Ordinary Differential Equations
About this book
This introductory text combines models from physics and biology with rigorous reasoning in describing the theory of ordinary differential equations along with applications and computer simulations with Maple. Offering a concise course in the theory of ordinary differential equations, it also enables the reader to enter the field of computer simulations. Thus, it is a valuable read for students in mathematics as well as in physics and engineering. It is also addressed to all those interested in mathematical modeling with ordinary differential equations and systems.
Contents
Part I: Theory
Chapter 1 First-Order Differential Equations
Chapter 2 Linear Differential Systems
Chapter 3 Second-Order Differential Equations
Chapter 4 Nonlinear Differential Equations
Chapter 5 Stability of Solutions
Chapter 6 Differential Systems with Control Parameters
Part II: Exercises
Seminar 1 Classes of First-Order Differential Equations
Seminar 2 Mathematical Modeling with Differential Equations
Seminar 3 Linear Differential Systems
Seminar 4 Second-Order Differential Equations
Seminar 5 Gronwall’s Inequality
Seminar 6 Method of Successive Approximations
Seminar 7 Stability of Solutions
Part III: Maple Code
Lab 1 Introduction to Maple
Lab 2 Differential Equations with Maple
Lab 3 Linear Differential Systems
Lab 4 Second-Order Differential Equations
Lab 5 Nonlinear Differential Systems
Lab 6 Numerical Computation of Solutions
Lab 7 Writing Custom Maple Programs
Lab 8 Differential Systems with Control Parameters
- Brief and accessible presentation.
- Understanding is aided by a section on applications with a plethora of exercises.
- Clear separation of concepts and applications: Theory of ODEs is covered before simulations are discussed in a second part.
Author / Editor information
Radu Precup, Babeș-Bolyai University, Romania.
Reviews
"This book is very suitable for readers who wish a quick and easy introduction to ordinary differential equations (DEs). The text offers many examples, exercises and computer simulations. The content is divided into three parts."
Petio S. Kelevedjev in: Zentralblatt MATH 1398.34002
Topics
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Frontmatter
I -
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Preface
VII -
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Contents
IX - Part I: Theory
-
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Chapter 1 First-Order Differential Equations
3 -
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Chapter 2 Linear Differential Systems
22 -
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Chapter 3 Second-Order Differential Equations
53 -
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Chapter 4 Nonlinear Differential Equations
72 -
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Chapter 5 Stability of Solutions
97 -
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Chapter 6 Differential Systems with Control Parameters
113 - Part II: Exercises
-
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Seminar 1 Classes of First-Order Differential Equations
127 -
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Seminar 2 Mathematical Modeling with Differential Equations
133 -
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Seminar 3 Linear Differential Systems
139 -
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Seminar 4 Second-Order Differential Equations
148 -
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Seminar 5 Gronwall’s Inequality
154 -
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Seminar 6 Method of Successive Approximations
163 -
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Seminar 7 Stability of Solutions
170 - Part III: Maple Code
-
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Lab 1 Introduction to Maple
179 -
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Lab 2 Differential Equations with Maple
185 -
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Lab 3 Linear Differential Systems
188 -
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Lab 4 Second-Order Differential Equations
191 -
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Lab 5 Nonlinear Differential Systems
195 -
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Lab 6 Numerical Computation of Solutions
198 -
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Lab 7 Writing Custom Maple Programs
204 -
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Lab 8 Differential Systems with Control Parameters
212 -
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Bibliography
217 -
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Index
219
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