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Therefore, the force F will lift both masses. Problem 18. Two masses m1 and m2 are connected by two pulleys as shown. The friction between m1 and the surface is μ. Find the accelerations of the masses and the tensions in the ropes. Problem 18. To determine the direction of the motion, analyze the forces Nupa inpawl dan
Two forces of magnitude 50 N, as shown in the figure below (one at center, other in opposite direction at rim), act on a cylinder of radius 4 m and mass 6.25 kg. The cylinder, which is initially at rest, sits on a frictionless surface. After 1 second, the velocity and angular velocity of the cylinder in m/s and rad/s are respectively a.

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Two objects with masses of 3.00 kg and 5.00 kg are connected by a light string that passes over a light frictionless pulley to form an Atwood machine, as in Figure 5.14a. Determine (a) the tension in the string, (b) the acceleration of each object, and (c) the distance each object will move in the first second of motion if they start from rest.

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As is shown in the table/chart/data/diagram/graph/plot/figure. When these fibrous structures come in contact with a surface, weak forces of attraction, i.e. van der Waals forces, are established between hair. between two media. Deteriorative Properties relate to the chemical reactivity of materials.

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Two blocks with masses 4.00 kg and 8.00 kg are connected by astring and slide down a 30.0 degree inclined plane. The coefficientof kinetic friction between the 4.00-kg block and the plane is0.25; that between the 8.00-kg block and the plane is 0.35.

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Three objects are connected by light strings as shown in Figure P4.62. The string connecting the m1 = 5.50 kg mass and the m2 = 4.20 kg mass passes over a light frictionless pulley.

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Dec 16, 2014 · In the given figure, two bodies of masses m1 and m1 and m2 connected by a light inextensible string passing over a smooth pulley. Mass m2 lies on a smooth horizontal plane. When mass m1 moves downwards, the acceleration of the two bodies is equal to (a) 21 1 2 / m g m s m m+ (b) 22 1 2 / m g m s m m− (c) 22 1 2 / m g m s m m+ (d) 21 1 2 / m g m s m m− [IAS-1995] 68.

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The pulley is a disk with frictionless bearings, having a radius R and moment of inertia 3MR 2. Block C of mass 4M is on top of block B. The surface between blocks B and C is NOT frictionless. Shortly after the system is released from rest, block A moves with a downward acceleration a, and the two blocks on the table move relative to each other.

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Two moving coil meters, M 1 and M 2 have the following particulars: R 1 = 10 Ω, N 1 = 30, A 1 = 3.6 x 10-3 m2, B1 = 0.25 T. R 2 = 14 Ω, N 2 = 42, A 2 = 1.8 x 10-3 m2, B 2 = 0.50 T (The spring constants are identical for the two meters). Determine the ratio of (a) current sensitivity and (b) voltage sensitivity of M 2 and M 1.

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Oct 02, 2011 · A mass m1 = 6 kg rests on a frictionless table and connected by a massless string over a massless pulley to an? another mass m2 = 3.3 kg which hangs freely from the string. When released, the hanging mass falls a distance d = 0.87 m.

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He undergoes two consecutive displacements. The first is 100 km 10 degrees west of north, and the second is 120 km 50 degrees east of north. It takes you 9.5 minutes to walk with an average velocity of 1.2 m/s to the north from the bus stop to museum entrance. What is your displacement?

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Two masses are connected by a rope and pulled (accelerated) along a horizontal surface, as shown in Figure 15.1. Mass M1 = 50 kg and slides along a surface with friction, where the coefficient of kinetic friction is equal to 0.15. Mass M2 = 30 kg and slides along a frictionless surface.