Modelling with differential and difference equations / Glenn Fulford, Peter Forrester and Arthur Jones.
By: Fulford, Glenn
.
Contributor(s): Forrester, Peter (Peter John)
| Jones, Arthur
.
Material type:
BookSeries: Australian Mathematical Society lecture series ; 10.Publisher: Cambridge ; New York : Cambridge University Press, 1997Description: x, 405 p. : ill. ; 24 cm.ISBN: 052144618X .Subject(s): Mathematical models| Item type | Current library | Call number | Copy number | Status | Barcode | |
|---|---|---|---|---|---|---|
| General lending | MTU Bishopstown Library Lending | 511.3 (Browse shelf(Opens below)) | 1 | Available | 00188203 |
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Enhanced descriptions from Syndetics:
The real world can be modelled using mathematics, and the construction of such models is the theme of this book. The authors concentrate on the techniques used to set up mathematical models and describe many systems in full detail, covering both differential and difference equations in depth. Amongst the broad spectrum of topics studied in this book are: mechanics, genetics, thermal physics, economics and population studies. Any student wishing to solve problems via mathematical modelling will find that this book provides an excellent introduction to the subject.
Includes bibliographical references (pages 399-402) and index.
Part one: Simple models in mechanics -- Part two: Models with difference equations -- Part three: Models with differential equations -- Part four: Further mechanics.
Table of contents provided by Syndetics
- Preface
- Introduction to the student
- Part I Simple Models In Mechanics
- 1 Newtonian mechanics
- 2 Kinematics on a line
- 3 Ropes and pulleys
- 4 Friction
- 5 Differential equations: linearity and SHM
- 6 Springs and oscillations
- Part II Models with Difference Equations
- 7 Difference equations
- 8 Linear difference equations in finance and economics
- 9 Non-linear difference equations and population growth
- 10 Models for population genetics
- Part III Models with Differential Equations
- 11 Continuous growth and decay models
- 12 Modelling heat flow
- 13 Compartment models of mixing
- Part IV Further Mechanics
- 14 Motion in a fluid medium
- 15 Damped and forced oscillations
- 16 Motion in a plane
- 17 Motion in a circle
- Part V Coupled Models
- 18 Models with linear interactions
- 19 Non-linear coupled models
- References
- Index