11th class Physics Sindh Board all Chapter tutorials
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1.1: Definition of Physics
1.2: Islam and Science
1.3: Contribution to Physical Sciences by the Islamic World
Contribution to Science By Muslim Scientists
1.4: Physics and Society
1.5: Measurement and the System of Units
International Systems of Base Units
1.6: Measurement of Time
1.7: Basic SI Units
International Systems of Base Units
1.8: Dimension
Dimensions of Physical Quantities
More on Dimensions of Physical Quantities
Problem on Dimensions of Physical Quantities
1.9: Significant Figures
2.1: Scalars and Vectors
2.2: Addition of Vectors
Problem 1 on Vector Addition and Subtraction
Problem 2 on Vector Addition and Subtraction
2.3: Multiplication of a Vector by a Number
Multiplication of Vector by a scalar
2.4: Division of a Vector by a Number (Non Zero)
Division of a Vector by a Number (Non Zero)
2.5: Unit Vector and Null Vector
Problem on Unit and Null vector
2.6: Free Vector
2.7: Position Vector
2.8: Properties of Vector Addition
Commutative Property of Addition of Vectors
Associative Law of Vector Addition
2.9: Resolution and Composition by Rectangular Components
Rectangular Components of a Vector
2.10: Addition of Vectors by Rectangular Components
Vector Addition by Rectangular Components
Steps of vector Addition by Rectangular Components
Problem2 on Vector Addition by Rectangular Components
More on Problem2 on Vector Addition by Rectangular Components
2.11: The Dot Product
Problem1 on Scalar or Dot product
Problem2 on Scalar or Dot product
2.12: Commutative Law and Distributive Law for Dot Product
Characteristics of Scalar Product
2.13: The Cross Product
2.14: Some Physical Examples of Vector Product
Characteristics of Cross Product
2.15: Properties of the Vector Product
3.1: Displacement
Difference between Distance and Displacement
3.2: Velocity
Problem on Introduction to Velocity
3.3: Velocity from Distance Time Graph
3.4: Acceleration
Average Acceleration and Retardation
Problem on Introduction to Acceleration
3.5: Acceleration from Velocity – Time Graph
3.6: Equations of Uniformly Accelerated Rectilinear Motion
Review of Equations of Uniformly Accelerated Motion
Problem on Review of Equations of Uniformly Accelerated Motion
3.7: Motion Under Gravity
Motion of Freely Falling Bodies
3.8: Laws of Motion
Problem on Second Law of Newton
3.9: Motion of Bodies Connected by a String
Tension and Acceleration for Vertical Motion of Two Bodies
Problem on Tension and Acceleration for Vertical Motion of Two Bodies
Tension and Acceleration for Horizontal and Vertical Motion
Problem on Tension and Acceleration for Horizontal and Vertical Motion
3.10: Momentum of a Body
Momentum and Newton’s Second Law of motion
3.11: Law of Conservation of Momentum
Law of Conservation of Momentum
Problem1 on Law of Conservation of Momentum
Problem2 on Law of Conservation of Momentum
3.12: Elastic Collision in One Dimension
Elastic and Inelastic Collisions
Elastic Collision in one Dimension
More on Elastic Collision in one Dimension
Some Cases of Elastic Collision
Problem on Elastic Collision in one Dimension
3.13: Friction
Problem on Introduction to Friction
3.14: Coefficient of Friction
3.15: The Inclined Plane
4.1: Projectile Motion
4.2: Maximum Height of the Projectile
4.3: Range of the Projectile
More on Features of Projectile
problem1 on Features of Projectile
problem2 on Features of Projectile
4.4: Projectile Trajectory
4.5: Applications
Application to Ballistic Missiles
More on Applications of Projectile Motion
4.6: Uniform Circular Motion
4.7: Angular Displacement
4.8: Angular Velocity
4.9: Angular Acceleration
4.10: Relation Between Angular and Linear Quantities
Relation Between Angular and Linear Velocities
4.11: Tangential Velocity
Relation Between Angular and Linear Velocities
4.12: The Period
Problem on Equation of Angular Motion
4.13: Centripetal Acceleration and Centripetal Force
4.14: Some Important Relations of Linear Motion and Angular Motion
Some Important Relations of Linear Motion and Angular Motion
5.1: Torque
Introduction to Torque or Moment of a Force
5.2: Centre of Mass
5.3: Equilibrium and Conditions of Equilibrium
5.4: First Condition of Equilibrium
5.5: Second Condition of Equilibrium
5.6: Location of Axis
5.7: Angular Momentum
5.8: Conservation of Angular Momentum of a Particle
6.1: Newton’s Law of Universal Gravitation
Newton’s Law of Universal Gravitation
6.2: Mass and Average Density of Earth
More on Newton’s Law of Universal Gravitation
Mass and Average Density of Earth
6.3: Variation of g with Altitude and Depth
Variation of g with Altitude and Depth
More on Variation of g with Altitude and Depth
6.4: Weight
Difference Between Mass and Weight
6.5: Weightlessness in Satellites
weightlessness in Satellites and Gravity Free system
6.6: Artificial Gravity
7.1: Work
Problem on Work Done by a Constant Force
7.2: Work Done Against Gravitational Force
Work done by Gravitational Field
7.3: Power
Work Done By a Variable Forces
Problem on Introduction to Work
7.4: Energy
Problem on Law of Conservation of Energy
7.5: Potential Energy
7.6: Absolute P.E
More on Absolute Potential energy
7.7: Interconversion of P.E and K.E (Freely Falling Body)
Interconversion of Potential Energy and Kinetic Energy
problem on Interconversion of Potential Energy and Kinetic Energy
7.8: Law of Conservation of Energy
Advance law of Conservation of Energy
Problem on Law of Conservation of Energy
7.9: Various Sources of Energy
Examples of Conservation of Energy from Daily life
8.1: Vibratory Motion
8.2: Motion Under Elastic Restoring Force (Hooke’s Law)
More on Simple Harmonic Motion
8.3: Characteristics of
SHM and Uniform Circular Motion
Problem on SHM and Uniform Circular Motion
8.4: Energy of Particle Executing SHM
More on Energy conservation in SHM
Problem on Energy conservation in SHM
8.5: Examples of SHM
8.6: Generation of a Wave Pulse
8.7: Travelling Waves
8.8: Transverse Wave
8.9: Analytical Treatment of Travelling waves
Analytical Treatment of Travelling waves
8.10: Energy in Waves
8.11: Standing Waves
8.12: Fundamental Frequency and Harmonics
Stationary waves in a Stretched String
More on Stationary waves in a Stretched String
Problem on Stationary Waves in Stretched String
8.13: Sonometer
8.14: Longitudinal Waves
8.15: Speed of Sound Waves
8.16: Laplace’s Correction
8.17: Musical Sound and Noise
Characteristics of a Musical Sound
Sound Intensity and Sound Level
More on Sound Intensity and Sound Level
8.18: Superposition of Sound Waves
8.19: Beats
8.20: Acoustics
8.21: Doppler Effect
Doppler Effect: When Source at Rest, Observer is Moving
Doppler Effect: When Observer at Rest, Source is Moving
Doppler Effect: When both Source and Observer ae Moving
Applications of Doppler Effect
9.1: Dual Nature of Light
9.2: Wave Fronts, Huygen’s Principle
9.3: Interference of Light
9.4: Young’s DoubleSlit Interference
Young’s Double slit Experiment
More on Young’s Double slit Experiment
More on Young’s Double slit Experiment
More on Young’s Double slit Experiment
problem on Young’s Double slit Experiment
9.5: Interference in Thin Films
9.6: Newton’s Rings
9.7: The Michelson Interferometer
9.8: Diffraction
Diffraction due to a Narrow slit
9.9: Diffraction Grating
Problem on Diffraction Grating
More on Problem on Diffraction Grating
9.10: Diffraction of Xrays Through Crystals
Diffraction of XRays by Crystals
More on Diffraction of XRays by Crystals
Problem on Diffraction of XRays by Crystals
9.11: Polarization of Light Waves
10.1: Lenses
10.2: Image Formation
Image Formation by Concave Lens
10.3: The Thin Lens Formula
10.4: Combination of Thin Lenses
10.5: Power of Lenses
10.6: Lens Aberration
10.7: Linear Magnification
Linear Magnification of Lenses
10.8: Magnifying Glass
10.9: Compound Microscope
Problem on Compound Microscope
More on Problem on Compound Microscope
10.10: Telescope
Problem on Astronomical Telescope
10.11: Galilean Telescope
10.12: Terrestrial Telescope
10.13: Spectrometer
10.14: The Eye
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