TS and AP EAMCET Complete Notes with Previous Year Questions
Course Curriculum
16 sections•161 lessons•0h 16m total length
- 1.1 Introduction6m
- 1.2 Types of Physical quantities and units10m
- 1.3 Prefixes
- 1.4 Practical Units
- 1.5.1 Dimensions of Quantities (Mechanics)
- 1.5.2 Dimensions of Quantities
- 1.5.3 Dimensions of Quantities (E & M)
- 1.5 Dimensions of physical quantities
- 1.6 Quantities having same dimensions
- 1.7 Applications of dimensional analysis
- 1.8 Errors and significant numbers
- 1.9 Significant figures
- 1.10 Rounding off numbers
- 1.11 Significant figures in calculation
- 1.12 Least count
- 1.13 Error in calculation
- 1.14 Types of errors
- 1.15 Previous Years Questions
- 1.16 Previous Years Questions
- 1.15 Previous Years Questions
- 1.16 Previous Years Questions
- 2.1 Introduction
- 2.2 Types of Vectors
- 2.3 Vector addition and subtraction
- 2.3.1 Triangle law of vector addition
- 2.3.2 Parallelogram law of vector addition
- 2.3.3 Subtraction of vector (Graphical Method)
- 2.4 Important problems
- 2.4.1 Important problems
- 2.5 Resolution of vectors
- 2.6 Vector multiplication of two vectors
- 2.6.1 Scalar product or dot productPreview
- 2.6.2 Some important points on dot product
- 2.6.3 Dot product of self vectors
- 2.7 Cross product of vector product
- 2.8 Properties of vector product
- 2.9 Geometric interpretation of cross product
- 2.10 Important problems
- 2.11 Problem solving technique
- 2.11 Previous Years Questions
- 2.12 Previous Years Questions
- 2.11 Previous Years Questions (Part-1)
- 2.12 Previous Years Questions (Part-2)
- 2.13 Previous Years Questions (Part-3)
- 3.1 Introduction
- 3.2 Objects in motion
- 3.3 Distance and Displacement
- 3.4 Speed, types of speeds
- 3.5 Velocity, Types of velocities
- 3.6 Acceleration, Types of AccelerationPreview
- 3.7 Graphical view of motion
- 3.7.1 Various position-time graphs and their interpretation
- 3.8 Velocity time graph
- 3.8.1 Various velocity-time graph
- 3.9 Equations of motion
- 3.9.1 Important information for uniformly
- 3.10 s-t graphs for some standard results
- 3.11 Relative velocity
- 3.12 River boat problems
- 3.12.1 Crossing river in shortest path
- 3.12.2 Crossing river in shortest time
- 3.12.3 Graphical representation of relative velocity
- 3.13 Motion under gravity (Free fall)
- 3.14 Body projected vertically upwards
- 3.15 Previous Years Questions
- 3.16 Previous Years Questions
- 3.15 Previous Years Questions
- 3.16 Previous Years Questions
- 3.17 Previous Years Questions
- 4.1 Introduction
- 4.2 Motion with uniform velocity in a plane
- 4.3 Equation of motion of object
- 4.4 Equation of path
- 4.5 Motion with uniform acceleration in a plane
- 4.6 Expression for Displacement in uniformly
- 4.7 Projectile motion (definition)
- 4.7.1 Principles of physical independence of motion
- 4.7.2 Different types of projectile motion
- 4.7.3 Oblique projectile motion
- 4.7.4 Time of flight, Horizontal range
- 4.7.5 Change in velocity
- 4.7.6 Relation between range and maximum height
- 4.8 Horizontal projectile motion
- 4.8.1 Horizontal projectile motion in steps
- 4.9 Projectile motion on an inclined plane
- 4.10 Circular motion (Introduction)
- 4.10.1 Important terminology for circular motion
- 4.10.2 Angular Displacement
- 4.10.3 Angular velocity
- 4.10.4 Change in velocity
- 4.10.5 Time period
- 4.10.6 Frequency
- 4.10.7 Angular acceleration
- 4.10.8 Centripetal forcePreview
- 4.10.9 Workdone by centripetal force
- 4.10.10 Skidding of vehicle on a level road
- 4.10.11 Skidding of object on a rotating platform
- 4.10.12 Bending of cyclist
- 4.10.13 Banking of a road (without friction)
- 4.10.14 Banking of a road (with friction)
- 4.10.15 Over turning of a vehicle
- 4.10.16 Non circular motion
- 4.10.17 Equations of uniform cicular motion
- 4.11 Previous years questions
- 4.12 Previous years questions
- 4.13 Previous years questions
- 4.11 Previous years questions (Part-1)
- 4.12 Previous years questions (Part-2)
- 4.13 Previous years questions (Part-3)
- 4.14 Previous years questions (Part-4)
- 5.1 Introduction
- 5.2 Newton's first law of motionPreview
- 5.3 Types of inertia
- 5.4 Newton's second law of motion
- 5.5 Examples for direction of force
- 5.6 Concurrent forces
- 5.7 Newton's third law of motion
- 5.8 Frame of reference
- 5.9 Impulse
- 5.10 Law of conservation of linear momentum
- 5.11 Examples for law of conservation of linear
- 5.12 Change in momentum for projectile motion
- 5.13 Types of forces
- 5.14 Applications of change in momentum
- 5.15 Free body diagram
- 5.16 Apparent weight of a body in a lift
- 5.17 Acceleration on smooth surfaces
- 5.18 Motion of blocks in contact
- 5.19 Motion of blocks connected by mass less strings
- 5.20 Motion of connected blocks over a pulley-1
- 5.21 Motion of connected blocks over a pulley-2
- 5.22 Motion of connected blocks over a pulley-3
- 5.23 Previous years questions
- 5.24 Previous years questions
- 5.25 Previous years questions
- 5.23 Previous years questions
- 5.24 Previous years questions
- 6.1 Introduction
- 6.2 Limiting friction
- 6.3 Laws of limiting friction
- 6.4 Kinetic (or) dynamic frictionPreview
- 6.5 Types of kinetic friction
- 6.6 Causes of rolling friction
- 6.7 Graph for applied force and frictional force
- 6.8 Advantages and disadvantages of friction
- 6.9 Angle of friction
- 6.10 Angle of repose
- 6.11 Minimum force for different conditions
- 6.12 Minimum pushing force required
- 6.13 Minimum force required to move the body on an inclined plane
- 6.14 Minimum force required in downward direction
- 6.15 Minumum force required to avoid sliding down
- 6.16 Minimum force for motion and its direction
- 6.17 Acceleration of a block against friction
- 6.18 Work done against friction
- 6.19 Motion of two blocks one over other-1
- 6.20 Motion of two blocks one over other-2
- 6.21 Motion of an insect in the rough bowl
- 6.22 Minimum mass hung from the string to just start the motion
- 6.23 Maximum length of hung chain
- 6.24 Coefficient of friction between body and wedge
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Comprehensive notes and solved PYQs for Telangana and Andhra Pradesh EAMCET.
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