Chapter 14
Traffic Flow Theory
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Chapter 15
Why the Percentage of Sharks Caught in the Mediterranean Sea Rose Dramatically during World War I
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Chapter 16
Quadratic Population Models: Almost Never Any Cycles
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Chapter 17
The Principle of Competitive Exclusion in Population Biology
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Chapter 18
Biological Cycles and the Fivefold Way
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Chapter 19
Hilbert’s 16th Problem: How Many Cycles?
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Chapter 20
Surge Tank Analysis
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Chapter 21
Shaking a Piece of String to Rest
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Chapter 22
Heat Transfer in Frozen Soil
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Chapter 23
Network Analysis of Steam Generator Flow
Overall attention for this book and its chapters
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Mentioned by
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policy source
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syllabi
2
institutions with syllabi
Citations
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Readers on
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Mendeley
Book overview
1. Setting Up First-Order Differential Equations from Word Problems
2. Qualitative Solution Sketching for First-Order Differential Equations
3. Difference and Differential Equation Population Growth Models
4. The Van Meegeren Art Forgeries
5. Single Species Population Models
6. The Spread of Technological Innovations
7. A Model for the Detection of Diabetes
8. Combat Models
9. Modeling Linear Systems by Frequency Response Methods
10. How Long Should a Traffic Light Remain Amber?
11. Queue Length at a Traffic Light via Flow Theory
12. Car-Following Models
13. Equilibrium Speed Distributions
14. Traffic Flow Theory
15. Why the Percentage of Sharks Caught in the Mediterranean Sea Rose Dramatically during World War I
16. Quadratic Population Models: Almost Never Any Cycles
17. The Principle of Competitive Exclusion in Population Biology
18. Biological Cycles and the Fivefold Way
19. Hilbert’s 16th Problem: How Many Cycles?
20. Surge Tank Analysis
21. Shaking a Piece of String to Rest
22. Heat Transfer in Frozen Soil
23. Network Analysis of Steam Generator Flow
Summary
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Syllabi
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This data is correct as of December 2015 - for more up to date information, please visit
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So far, Altmetric has seen this research output assigned in
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University of Washington-Seattle Campus
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1
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