Physics · JEE

Uniformly accelerated motion, velocity-time, position-time graph, relations for uniformly accelerated motion, relative velocity Mock Test for JEE

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A Uniformly accelerated motion, velocity-time, position-time graph, relations for uniformly accelerated motion, relative velocity JEE mock test on Goodmarks lets you attempt 6+ timed MCQs with instant feedback. Use it to benchmark speed, accuracy, and readiness for JEE Main Physics.

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Q1PhysicsUnit 2: Kinematics
A ball thrown in the air reaches a height of 10m10 \mathrm{m} and drops down to the ground. Find the time taken by the ball to complete this entire journey.
Q2PhysicsUnit 2: Kinematics
The distance of a particle as a function of time is shown below. The graph indicates that
Q3PhysicsUnit 2: Kinematics
Assertion Two balls of different masses are thrown vertically upward with same speed. They will pass through their point of projection in the downward direction with the same speed. Reason The maximum height and downward velocity attained at the point of projection are independent of the mass of the ball.
Q4PhysicsUnit 2: Kinematics
In the equation of motion, S=ut+\boldsymbol{S}=\boldsymbol{u} \boldsymbol{t}+ 1/2at2,1 / 2 a t^{2}, S stands for
Q5PhysicsUnit 2: Kinematics
Displacement of a body is given by x=x= 5+3t+2t2.\mathbf{5}+\mathbf{3} t+\mathbf{2} t^{2} . The value instantaneous acceleration is:
Q6PhysicsUnit 2: Kinematics
The acceleration of a particle which moves along the positive x-axis varies with its position as shown. If the velocity of the particle is 0.8m/s0.8 m / s at x=0,x=0, the velocity of the particle at x=x= 1.4 is ( in m/s)(\text { in } m / s)

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How long should a Uniformly accelerated motion, velocity-time, position-time graph, relations for uniformly accelerated motion, relative velocity mock test take?

For a topic-level test, aim for 20–30 minutes. For a full subject mock, allow 60–90 minutes to mirror JEE timing.

What is a good score on a Uniformly accelerated motion, velocity-time, position-time graph, relations for uniformly accelerated motion, relative velocity mock test?

Aim for 70%+ accuracy initially, then push toward 85%+ as your exam date approaches. Review explanations for every wrong answer.

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