Engineering Physics
2nd Edition
9378529879
·
9789378529870
© 2027 | Published: July 7, 2026
Overview:The book is designed to cover undergraduate engineering physics syllabus. It contains 24 well-structured chapters, covering classical mechanics and thermodynamics, quantum theory, semiconductors, and cutting-edge nanomaterials. The book brid…
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1. Elasticity
2. Viscosity
3. Thermal Physics
4. Mechanics of Materials
5. Oscillations, Waves, Shock Waves, Sound
6. Acoustics
7. Ultrasonics
8. Electromagnetic Fields
9. Interference
10. Diffraction
11. Laser
12. Fiber Optics
13. Waves and Particles
14. Quantum Theory
15. Crystal Structure
16. Statistics and Band Theory of Solids
17. Semiconductors
18. Transport Properties of Semiconductors
19. Magnetic Materials
20. Dielectric Materials
21. Metallic Glasses
22. Shape Memory Alloys
23. Nanomaterial Synthesis
24. Nanodevices
2. Viscosity
3. Thermal Physics
4. Mechanics of Materials
5. Oscillations, Waves, Shock Waves, Sound
6. Acoustics
7. Ultrasonics
8. Electromagnetic Fields
9. Interference
10. Diffraction
11. Laser
12. Fiber Optics
13. Waves and Particles
14. Quantum Theory
15. Crystal Structure
16. Statistics and Band Theory of Solids
17. Semiconductors
18. Transport Properties of Semiconductors
19. Magnetic Materials
20. Dielectric Materials
21. Metallic Glasses
22. Shape Memory Alloys
23. Nanomaterial Synthesis
24. Nanodevices
Overview:
The book is designed to cover undergraduate engineering physics syllabus. It contains 24 well-structured chapters, covering classical mechanics and thermodynamics, quantum theory, semiconductors, and cutting-edge nanomaterials. The book bridges fundamental principles with real-world engineering applications. Each chapter features solved problems, numerical exercises, and objective and descriptive questions to reinforce learning. Written in clear, accessible language, this book equips aspiring engineers with the conceptual depth and practical insight needed to excel in their academic and professional pursuits.
Key Features:
1. Strong emphasis on engineering applications
2. Inclusion of new chapters on Thermal Physics, Electromagnetics, Mechanics of Material etc to ensure enhanced course coverage
3. Features high-quality schematic diagrams of modern devices
4. Includes worked-out numerical examples focusing on engineering applications like thermal stress in expansion joints and bit-density in magnetic storage.
5. Excellent pedagogical aids: Descriptive questions, Short questions, Exercises, Objective type questions, illustrations etc.
The book is designed to cover undergraduate engineering physics syllabus. It contains 24 well-structured chapters, covering classical mechanics and thermodynamics, quantum theory, semiconductors, and cutting-edge nanomaterials. The book bridges fundamental principles with real-world engineering applications. Each chapter features solved problems, numerical exercises, and objective and descriptive questions to reinforce learning. Written in clear, accessible language, this book equips aspiring engineers with the conceptual depth and practical insight needed to excel in their academic and professional pursuits.
Key Features:
1. Strong emphasis on engineering applications
2. Inclusion of new chapters on Thermal Physics, Electromagnetics, Mechanics of Material etc to ensure enhanced course coverage
3. Features high-quality schematic diagrams of modern devices
4. Includes worked-out numerical examples focusing on engineering applications like thermal stress in expansion joints and bit-density in magnetic storage.
5. Excellent pedagogical aids: Descriptive questions, Short questions, Exercises, Objective type questions, illustrations etc.