Modelling with differential and difference equations / Glenn Fulford, Peter Forrester, Arthur Jones.

Por: Fulford, GlennColaborador(es): Forrester, Peter | Jones, Arthur, 1934-Series Australian Mathematical Society lecture series ; 10Editor: Cambridge : Cambridge University Press, 1997Descripción: x, 405 p. : il. ; 24 cmISBN: 0521440696 (hardback); 052144618X (paperback)Tema(s): Mathematical models | Differential equations | Difference equationsOtra clasificación: 00A71 (00A69 34-01 39-01) Recursos en línea: Google Book Search | Publisher description
Contenidos:
Part 1. 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 oscillationsPart 2. 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 geneticsPart 3. Models with differential equations: 11. Continuous growth and decay models; 12. Modelling heat flow; 13. Compartment models of mixingPart 4. Further mechanics: 14. Motion in a fluid medium; 15. Damped and forced oscillations; 16. Motion in a plane; 17. Motion on a circlePart 5. Coupled models: 18. Models with linear interactions; 19. Non-linear coupled models.
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Libros Libros Instituto de Matemática, CONICET-UNS
Libros ordenados por tema 00A71 F962 (Browse shelf) Available A-7374

Incluye referencias bibliográficas (p. 399-402) e índice.

Part 1. 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 2. 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 3. Models with differential equations: 11. Continuous growth and decay models; 12. Modelling heat flow; 13. Compartment models of mixing -- Part 4. Further mechanics: 14. Motion in a fluid medium; 15. Damped and forced oscillations; 16. Motion in a plane; 17. Motion on a circle -- Part 5. Coupled models: 18. Models with linear interactions; 19. Non-linear coupled models.

MR, 99f:00009

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