System Dynamics for Engineering Students: Concepts and Applications
Autor Nicolae Lobontiuen Limba Engleză Paperback – 7 noi 2025
Additionally, the edition offers comprehensive analysis and design examples, ensuring a well-rounded educational experience.
- Provides more balance between analytical and computational approaches
- Proposes an updated chapter sequence to improve the flow and connectivity of system dynamics
- Includes a three-chapter Controls section to meet the needs of programs that cover both system dynamics and controls in the course
- Integrates Lagrange’s equations as another modeling technique of dynamic systems
- Utilizes both analytical methods and MATLAB/Simulink to solve examples
| Toate formatele și edițiile | Preț | Express |
|---|---|---|
| Paperback (2) | 452.08 lei 5-7 săpt. | |
| ELSEVIER SCIENCE – 31 aug 2017 | 452.08 lei 5-7 săpt. | |
| ELSEVIER SCIENCE – 7 noi 2025 | 581.88 lei 5-7 săpt. |
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Specificații
ISBN-13: 9780323995825
ISBN-10: 0323995829
Pagini: 696
Dimensiuni: 216 x 276 mm
Greutate: 1.86 kg
Ediția:3rd edition
Editura: ELSEVIER SCIENCE
ISBN-10: 0323995829
Pagini: 696
Dimensiuni: 216 x 276 mm
Greutate: 1.86 kg
Ediția:3rd edition
Editura: ELSEVIER SCIENCE
Cuprins
1. Introduction
2. The Laplace transformation
3. Mechanical elements
4. Mechanical systems
5. Electrical systems
6. Fluid and thermal systems
7. Coupled systems
8. State space modeling
9. Transfer function modeling
10. Steady-state and frequency response to harmonic input
11. Block diagrams and feedback control system modeling
12. Stability of feedback control systems
13. Time- and frequency-domain controls of feedback systems
Appendices:
A. Complex numbers
B. Matrix algebra
C. Solutions to linear homogeneous ordinary differential equations and sets with constant coefficients
D. Basics of Simulink
E. Essentials of system dynamics-related MATLAB
F. Deformations and forces in deformable bars and beams
2. The Laplace transformation
3. Mechanical elements
4. Mechanical systems
5. Electrical systems
6. Fluid and thermal systems
7. Coupled systems
8. State space modeling
9. Transfer function modeling
10. Steady-state and frequency response to harmonic input
11. Block diagrams and feedback control system modeling
12. Stability of feedback control systems
13. Time- and frequency-domain controls of feedback systems
Appendices:
A. Complex numbers
B. Matrix algebra
C. Solutions to linear homogeneous ordinary differential equations and sets with constant coefficients
D. Basics of Simulink
E. Essentials of system dynamics-related MATLAB
F. Deformations and forces in deformable bars and beams