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# Physics

BI 652

New

Text Book of Physics (2nd Edition)

Standard - XII

Book ID : 652

Rs.76

Rs.84

-10%

Contents

1.  Circular Motion

1.1 Angular Displacement

1.2 Angular Velocity

1.3 Relation between Linear Velocity and Angular Velocity

1.4 Uniform Circular Motion

1.6 Centripetal and Centrifugal Force

1.8 Vertical Circular Motion

1.9 Equation for Velocity and Energy at Different....

1.10      Equations of Circular Motion

2.  Gravitation

2.1 Newton's Law of Gravitation

2.2 Projection of Satellite

2.3 Periodic Time of a Satellite

2.4 Kepler's Laws of Planetary Motion

2.5 Binding Energy and Escape Velocity of a Satellite

2.6 Weightlessness Condition in a Satellite

2.7 Variation of Gravitational Acceleration

2.8 Communication Satellite

3.  Rotational Motion

3.1 Moment of Inertia

3.2 K.E. of a Rotating Body

3.3 Physical Significance of M.I.

3.5 Torque acting on Rotating Body

3.6 Principle of Parallel and Perpendicular Axes

3.7 M.I. of Uniform Bodies

3.8 Angular Momentum and Law of Conservation .....

4.  Oscillations

4.1 Periodic Motion

4.2 Simple Harmonic Motion (S.H.M)

4.3 Differential Equation of Linear S.H.M.

4.4 Projection of U.C.M. along a diameter as S.H.M.

4.5 Phase of S.H.M.

4.6 Kinetic Energy and Potential Energy of S.H.M.

4.7 Composition of two S.H.M. having same period....

4.8 Simple Pendulum

4.9 Angular S.H.M. and its differential equation

4.10      A Magnet vibrating in Uniform Magnetic Induction

5.  Elasticity

5.1 Deformation

5.2 Elasticity

5.3 Plasticity

5.4 Stress and Strain

5.5 Hooke's law

5.6 Elastic Constants and their Relations

5.7 Young's Modulus by Searle's method

5.8 Behaviour of Wire under Constantly Increasing Load

5.9 Work done in Stretching a Wire

6.  Surface Tension

6.1 S.T. on the Basis of Molecular Theory

6.2 Surface Energy

6.3 Surface Tension

6.4 Angle of Contact

6.5 Capillarity and Capillary Action

6.6 Effect of Impurity and Temperature on Surface Tension 104

7.  Wave Motion

7.1 Simple Harmonic Progressive Waves

7.2 Reflection of Transverse and Longitudinal Waves

7.3 Change of Phase during Reflection of Waves

7.4 Superposition of Waves

7.5 Formation of Beats

7.6 Doppler's Effect

8.  Stationary Waves

8.1 Study of Vibrations in a Finite Medium

8.2 Formation of Stationary Waves

8.3 Vibration of Air Column

8.4 Free and Forced Vibrations

8.5 Resonance

8.6 Experiments

9.  Kinetic Theory of Gases

9.1 Ideal gas

9.2 Assumptions of Kinetic Theory of Gases

9.3 Mean Free Path

9.4 Expression for Pressure of a Gas

9.5 Derivation of Boyle's Law

9.6 Specific Heats of Gases

9.7 Internal and External Latent Heats

10.1      Coefficient of Absorption, Reflection and Transmission

10.2      Prevost's Theory of Heat Exchanges

10.3      Emmisive Power and Emmisivity

10.4      Perfectly Black Body

10.6      Kirchhoff's Law-of Radiation and Theoretical Proof

10.7      Ritchie's experiment

10.8      Stefan's Law

10.9      Newton's Law of Cooling and Radiation correction

10.10     Solar Constant and Surface Temperature of the Sun

11. Wave Theory of Light

11.1      Wave Theory of Light

11.2      Huygen's Principle

11.3      Construction of Plane and Spherical Wavefront

11.4      Wavefront and Wavenormal

11.5      Reflection at Plane Surface

11.6      Refraction at a Plane Surface

11.7      Polarization

11.8      Brewster's Law

11.9      Nicol Prism

11.10     Polaroid

12. Interference and Diffraction

12.1      Introduction

12.2      Conditions for Steady Interference Pattern

12.3      Young's Experiment

12.4      Analytical Treatment of Interference Bands

12.5      Measurement of Wavelength by Biprism Experiment

12.6      Diffraction due to a Single Slit

12.7      Rayleigh's Criteria of Limiting Resolution

12.8      Resolving Power of a Microscope and Telescope

12.9      Difference between Interference and Diffraction

13. Electrostatics

13.1      Gauss's Theorem and its Applications

13.2      Mechanical Force on Unit Area of a Charged Conductor

13.3      Energy Density of the Medium

13.4      Concept of a Condenser

13.5      Capacity of a Parallel Plate Condenser

13.6      Effect of Dielectrics on Capacity

13.7      Energy of a Charged Condenser

13.8      Condensers in Series and in Parallel

13.9      Van-de-graaf generator

14. Current Electricity

14.1      Kirchhoffs laws

14.2      Wheatstone's Bridge

14.3      Meter Bridge

14.4      Potentiometer

14.5      Thermoelectricity

14.6      Seebeck Effect, Peltier Effect and Thomson Effect

14.7      Neutral and Inversion Temperature

14.8      Construction and Uses of Thermocouple

15. Magnetic Effects of Electric Current

15.1      Ampere's Law and Its Applications

15.2      Moving Coil Galvanometer

15.3      Ammeter

15.4      Voltmeter

15.5      Sensitivity and Accuracy of M.C.G....

15.6      Theory and Construction of Tangent Galvanometer

15.7      Sensitivity and Accuracy of Tangent Galvanometer

15.8      Cyclotron

16. Magnetism

16.1      Magnetic Induction at any point due to short magnetic dipole

16.2      Magnetic Potential at any point due to a short....

16.3      Diamagnetism, Paramagnetism and Ferromagnetism.....

16.4      Curie Temperature

17. Electromagnetic Induction

17.1      Laws of Electromagnetic Induction

17.2      Eddy Currents

17.3      Self Induction and Mutual Induction

17.4      Transformer

17.5      Coil rotating in Uniform Magnetic Induction

17.6      Alternating Currents

17.7      Reactance and Impedance

17.8      Power in A.C. Circuit with Resistance, Inductance and Capacitance

17.9      Resonant Circuits

18. Electrons and Photons

18.1      Discovery of Electron

18.2      Charge and Mass of Electron

18.3      Photoelectric Effect

18.4      Einstein's Equation

18.5      Photoelectric cell and its Applications

19. Atoms Molecules and Nuclei

19.1      Bohr's Model

19.2      Hydrogen Spectrum

19.3      Maser and Laser as Light Sources

19.4      de Broglie hypothesis

19.5      Wavelength of an electron

19.6      Davisson and Germer experiment

19.7      The Electron Microscope

20. SEMICONDUCTORS

20.1      Energy Bands in Solids

20.2      Intrinsic and Extrinsic Semiconductors

20.3      p-type and n-type Semiconductor

20.4      p-n Junction diode

20.5      Rectifiers

20.6      Zener diode as a Voltage Regulator

20.7      Solar Cell

20.8      LED - Light Emitting Diodes

20.9      Transistor as an Amplifier

20.10     Oscillators

20.11     Logic Gates

21. Communication

21.1      Space Communication

21.2      Ground, Sky, Space Wave Propagation

21.3      Satellite Communication

21.4      Applications of Remote Sensing

21.5      Line Communication

21.6      Two Wire Line

21.7      Cables

21.8      Optical Communication

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