Foundations of Classical Mechanics aims at providing in-depth understanding of the cornerstones of modern science and engineering. It helps budding engineers and scientists who need a deep grasp of the foundation principles and rigorous methodologies.
Foundations of Classical Mechanics aims at providing in-depth understanding of the cornerstones of modern science and engineering. It helps budding engineers and scientists who need a deep grasp of the foundation principles and rigorous methodologies.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
P. C. Deshmukh is a Professor in the Department of Physics at the Indian Institute of Technology, Tirupati, India. He has taught courses on classical mechanics, atomic and molecular physics, quantum mechanics, solid state theory, foundations of theoretical physics and theory of atomic collision at undergraduate and graduate levels. He has published more than 100 papers in international journals. His current research includes photoabsoption processes in free/confined atoms, molecules and ions.
Inhaltsangabe
List of figures List of tables Foreword Preface Introduction 1. Laws of mechanics and symmetry principles 2. Mathematical preliminaries 3. Real effects of pseudo-forces: description of motion in accelerated frame of reference 4. Small oscillations and wave motion 5. Damped and driven oscillations Resonances 6. The variational principle 7. Angular momentum and rigid body dynamics 8. The gravitational interaction in Newtonian mechanics 9. Complex behavior of simple system 10. Gradient operator, methods of fluid mechanics, and electrodynamics 11. Rudiments of fluid mechanics 12. Basic principles of electrodynamics 13. Introduction to special theory of relativity 14. A glimpse of the general theory of relativity Index.
List of figures List of tables Foreword Preface Introduction 1. Laws of mechanics and symmetry principles 2. Mathematical preliminaries 3. Real effects of pseudo-forces: description of motion in accelerated frame of reference 4. Small oscillations and wave motion 5. Damped and driven oscillations Resonances 6. The variational principle 7. Angular momentum and rigid body dynamics 8. The gravitational interaction in Newtonian mechanics 9. Complex behavior of simple system 10. Gradient operator, methods of fluid mechanics, and electrodynamics 11. Rudiments of fluid mechanics 12. Basic principles of electrodynamics 13. Introduction to special theory of relativity 14. A glimpse of the general theory of relativity Index.
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