Arihant Physics Handbook PDF Free Download |11th & 12th, NEET & JEE

Arihant Physics Handbook PDF Free Download |11th & 12th, NEET & JEE

Arihant Physics Handbook PDF Free Download|11th & 12th, NEET & JEE | Very useful for students who are preparing for NEET & JEE exam. Download and read the book.

Arihant Physics Handbook PDF Free Download

  • Subject: Physics
  • Name of Book: Arihant Physics Handbook PDF Free Download|11th & 12th, NEET & JEE
  • Language of Book: English
  • Total Size of the Book: 8 MB
  • Total Pages of the Book: 464 Pages
  • Useful for: Class 11th and 12th for NEET and JEE Main Preparation
  • Credit: Arihant Publications

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Contents of Arihant Handbook for Physics Class 11th & 12th

Units and Measurement

  • — Scalars
  • — Vectors
  • — Multiplication of Vectors
  • — Vector or Cross Product of Two Vectors
  • — Frame of Reference
  • — Dimensions
  • — Speed
  • — Addition of Vectors
  • — Uniform Motion

 Scalars and Vectors

  • — Scalar or Dot Product of Two Vectors
  • — Significant Figures
  • — Physical Quantities
  • — Subtraction of Vectors
  • — Rotation of Vectors
  • — Direction Cosines of a Vector
  • — Division of Vectors by Scalars
  • — Rest
  • — Systems of Units
  • — Rounding off
  • — Homogeneity Principle
  • — Error
  • — Combinations of Errors
  • — Tensors
  • — Other Types of Vectors

Motion in a Straight Line

  • — Motion
  • — Displacement
  • — Distance
  • — Velocity
  • — Acceleration
  • — Different Graphs of Motion
  • — Motion Under Gravity

Motion in a Plane (Projectile and Circular Motion)

  • — Projectile Motion and Circular Motion
  • — Centripetal Acceleration
  • — Centripetal Force
  • — Centrifugal Force
  • — Examples For obtaining Centripetal
  • — Force in Daily life
  • — Motion of a particle in a Vertical Circle
  • — Equations of Uniformly Accelerated Motion

 Laws of Motion

  • — Inertia
  • — Weight
  • — Newton’s Laws of Motion
  • — Friction
  • — Motion on a Rough Inclined Plane
  • — Impulse
  • — Linear Momentum
  • — Rocket
  • — Motion of Bodies in Contact
  • — Pulley Mass System
  • — Equilibrium of a Particle
  • — Force
  • — Rigid Body
  • — Orbital Velocity
  • — Elastic Modul

Hydrostatics

  • — Newton’s Law of Gravitation
  • — Elasticity
  • — Relation between Gravitational Field and Potential
  • — Escape Velocity
  • — Stress and Strain Curve
  • — Rotational Motion
  • — Satellite
  • — Hooke’s Law
  • — Thrust
  • — Torque
  • — Acceleration Due to Gravity
  • — Linear Momentum of a System of Particles
  • — Gravitational Field
  • — Angular Momentum
  • — Types of Modulus of Elasticity
  • — Kepler’s Laws of Planetary Motion

Gravitation

  • — The Radius of Gyration
  • — Stress
  • — Fluids
  • — Poisson’s Ratio
  • — Moment of Inertia of Homegeneous Rigid Bodies

Elasticity

  • — Factors Affecting cceleration Due to Gravity
  • — Gravitational Potential Energy
  • — Weightlessness
  • — Moment of Inertia
  • — Centre of Gravity
  • — Angular Impulse
  • — Rotational Kinetic Energy
  • — Strain
  • — Perpendicular Axes Theorem
  • — Central Forces
  • — Parallel Axes Theorem
  • — Translational Motion
  • — Deforming Force
  • — Cantilever
  • — Pressure
  • — Pressure Exerted by the Liquid
  • — Buoyancy
  • — Laws of Floatation
  • —Density of a Mixture of Substances
  • — Pascal’s Law
  • — Archimedes’ Principle
  • — Density and Relative Density
  • — Principle of Conservation of Energy

Work, Energy and Power

  • — Other Forms of Energy
  • — Collisions
  • — Power
  • — One Dimensional or Head-on Collision
  • — Energy
  • — Two Dimensional or Oblique Collisions

Rotational Motion

  • — Work
  • — Centre of Mass
  • — Flow of liquid
  • — Reynold’s Number
  • — Equation of Continuity

Hydrodynamics

  • — Bernoulli’s Theorem
  • — Venturimeter
  • — Torricelli’s Theorem
  • — Viscosity
  • — Poiseuille’s Formula
  • — Stoke’s Law and Terminal Velocity
  • — Critical Velocity

Surface Tension

  • — Energy of a Liquid
  • — Rate of Flow of Liquid
  • — Adhesive Force
  • — Thermodynamical Terms
  • — Kinetic Energy of an Ideal Gas
  • — Latent Heat
  • — Thermometric Property
  • — Temperature and its Measurement
  • — Factors Affecting Surface Tension
  • — Angle of Contact
  • — Thermometeres
  • — Calorimetry
  • — Gas Laws

Kinetic Theory of Gases

  • — Molecular Range
  • — Thermal (Heat) Capacity
  • — Zurin’s Law
  • — Capillarity
  • — Mean Free Path
  • — Thermal Equilibrium

Thermometry and Calorimetry

  • — Heat
  • — Critical Temperature, Pressure and Volume
  • — Brownian Motion
  • — Assumption of Kinetic Theory of Gases
  • — Ideal or Perfect Gas Equation
  • — First Law of Thermodynamics
  • — Specific Heat
  • — Entropy
  • — Heat Engine
  • — Thermal Expansion
  • — Triple Point of Water
  • — Second Law of Thermodynamics
  • — Water Equivalent
  • — Surface Energy
  • — Degree of Freedom
  • — Real Gases
  • — Joule’s Law
  • — Zeroth Law of Thermodynamics
  • — Thermodynamic Processes
  • — Carnot’s Cycle
  • — Internal Energy (U)

Transmission of Heat

  • — Ingen Hausz Experiment
  • — Reflectance or Reflecting Power
  • — Absorptance or Absorbing Power
  • — Work done
  • — Heat Transmission
  • — Refrigerator
  • — Transmittance or Transmitting Power
  • — Stefan’s Law
  • — Emissive Power
  • — Emissivity
  • — Perfectly Black Body
  • — Kirchhoff’s Law
  • — Wien’s Displacement Law
  • — Solar Constant

Oscillations

  • — Periodic Motion
  • — Oscillatory Motion
  • — Harmonic Oscillation
  • — Simple Harmonic Motion
  • — Some Important Formulae of SHM
  • — Graphical Representation of SHM
  • — Force in SHM
  • — Doppler’s Effect
  • — Superposition of Waves
  • — Equipotential Surface
  • — Electric Dipole

Current Electricity

  • — Second’s Pendulum
  • — Compound Pendulum
  • — Ohm’s Law
  • — Resistivity
  • — Superconductors
  • — Echo
  • — Vibrations in a stretched string
  • — Torisonal Pendulum
  • — Spring Pendulum
  • — Stationary or standing Waves
  • — Melde’s Experiment

Electrostatics

  • — Conical Pendulum
  • — Energy in SHM
  • — Lissajou’s Figures

Waves and Sound

  • — Waves
  • — Sound Waves
  • — Simple Pendulum
  • — Velocity of Longitudinal (Sound) Wave
  • — Beats
  • — Speed of transverse Motion
  • — Electric Flux
  • — Oscillations of liquid in a — Van-de-Graaff Generator U-tube
  • — Interference
  • — Organ Pipes
  • — Resonance Tube
  • — Work Done
  • — Charge
  • — Shock Waves
  • — Simple Harmonic Wave
  • — Coulomb’s Law in Vector Form
  • — Electric Field
  • — Electric Potential
  • — Gauss’s Theorem
  • — Dipole in Non-Uniform Electric Field
  • — Electric Current
  • — Current Density
  • — Mobility
  • — Electrical Resistance
  • — Electrical Conductivity
  • — Resistors
  • — Faraday’s Laws of Electromagnetic Induction
  • — Grouping of Coils
  • — Earth’s Magnetism
  • — Lenz’s Law
  • — Magnetic Map
  • — Hysteresis
  • — Vibration Magnetometer

Electromagnetic Induction

  • — Gauss’s Law in Magnetism
  • — Deflection Magnetometer
  • — Fleming’s Right Hand Rule
  • — Self-Induction
  • — Tangent Galvanometer
  • — Magnetic Flux
  • — Magnetic Dipole
  • — Tangent Law
  • — Eddy Currents
  • — Neutral Points
  • — Coercivity
  • — Coulomb’s Law
  • — Mutual Induction
  • — Electric Cell
  • — Kirchhoff’s Laws
  • — Wheatstone Bridge
  • — Meter Bridge
  • — Potentiometer
  • — Combination of Resistors

 Heating and Chemical Effects of Current

  • — Electric Energy
  • — Electric Power
  • — Electric Fuse
  • — Heating Effects of Current
  • — Short Circuiting
  • — Overloading
  • — Rating of Electrical Appliances
  • — Fusing of Bulb When it is Switched On
  • — Chemical Effect of Electric Current
  • — Thermoelectric Power
  • — Toroid
  • — Moving Coil Galvanometer
  • — Peltier Effect
  • — Magnetic Dipole
  • — Thomson’s Effect
  • — Right-Hand Thumb Rule
  • — Motion of a Charged Particle in a Uniform Magnetic Field
  • — Thermoelectric Effect
  • — Ammeter
  • — Natural Magnet
  • — Artificial Magnet

Magnetic Effect of Current

  • — Magnetic Field Due to a Straight Current Carrying Conductor
  • — Oersted’s Experiment
  • — Faraday’s Laws Electrolysis
  • — Solenoid
  • — Fleming’s Left Hand Rule
  • — Voltmeter
  • — Thermopile

Magnetism and Matter

  • — Cyclotron
  • — Biot Savart’s Law
  • —Alternating Current

Electromagnetic Waves

  • — Electromagnetic Spectrum
  • — Displacement Current
  • — Reactance
  • — Mirror
  • — Areal and Axial Magnification
  • — Refractive Index
  • — Power in an AC Circuit
  • — Alternating Current
  • — Resonance in an AC Circuit
  • — Wattless Current
  • — Choke Coil
  • — AC Generator or Dynamo
  • — DC Motor
  • — Transformer
  • — Transformation Ratio
  • — Impedance
  • — Electromagnetic Waves

Ray Optics

  • — Light
  • — Important Terms
  • — Reflection of Light
  • — Types of Reflection
  • — Linear Magnification
  • — Refraction of Light
  • — Cauchy’s Formula
  • — Critical Angle
  • — Optical Fibres
  • — Prism
  • — Dispersion of Light
  • — Angular Dispersion
  • — Scattering of Light
  • — Human Eye
  • — Total Internal Reflection (TIR)
  • — Cutting of a Lens
  • — Simple Microscope
  • — Astronomical Telescope

Wave Optics

  • — Newton’s Corpuscular Theory of light
  • — Aberration of Lenses
  • — Lens
  • — Reflecting Telescopes

Electrons, Photons and X-rays

  • — Fresnel’s Biprism
  • — Polaroid
  • — Photoelectric Effect
  • — Davisson-Germer Experiment
  • — Doppler’s Effect in Light
  • — X-rays Spectrum
  • — Cathode Rays
  • — Young’s Double Slit Experiment (YDSE)
  • — Fringe Width
  • — Interference of Light
  • — Superposition of Waves
  • — Polarisation
  • — Matter Waves on de-Broglie Waves
  • — Huygens’ Wave Theory of light
  • — Compton Effect
  • — Diffraction
  • — Huygens’ Principle
  • — X-rays
  • — Positive Rays
  • — Dalton’s Atomic Theory
  • — Nuclear Fusion
  • — Hydrogen Spectrum Series
  • — Nuclear Binding Energy
  • — Mass Defect
  • — Bohr’s Atomic Model
  • — Radioactive Decay Law

Atomic & Nuclear Physics

  • — Thomson’s Atomic Model
  • — Rutherford’s Atomic Model
  • — Nucleus
  • — Isotones
  • — Isomers
  • — Nuclear Force
  • — Wave Model
  • — Isotopes
  • — Isobars
  • — Nuclear Reaction
  • — Nuclear Fission
  • — Radioactivity
  • — Energy Bands of Solids
  • — Solid

Electronics

  • — Zener Diode
  • — p-n Junction Diode as Rectifier
  • — Logic Gate
  • — Truth Table
  • — p-n Junction and Diode
  • — Basic Logic Gates
  • — Combination of Gates
  • — Communication
  • — Communication System
  • — Modulation
  • — Demodulation
  • — Antenna
  • — Earth’s Atmosphere
  • — Propagation of Radio Waves
  • — Light Emitting Diodes (LED)

Communication

  • — Microwave Propagation
  • — Transistor
  • — Satellite Communication
  • — Types of Semiconductor
  • — Demerits of Satellite Communication
  • — Black Hole
  • — Mobile Telephony
  • — Death of a Star
  • — Life Cycle of a Star
  • — Stars
  • — The Big-Bang Theory
  • — Planets
  • — Sun

Universe

  • — Solar System
  • — Merits of Satellite Communication
  • — Optical Communication
  • — Global Positioning System (GPS)
  • — Galaxy
  • — Internet Telephony
  • — Constellation
  • — Inner Structure of the Earth

Importance of Arihant Handbook for Physics

Arihant Handbook for Physics is very useful for students of Class 11th & 12th. This book is also very important for NEET and JEE exam preparation.

Arihant Handbook for Physics is also important for competitive exams which are conducted by govt for various posts of Civil Engineers and Doctors.

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