College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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- Please helparrow_forwardMass 1 = 3.5 kg brick is placed on an inclined plane which forms an angle of 25° with the horizontal. There is a string attached to the brick that passes over a pulley and connects to a Mass 2 = 1.15 kg. The coefficient of static friction between the brick and the plane is 0.25.What is the acceleration of the brick?What is the tension in the string?arrow_forwardPlz use g = 9.8 m/s2arrow_forward
- Three boxes are pulled along a horizontal frictionless floor by a constant horizontal pull P. The boxes are connected by very light horizontal strings having tensions T1 and T2 as shown in the figure. Which of the following statements about the tensions is correct? T₂ T₁ 10 20 N N 100 N O A.T1 > T2 OB.T1 = P OC. T2 = P O D. T2 > T1 Parrow_forwardA 2.00-kg object B is connected with a string to a 3.00-kgobject A, which is connected with a second string over a massless, frictionless pulley to a 8.00-kg object C. The strings have negligible mass and do not stretch, and the level tabletop is frictionless. Calculate the tension ?1. ?1= N Calculate the tension ?2. ?2= N Calculate the acceleration ? of the system. ?= m/s2arrow_forward10.0 kg block on a table is connected by a string to a 63 kg mass, which is hanging over the edge of the table. Assuming that frictional forces may be neglected, what is the magnitude of acceleration of the 10.0 kg block when the other block is released? (See the figure.) |10.0 kg ... Table 63 kg A 8.1 m/s^2 B 7.5 m/s^2 8.5 m/s^2 D 6.9 m/s^2arrow_forward
- Two masses m1=5 Kg and m2=12 Kg are connected with string and pulled with a force F=25 N that makes an angle of 53° with a smooth horizontal surface as shown in the figure. Find the tension in the string in a unit of Newton. F A. 6.258 B. 8.85 m2 m1 0 C. 2213 D. None E. 4.425arrow_forwardTwo objects with masses of m1 = 2.90 kg and m2=7.70 kg are connected by a light string that passes over a frictionless pulley. a. determine the tension in the string( Enter the magnitude only) b. determine the acceleration of each object. ( enter the magnitude only) c. determine the distance each object will move in the first second of motion if both objects start from rest.arrow_forwardTwo blocks with masses M1 and M2 hang one under the other. For this problem, take the positive direction to be upward, and use g for the magnitude of the free-fall acceleration. Assume accelerating the blocks are accelerating upward (due to the tension in the strings) with acceleration of magnitude a. a. Find T2, the tension in the lower rope. b. Find T1, the tension in the upper rope.arrow_forward
- A student attaches a rope to a 32 kg box, and drags it to the left with constant velocity of 1.08 m/s. The tension in the rope is 235 N at an angle of 48.7° to the ground. How much does the box weigh? 313.92 Find the x and y components of the applied (tension) force: Fx = 155.10 V o N %3D Fy = 176.5 N. %3D How much friction must be present? 155.10 V oN How much Normal force must be present? N. Submit Questionarrow_forwardm₁ ܕ ܐܐܐ Felipe has a mass of my 57 kg and is climbing the pictured rope, weighted by block with m₂ 106 kg. What is the tension in the rope? 727 2 N Submit Answer Incorrect. Tries 4/10 Previous Triesarrow_forwardTwo blocks connected by a string are pulled across a rough horizontal surface by a force applied to one of the blocks, as shown. The acceleration of gravity is 9.8 m/s?. T 47° 4 kg 5 kg u = 0.63 If each block has an acceleration of 1.5 m/s² to the right, what is the magnitude of the applied force? Answer in units of N.arrow_forward
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