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A thin block of soft wood with a mass of 0.084 kg rests on a horizontal frictionless surface. A bullet with a mass of 4.67 g is fired with a speed of 603 m/s at a block of wood and passes completely through it. The speed of the block is 19 m/s immediately after the bullet exits the block.

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13-13. The bullet of mass m is given a velocity due to gas pressure caused by the burning of powder within the chamber of the gun. Determine the constant horizontal force developed in the coupling C, and the frictional force developed between the tires of the truck and the road during this time.The total...

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Answer:Option BExplanation:For a system of block on inclined ramp shown in the attached image. From the attached image, the Normal force N, weight mg and fricti… The sum of vertical forces should be zero just as sum of vertical forces should be zero when the system is in equilibrium condition.

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A 2.0-kg block sliding on a rough horizontal surface is attached to one end of a horizontal spring (k = 250 N/m) which has its other end fixed. The block passes through the equilibrium position with a speed of 2.6 m/s and first comes to rest at a displacement of 0.20 m from equilibrium.

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Condition for the block to move along the surface. It is inclined to the vertical at an angle $\theta$. The coefficient of friction is $u$? The block can be pushed along the surface only if_.

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A block of mass m=50kg moves on a rough horizontal surface with a coefficient of kinetic friction mu=0.5. The traveled distance is 20m. A bullet penetrates a wooden block and loses its velocity by a half. What is the ratio between the initial kinetic energy of the bullet and the kinetic energy when...

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At an instant when the rod makes an angle of 60 degrees with the horizontal plane, the velocity of point A on the rod is 1m/s. 12. S K Mondal's Engineering Mechanics GATE & IAS 32. A mass of 35 kg is suspended from a weightless bar AC, which is supported by a cable CB and a pin at A as shown...

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A block of mass M = 5 kg is resting on a rough horizontal surface for which the coefficient of friction is 0.2. When a force F = 40 N is applied, the acceleration of the block will be (g = 10 m/s2) : (A) 5.73 m/sec 2(B) 8.0 m/sec (C) 3.17 m/sec (D) 10.0 m/sec2 14. A body of mass M is kept on a rough horizontal surface (friction coefficient = ).

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Nov 23, 2013 · A bullet of mass m is moving horizontally with speed vo when it hits a block of mass 100m that is at rest on a horizontal frictionless table, as shown above. The surface of the table is a height h above the floor. After the impact, the bullet and the...

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When the blocks are released, the 6 kg block falls through a vertical distance of 1,6 m. 5.2 Draw a labelled free-body diagram for the 6 kg block. (2) 5.3 Calculate the work done by the gravitational force on the 6 kg block. (3) The coefficient of kinetic friction between the 4 kg block and the horizontal surface is 0,4.

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A bullet of mass m is fired at speed v0 into a wooden block of mass M. The bullet instantaneously comes to rest in the block. The block with the embedded bullet slides along a horizontal surface with a coefficient of kinetic friction μ.

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Even seemingly smooth surfaces are rough at the microscopic level. How much horizontal force will you have to apply to get the glass to move? Example: A 10 kg wood block is at rest on top of another 10 kg wood block which is resting on a concrete slab.

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Blocks of mass m and 2m are connected by a light string and placed on a frictionless inclined plane that makes an angle q with the horizontal, as shown in Figure 1 above. A toy rocket of mass 0.50 kg starts from rest on the ground and is launched upward, experiencing a vertical net force.

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Two blocks of masses m and 3m are placed on a frictionless, horizontal surface. A light spring is attached to the more massive block, and the blocks are pushed together with the spring between them as shown in the gure below. A cord initially holding the blocks together is burned; after that happens, the block of mass 3m moves to the right with ... A block with mass m is pulled along a horizontal surface for a distance x by a constant force F at angle theta with respect to the horizontal.

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Block A of mass 2.0 kg and block B of mass 8.0 kg are connected as shown above by a spring of spring constant 80 N/m and negligible mass. The system is being pulled to the right across a horizontal frictionless surface by a horizontal force of 4.0 N, as shown, with both blocks experiencing equal constant acceleration.

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First Law: An object at rest stays at rest unless acted on by an external force. Example: The figure shows a block S (the sliding block) with mass M = 3.3 kg. The block is free to move along a horizontal frictionless surface such as an Example: A block of mass m1 on a rough, horizontal.An object can have a large momentum by having a large mass or a large velocity. Momentum is a vector, and it is especially important to pay attention to. Other forces often act on an object during a collision or other brief interaction. In Example 11.1, for instance, the baseball is also acted on by gravity.

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