A box of mass m-3,0 kg on a frictionless plane inclined at angle O,-30° is connected via a cord of negligible mass to a box of mass m=2,0 kg on another frictionless plane inclined at angle 0,-60° through a pulley. The pulley is frictionless and has negligible mass. What is the tension in the cord?
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- A mover is pushing a 148kg box up a ramp. The ramp is inclined at an angle of 30.4 degrees. Since the box is on wheels, assume that friction is negligable. Calculate the force the mover exerts to push the box up the ramp at a constant rate of 1.26 m/s. Assume he pushes parallel to the ramp.A loaded penguin sled weighing 71.0 N rests on a plane inclined at angle θ = 19.0° to the horizontal (see the figure). Between the sled and the plane, the coefficient of static friction is 0.250, and the coefficient of kinetic friction is 0.160. (a) What is the minimum magnitude of the force ? parallel to the plane, that will prevent the sled from slipping down the plane? (b) What is the minimum magnitude F that will start the sled moving up the plane? (c) What value of F is required to move the sled up the plane at constant velocity?Question 3
- A loaded penguin sled weighing 72.0 N rests on a plane inclined at angle 0 = 22.0° to the horizontal (see the figure). Between the sled and the plane, the coefficient of static friction is 0.270, and the coefficient of kinetic friction is 0.140. (a) What is the minimum magnitude of the force , parallel to the plane, that will prevent the sled from slipping down the plane? (b) What is the minimum magnitude F that will start the sled moving up the plane? (c) What value of F is required to move the sled up the plane at constant velocity? (a) Number i (b) Number i (c) Number i Units Units Units +Two blocks of mass m, = 10 kg and mg = 5 kg are connected by a massless string that passes over a pulley as shown in the figure. The system is in static equilibrium. There is friction between m, and the inclined surface (u.-0.4), Neglect the friction between the string and the pulley. Determine the tension in the string. 10 kg 5.0 kg 37 65.35 N () 147.0 N 98.0 N 49.0 N O 52.3 NThe distance between two telephone poles is d = 54.0 m. When a 1.20 kg bird lands on the telephone wire midway between the poles, the wire sags h = 0.206 m. (a) Draw a free-body diagram of the midpoint of the wire (where the bird is perched). mg O X* (b) How much tension (in N) does the bird produce in the wire? Ignore the weight of the wire. 3.15 Your response differs significantly from the correct answer. Rework your solution from the beginning and check each step carefully. N Need Help? Read It
- QHQBP A(n) 11 kg mass is on an incline, with a = 4.7_m and b = 2.3_m. The coefficient of kinetic friction between the mass and the surface of the incline is k = 0.38. If the mass is initially near the top of the incline and sliding down, then what is the mass's acceleration down the incline? m b 16. 0.9627_m/s² 1.041_m/s² 1.103 m/s² A. B. C. 1-1 a D. E. F. 1.137 m/s² 1.01 m/s² 1.073_m/s²Forces A, B and Care applied at the origin in the directions indicated in the figure below. A has a magnitude of 22 N and is 40 above the positive X-axis. B has a magnitude of 25 N and is 60* above the negative X-axis. The forces are in equilibrium. 0 15 N B -10 60 20 15 8 10 int D 4 8 3 8 3 45- 20 25 30- C 435 N The magnitude of the components of A are most nearly (enter as positive): |A₂| N and A The magnitude of the components of B are most nearly (enter as positive): B₂ N and B The magnitude of force Čapplied at the origin required to balance the system is most nearly: N to th The angle of force from the negative X-axis as indicated is most nearly: 409 TO BE fast 75(Figure 1)A chandelier with mass m is attached to the ceiling of a large concert hall by two cables. Because the ceiling is covered with intricate architectural decorations (not indicated in the figure, which uses a humbler depiction), the workers who hung the chandelier couldn't attach the cables to the ceiling directly above the chandelier. Instead, they attached the cables to the ceiling near the walls. Cable 1 has tension T, and makes an angle of 0, with the ceiling Cable 2 has tension T and makes an angle of 6, with the ceiling Part A Find an expression for T, the tension in cable 1, that does not depend on T Express your answer in terms of some or all of the variables m, 0,, and 02, as well as the magnitude of the acceleration due to gravity g. You must use parentheses around 0, and 0, when they are used as arguments to any trigonometric functions in your answer. T = Figure Request Answer Submit Provide Feedback Next > Cable 1 Cable 2
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