A body with a mass of 30 kg rests on a plane inclined 45° with the horizontal. The coefficient of friction is 0.333. What is the range of values of a horizontal force P that will keep the mass from moving up or down the plane?
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- i need the answer quicklyPROBLEM 2: A 20-kg box on a horizontal plane is subjected to a force F = 100 N inclined 30° from the horizontal. When the distance is 15m, the box is moving to the right with a speed of 8 m/s. Determine its speed when its distance is 25m. The coefficient of kinetic friction between the box and the horizontal plane is 0.25. Ans. 10.7 m/sTwo blocks of equal weight W can slide on a horizontal surface. The coefficient of friction between the blocks and the surface is m. A string of length L is suspended between the blocks and carries a weight 2W at its midpoint. How far apart will the blocks be for equilibrium?
- 1.) see photos for detailsA 1200 Ibs force acts as shown on a 500 Ibs block placed on a horizontal plane surface. Determine the following: a. Coefficient of friction between the block and the plane surface. b. Determine whether the block is in equilibrium, and find the value of the friction force. If the Coefficient of friction between the block and plane surface are us = 0.30 and Hx = 0.25. 500 lbs 62°- 1200 lbsA 100-lb force is pulling a 200-lb block as shown. The coefficient of static friction between the block and the floor is μs = 0.6 and the coefficient of kinetic friction is μk = 0.4. a. What is the friction force between the block and the floor? b. Will the block move?
- A 100-lb block is initially at rest and is placed along the inclined plane making an angle of 60° with respect to the vertical If a horizontal force equal to 90 lb is applied to the block, and the coefficients of friction are H = 0.20 and µk 0.16 What is the direction of the block? What is the acceleration of the block? What is the total displacement of the block after 2 seconds?A 200-lb block is on top of a 300-lb block and both blocks are tied to a pulleya pulley that is attached to the wall, as shown in the figure. The coefficient of static friction between thetwo blocks is 0.3 and between the 300 lb block and the floor is 0.4. The coefficient of dynamic frictionbetween all surfaces is 0.25. Disregard the friction at the pulley.Determine the minimum force that must be applied to the 300 lb block in order for it to initiatemotion (imminent motion).Figure 1 shows a 100-kg crate that has a center of gravity at G. The coefficient of static friction at the floor is μ = 0.4. With appropriate calculation, explain: 0.5 m 0.5 m P 1.5 m Figure 1 (a) What will happen when the force P is 400 N. (b) What will happen when the force P is 300 N. A 0.8 m 1.2 m
- 2. A man is pulling a crate that has a mass of 50kg and it attains a velocity of 4 m/s after moving to the right by 5 meters. Considering the kinetic friction coefficient is equal to 0.3. Solve for the force P in which the man exerted to accelerate the box. 30°A 100-lb block is initially at rest and is placed along the inclined plane making an angle of 60° with respect tothe vertical. If a horizontal force equal to 90 lb is applied to the block, and the coefficients of friction are μs = 0.20 andμk = 0.16What is the direction of the block?What is the acceleration of the block?What is the total displacement of the block after 2 seconds?Determine the value of coefficient of friction if friction force is 300 N and Normal force is 1000 N