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Question 1 of 15
1. Question
1 Marks(s)Two trains each 50 m long are travelling in opposite direction with velocity $$10 \mathrm{~m} / \mathrm{s}$$ and $$15 \mathrm{~m} / \mathrm{s}$$. The time of crossing is
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Question 2 of 15
2. Question
1 Marks(s)A student is standing at a distance of 50 metres from the bus. As soon as the bus begins its motion with an acceleration of $$1 \mathrm{~ms}^{-2}$$, the student starts running towards the bus with a uniform velocity $$u$$. Assuming the motion to be along a straight road, the minimum value of $$u$$, so that the student is able to catch the bus is
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Question 3 of 15
3. Question
1 Marks(s)A man drops a ball downside from the roof of a tower of height 400 m . At the same time another ball is thrown upside with a velocity $$50 \mathrm{~m} / \mathrm{s}$$. From the surface of the tower, then they will meet at which height from the surface of the tower
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Question 4 of 15
4. Question
1 Marks(s)A bus begins to move with an acceleration of $$1 \mathrm{~ms}^{-2}$$. A man who is 48 m behind the bus starts running at $$10 \mathrm{~ms}^{-1}$$ to catch the bus. The man will be able to catch the bus after
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Question 5 of 15
5. Question
1 Marks(s)A 120 m long train is moving in a direction with speed $$20 \mathrm{~m} / \mathrm{s}$$. A train $$B$$ moving with $$30 \mathrm{~m} / \mathrm{s}$$ in the opposite direction and 130 m long crosses the first train in a time
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Question 6 of 15
6. Question
1 Marks(s)A ball is dropped from top of a tower of 100 m height. Simultaneously another ball was thrown upward from bottom of the tower with a speed of $$50 \mathrm{~m} / \mathrm{s}\left(g=10 \mathrm{~m} / \mathrm{s}^{2}\right)$$. They will cross each other after
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Question 7 of 15
7. Question
1 Marks(s)A man is 45 m behind the bus when the bus start accelerating from rest with acceleration $$2.5 \mathrm{~m} / \mathrm{s}^{2}$$. With what minimum velocity should the man start running to catch the bus
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Question 8 of 15
8. Question
1 Marks(s)Two cars $$A$$ and $$B$$ are moving with same speed of $$45 \mathrm{~km} / \mathrm{hr}$$ along same direction. If a third car $$C$$ coming from the opposite direction with a speed of $$36 \mathrm{~km} / \mathrm{hr}$$ meets two cars in an interval of 5 minutes, the distance of separation of two cars $$A$$ and $$B$$ should be (in km )
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Question 9 of 15
9. Question
1 Marks(s)A ball $$A$$ is thrown up vertically with speed $$u$$ and at the same instant another ball $$B$$ is released from a height $$h$$. At time $$t$$, the speed of $$A$$ relative to $$B$$ is
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Question 10 of 15
10. Question
1 Marks(s)Two cars are moving in the same direction with a speed of $$30 \mathrm{kmh}^{-1}$$. They are separated from each other by 5 km . Third car moving in the opposite direction meets the two cars after an interval of 4 min . What is the speed of the third car?
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Question 11 of 15
11. Question
1 Marks(s)The distance between two particles moving towards each other is decreasing at the rate of $$6 \mathrm{~m} / \mathrm{sec}$$. If these particles travel with same speeds and in the same direction, then the separation increase at the rate of $$4 \mathrm{~m} / \mathrm{sec}$$. The particles have speeds as
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Question 12 of 15
12. Question
1 Marks(s)A bus start from rest with an acceleration of $$1 \mathrm{~ms}^{-2}$$. A man who is 48 m behind the bus starts with a uniform velocity of $$10 \mathrm{~ms}^{-1}$$. The minimum time after which the man will catch the bus
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Question 13 of 15
13. Question
1 Marks(s)About which axis in the following figure the moment of inertia of the rectangular lamina is maximum?
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Question 14 of 15
14. Question
1 Marks(s)The moment of inertia of a thin rod of mass $$M$$ and length $$L$$, about an axis perpendicular to the rod at a distance $$\frac{L}{4}$$ from one end is
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Question 15 of 15
15. Question
1 Marks(s)According to the theorem of parallel axes $$I=I_{c m}+M x^{2}$$, the graph between $$I$$ and $$x$$ will be
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