A block of mass, m = 20 kg, rests on the inclined plane shown. What is the minimum force, P, required to maintain equilibrium of the block? The static coefficient of friction is 0.2 and the kinetic coeficcient of friction is 0.15 1
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- The coeffient of static friction between the uniform bar AB of weight W and the ground is 0.45. Find the smallest angle and the corresponding force P that would initiate simultaneous tipping and sliding of the bar.A 1.1-kg disk A is placed on the inclined surface. The coefficient of static friction between the disk and the surface is 0.35. Is the disk in equilibrium if P=5.5N and =30?Wedge Problem From the given figure, the mass of the block is 200kg. Coefficient of friction for all surface is 0.40. Answer the ff: 1. Determine the rection between the wall and the block if the block is raised due to force P. 200kg 2. Determine the rection between the wedge and the block if the block is raised due to the force P. 3. Determine the horizontal force P to raise 200 kg block.
- A uniform ladder is L=5.0m long and weighs 400.0 N. The ladder rests against a slippery vertical wall, as shown. The inclination angle between the ladder and the rough floor is β=53°.Find the normal forces from the floor and from the wall on the ladder and the coefficient of static friction μs at theinterface of the ladder with the floor thatprevents the ladder from slippingB L= 10' A 400 lb 77 A uniform bar AB, 10ft long and weighing 280lb, is hinged at B and rests upon a 400lb block at A as shown. If the coefficient of friction is 0.40 at all contact surfaces, find the horizontal force P required to start moving the 400 Ib block.In an experiment to find the coefficient of static friction, two plates (e) made of the sam material, m, = 200 gm, and m,= 400 gm. Each plate is put on the top of the same inclined plane, and we start to increase the inclination angle (z Jeo Legb). e Select one: a. The coefficient of static friction determined using m, is lower b. The coefficient of static friction determined using m, is lower will slide at lower angle than m, c. m1 d. Both will slide at the same angle
- 2-D PROBLEM: A spherical tank with a radius of 3.41m that has a mass of 28928.644kg was supported in the system shown. Assuming friction and the bar weight is negligible, determine the following: β: 21.774° θ: 46.452° 1. The reaction @ point D. 2. Tension @cable BE 3. The x and y-component of the reaction @ A 4. The reaction @ Athe system blocks shown below is in equilibrium, the weight of block A is 10 kN and for block B is 35 kN . The coefficient of friction between A and surface is 0.2 and between two block A and B is 0.15. Answer :the following P=40KN Lë 5 The value of friction force between two * blocks is 5.6 kN 6.4 kN 4.8 kN Non above-mentionedThe figure shows a pair of pin-jointed gripper-tongs holding an object weighing 2000 N. The coefficient of friction (u) at the gripping surface is 0.1. XX is the line of action of the input force and YY is the line of application of gripping force. If the pin- joint is assumed to be frictionless, the magnitude of force Frequired to hold the weight is F Pin Y- 2000 N 150mm ww 00
- A cylinder having a mass of 211 kg is to be supported by the cord which wraps over the pipe. What is the smallest vertical force F needed to support the load if the cord passes two times over the pipe, B = 540 degrees? The static coefficient of friction is 0.42. Statics and Dynamics R.C. Hibbeler 2010 Pearson Prentice Hall, Inc.A block of mass M = 109.0 kg on an inclined plane is attached to another block of mass m via a string, as in the figure below. The coefficients of static and kinetic friction for the block and the incline are u, = 0.40 and uy = 0.20 and the plane is inclined 16.9° with horizontal. (a) Determine the range of values for m, the mass of the hanging block, for which the block will not move unless disturbed, but if nudged, will slide down the incline. 73.4 kg s m s.03 kg (b) Determine a range of values for m for which the block will not move unless nudged, but if nudged will slide up the incline. 52.94 kg s m s 10.82 kg eBookThe block of weight W = 10 kN is pulled by the force P inclined at the angle = 15 to the horizontal. Find the smallest force P (in kN, round-off to 2 decimal places) that would cause impending sliding of the block. The angle of static friction between the block and the ground is = 15.