If the force shown below has a magnitude of 40 N, and m = 1.5 kg, determine the tension in the massless rope that connects the two blocks. Assume the surface is frictionless.
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If the force shown below has a magnitude of 40 N, and m = 1.5 kg, determine the tension in the massless rope that connects the two blocks. Assume the surface is frictionless.
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- If the vector components of the position of a particle moving in the xy plane as a function of time are x(t)=(2.5ms2)t2i and y(t)=(5.0ms3)t3j, when is the angle between the net force on the particle and the x axis equal to 45?A heavy sled is being pulled by two people, as shown in the figure. The coefficient of static friction between the sled and the ground is , = 0.579, and the kinetic friction coefficient is = 0.419. The combined mass of the sled and its load is m = 351 kg. The ropes are separated by an angle = 21.0. and they make an angle 0 = 30.1° with the horizontal, Assuming both ropes pull equally hard, what is the minimum rope tension required to get the sled moving? 1214.39 minimum rope tension: incorrect If this rope tension is maintained after the sled starts moving, what is the sled's acceleration? 1.56 acceleration: Attempt 1 N m/s?A 12 N horizontal force pushes a block weighing 5.0 N against a vertical wall . The coefficient of static friction between the wall and the block is 0.60, and the coefficient of kinetic friction is 0.40. Assume that the block is not moving initially. (a) Will the block move? (b) In unit-vector notation, what is the force on the block from the wall?
- A heavy sled is being pulled by two people, as shown in the figure. The coefficient of static friction between the sled and the ground is µs = 0.603, and the kinetic friction coefficient is = 0.403. The combined mass of the sled and its load is m = 336 kg. The ropes are separated by an angle o = 25.0°, and they make an angle 0 = 31.1° with the horizontal. Assuming both ropes pull equally hard, what is the minimum rope tension required to get the sled moving? minimum rope tension: N If this rope tension is maintained after the sled starts moving, what is the sled's acceleration? acceleration: m/s2A heavy sled is being pulled by two people, as shown in the figure. The coefficient of static friction between the sled and the ground is us 0.603, and the kinetic friction %3D coefficient is µ = 0.419. The combined mass of the sled and its load is m 276 kg. The ropes are separated by an angle o = 22.0°, and they make an angle 0 = 31.1° with the horizontal. Assuming both ropes pull equally hard, what is the minimum rope tension required to get the sled moving? minimum rope tension: If this rope tension is maintained after the sled starts moving, what is the sled's acceleration? acceleration: m/s?Two blocks are connected by a string, as shown in the figure below. The rough inclined surface makes an angle of θ = 27o with the horizontal. The block on the incline has a mass of m1 = 4.8 kg. The hanging block has a mass of m2 = 3.5 kg. The coefficient of kinetic friction between the 4.8 kg block and the incline is μk = 0.19. Suppose the 4.8 kg block is already sliding. Neglect the mass of the string and pulley. Assume the pulley rotates on a frictionless axle. (Insert Image) (1) Find the magnitude and direction of the acceleration of the 4.8 kg block. Does the 4.8 kg block accelerate up or down the incline?(2) Find the tension in the string.
- A heavy sled is being pulled by two people, as shown in the figure. The coefficient of static friction between the sled and the ground is H = 0.603, and the kinetic friction coefficient is µ = 0.403. The combined mass of the sled and its load is m = 336 kg. The ropes are separated by an angle o = 25.0°, and they make an angle 0 = 31.1° with the horizontal. Assuming both ropes pull equally hard, what is the minimum rope tension required to get the sled moving? minimum rope tension: If this rope tension is maintained after the sled starts moving, what is the sled's acceleration? m/s2 acceleration:A heavy sled is being pulled by two people, as shown in the figure. The coefficient of static friction between the sled and the ground is µs 0.603, and the kinetic friction coefficient is µ = 0.395. The combined mass of the sled and its load is m = 306 kg. The ropes are separated by an angle o = 28.0°, and they make an angle 0 = 31.1° with the horizontal. Assuming both ropes pull equally hard, what is the minimum rope tension required to get the sled moving? minimum rope tension: N If this rope tension is maintained after the sled starts moving, what is the sled's acceleration? acceleration: m/s?A force of magnitude 7.50 N pushes three boxes with masses m1=1.30kg ,m2=3.20kg, and m3=4.90kg. Find the magnitude of the contact force between boxes 1 and 2.
- For the next three items: A 200 kg plank is projecting a distance L = 5.0 m from a wall which is held steadily by a string that is connected to it at an angle = 30° from the horizontal. The plank is actually fasted to the wall where an unknown force F is exerted on the plank by the wall. If a 60 kg mass is placed on the plank at a distance d = 1.0 m, find the tension force on the string. Ө d O 1300 N O 4200 N O 1600 N O2200 N L-A woman exerts a horizontal force of 145 N on a crate with a mass of 38.7kg. (a) If the crate doesn't move, what's the magnitude of the static friction force (in N)? (b) What is the minimum possible value of the coefficient of static friction between the crate and the floor? (Assume the crate remains stationary.)You are given the following values where M1 represents a block on a horizontal surface attached to a pulley on the edge of the table where M2 is a block hanging off of this pulley. M1=128.41 g, M2=49.80 g, Xi=33.50 cm, Xf=88.70 cm, and Δt = 1.48 sec. Remebering to transfer g to kg and cm to m, what is the coefficient of friction μk value? Enter with 3 significant figures.