Physics : Mechanics and Properties of Matter: Theory and Practical
Material type:
- 9789355013675
- 23 531 HEMP
Item type | Current library | Collection | Call number | Status | Date due | Barcode | |
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St Aloysius Library | Physics | 531 HEMP (Browse shelf(Opens below)) | Available | 076701 | ||
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St Aloysius Library | Physics | 531 HEMP (Browse shelf(Opens below)) | Available | 076702 | ||
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St Aloysius Library | Physics | 531 HEMP (Browse shelf(Opens below)) | Checked out | 10/14/2025 | 076703 | |
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St Aloysius Library Reference Section | Physics | 531 HEMP (Browse shelf(Opens below)) | Reference Book | 076704 | ||
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St Aloysius Library | Physics | 531 HEMP (Browse shelf(Opens below)) | Available | 076705 |
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530.143 ITZQ Quantum field theory | 530.15 DASM Mathematical Physics | 530.15 RILM Mathematical methods for physics and engineering Ed 3 | 531 HEMP Physics : Mechanics and Properties of Matter: Theory and Practical | 531 HOST Text Book of Physics I: Mechanics and Properties of Matter | 531 KAKM Mechanics Ed 3 | 531 RAMF Fundamentals of Physics: Mechanics and Properties of Matter |
This textbook has been conceptualized as per the recommended National Education Policy (NEP) 2020 and as per the syllabus prescribed by Karnataka State Higher Education Council (KSHEC) for B.Sc. students of Physics. It covers important topics such as Units and Measurements, Momentum and Energy, Special Theory of Relativity, Laws of Motion, Dynamics of Rigid Bodies, Gravitation, Elasticity, Surface Tension and Viscosity for sound conceptual understanding
Table Of Content:
PART I: THEORY 1. Units and Measurements 2. Momentum and Energy 3. Special Theory of Relativity 4. Laws of Motion 5. Dynamics of Rigid Bodies 6. Gravitation 7. Elasticity 8. Surface Tension 9. Viscosity FIRST STEP IN LABORATORY WORK PART II: PRACTICAL 1. Acceleration Due to Gravity 2. Moment of Inertia of a Flywheel 3. M.I. Principle of Perpendicular and Parallel Axes 4. Elastic Constants 5. Modulus of Rigidity by Torsion Pendulum (Maxwell Needle Method) 6. Modulus of Rigidity by Static Torsion Method (Barton's Apparatus) 7. Elastic Constants by Searle's Double Bar Method 8. Surface Tension 9. Viscosity
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