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[" 8.The blocks shown in figure ( "9-" E...

[" 8.The blocks shown in figure ( "9-" El9) have equal masses."],[" The surface of "A" is smooth but that of "B" has a friction "],[" coefficient of "0.10" with the floor.Block "A" is moving at a "],[" speed of "10m/s" towards "B" which is kept at rest.Find "],[" the distance.travelled by "B" if (a) the collision is perfectly "],[" elastic and (b) the collision is perfectly inelastic.Take "g],[=10m/s^(2)" ."],[qquad [qquad A_(1)],[A_(2)]|^(10m/s)],[]

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The blocks shown in figure have equal masses. The surface of A is smooth but that of B has a friction coefficient of 0.10 with the floor. Block A is moving at a speed of 10 m/s towards B which is kept at rest. Find the distance travelled by B if a. the collision is perfectly elastic and b. the collision is perfectly inelastic. Take g=10 m/s^2 .

The blocks shown in figure have equal masses. The surface of A is smooth but that of B has a friction coefficient of 0.10 with the floor. Block A is moving at a speed of 10 m/s towards B which is kept at rest. Find the distance travelled by B if a. the collision is perfectly elastic and b. the collision is perfectly inelastic. Take g=10 m/s^2 .

The blocks shown in figure have equal masses. The surface of A is smooth but that of B has a friction coefficient of 0.10 with the floor. Block A is moving at a speed of 10 m/s towards B which is kept at rest. Find the distance travelled by B if a. the collision is perfectly elastic and b. the collision is perfectly inelastic. Take g=10 m/s^2 .

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