Two blocks of mass m1 = 2kg and m2 = 8kg are connected by a light string and a smooth pulley. block m1 lies on a smoot horizontal plane and block m2 lies on a rough inclined plane with a friction %3D
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A: from the figure, F = T + m2gsinθ + m2aT1 = m1gsinθ + μm1gcosθ +m1a
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A: Angle of ramp (θ) = 40o above the horizontal mass (m) = 15 kg
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A: Force = 10.985 N
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A: Given: m1=31 kgθ=34°μ=0.11m2=7.80kg
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- At an accident scene on a level road, investigators measure a car's skid mark to be 93 m m long. It was a rainy day and the coefficient of friction was estimated to be 0.31. Use these data to determine the speed of the car when the driver slammed on (and locked) the brakes.What is the mass of a box on the ramp if the hanging box is 25kg and the system is accelerating at 2.8m/s^2 down the 65 degree ramp? The coefficient of kinetic friction is 0.31Our 10kg mystery box rests on a horizontal floor. The coefficient of static friction is 0.40and the coefficient kinetic friction is 0.30. Determine tge force of friction, acting on the box if a horizontal applied force is exerted on it of magnitude: (d) 38N, and (e) 40N. Use 9.81m/s squared for the gravity while F sub A for the unit of applied force
- A tree trunk can be penetrated to a depth of 5.30 cm by a 7.80-g bullet traveling at 520 m/s. (a) Calculate the average frictional force required to stop the bullet. If the frictional force is constant, determine how long it takes for a bullet to cease moving once it has entered the tree.The coefficient of static friction µg between the 83-lb body and the 14° wedge is 0.37. Determine the magnitude of the force P required to begin raising the 83-lb body if (a) rollers of negligible friction are present under the wedge, as illustrated, and (b) the rollers are removed and the coefficient of static friction Hs = 0.37 applies at this surface as well. 83 lb 14° Answers: (a) P = i Ib (b) P = i IbA 1,360-N crate is being pushed across a level floor at a constant speed by a force Fof 350 N at an angle of 20.0° below the horizontal, as shown in the figure a below. 20.0° 120.0° (a) What is the coefficient of kinetic friction between the crate and the floor? (Enter your answer to at least three decimal places.) (b) If the 350-N force is instead pulling the block at an angle of 20.0° above the horizontal, as shown in the figure b, what will be the acceleration of the crate? Assume that the coefficient of friction is the same as that found in part (a). |m/s?
- A block of mass 1.96kg is accelerated across a rough surface by a rope passing over a pulley, as shown in the figure below. The tension in the rope is 14.0N, and the pulley is 10.8cm above the top of the block. The coefficient of kinetic friction is 0.350. Calculate the value of x at which the acceleration becomes zero.An inclined plane has an angle of inclination of 20o from the horizontal. What time will it take for a cart to travel 1.5 m across the inclined plane if it starts from rest at the top of said inclined plane. Assume the system is frictionless.A box with a mass of 0.5 slugs lies on an inclined plane making an angle of 30o with the horizontal. If the coefficient of kinetic friction between the box and the plane is 0.4, what is the magnitude of the force that must be applied parallel to the incline to keep the box moving down the incline at a constant speed?
- The coefficient of static friction between a block of mass m and an incline is = 0•3. (a) What can be the maximum angle e of the incline with the horizontal so that the block does not slip on the plane ? (b) If the incline makes an angle 8/2 with the horizontal, find the frictional force on the block.A 100-N block on a rough 30°-incline is acted upon by a force P as shovm causing it to accelernte at Kinetic friction is 0.30. (a) Draw the FBD of the block (b) Find the magnitude of P. Please explain in full detail(ASAP) 10kg block is on a 30 degree inclined plane. It is acted upon by a 25N force directed downwards and by a 15N force directed 40 degree relative to the incline. Coefficient of friction are static=0.4 and kinetic=0.3 Question What is the magnitude of the frictional force between the block and the incline at the instance shown? What is the magnitude of the limiting frictional force between the block and the incline?