4) A clown at an intersection is hanging from two wires of different length. The angles the wires makes with a pole hanging over the intersection are 55° and 70°. The force the clown exerts is 94N. Determine the magnitude of the tension in each cable. Draw a diagram.
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![4) A clown at an intersection is hanging from two wires of different length. The angles the wires
makes with a pole hanging over the intersection are 55° and 70°. The force the clown exerts is
94N. Determine the magnitude of the tension in each cable. Draw a diagram.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd9f519c0-8039-4b1c-bfbd-0105be8602a9%2Fec4478e4-ec95-4aa0-b79e-320aa6bc1d4d%2Fhf5c1c_processed.jpeg&w=3840&q=75)
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- A 76 kg person is being pulled away from a burning building as shown in figure. If the tensions in the two ropes when the person is momentarily motionless are equal T1=T2 and one of the two angels shown in figure is 30 degrees. a) find the other angle b) calculate the tension in the ropeThe bird feeder has a total mass of 6.2 kg and is suspended between 2 trees. Given that angle 1 is 77 degrees and angle 2 is 44 degrees, what is the magnitude of the tension force in both cables? Include 1) a free body diagram 2) Newton's second law in vector form and 3) Newton's second law in the x-direction and the y-direction, expressed in terms of variables.1) A 75-kg crane is suspended through a frictionless pulley to a massless pole at two points, each point is an end of two cables, and the left cable has an angle to the pole of 25 degrees while that of the right angle has an angle of 15 degrees. Each cable passes over a frictionless pulley. What is the tension force of the left cable? What is the tension force of the right cable? Draw a free-body diagram of the problem. Identify the known information. Identify the unknown information. Write the equations to solve for the unknown information. Calculate. Encircle your final answer with the appropriate units.
- Multiple part question: A worker in a factory slides a heavy box up a ramp into a truck. The box has a mass of 84 kg, and the ramp is 3 m long and makes an angle of 34° with the horizontal. The coefficient of friction between the box and ramp is 0.6. What is the weight of the box? What is the normal force acting on the box? What is the force of friction acting on the box? Assuming the worker pushes the box up the ramp with a constant velocity, how much work does the factory worker do on the box in order to get it into the truck? How much gravitational potential energy does the box have once it reaches the top of the ramp?1 This loudspeaker has a weight of 70 Newtons and is being held up by two cables. Both cables are at an angle of 25 degrees. This means that they both have the same tension, T. What is the vertical component of the tension in each cable? Ty %D unit What is the horizontal component of the tension in each cable? Tx unit What is the total tension in each cable? T = unit %3D5) A box with mass m=1.25 kg rests on the top of a bar. The coefficient of static friction between the box and the bar is μs=0.73 and the coefficient of kinetic friction is μk=0.39. a) Write an expression for Fm the minimum force required to produce movement of the box on the top of the bar. b) Solve numerically for the magnitude of the force Fm in Newtons. c) Write an expression for a, the box's acceleration, after it begins moving. (Assume the minimum force, Fm, continues to be applied.) d) Solve numerically for the acceleration, a in m/s².
- A 4,500-N weight is suspended in equilibrium by two cables. Cable 1 applies a horizontal force to the right of the object and has a tension, T1. Cable 2 applies a force upward and to the left at an angle of 40.0 Degrees to the negative x-axis and has a tension, T2. Find T22. The following horizontal forces act on an object: A has a magnitude of 6.0 lb and is in the + y-direction; B has a magnitude of 10.0 lb and is in the -x-direction; C has a magnitude of 8.0 lb and is at an angle of 45° clockwise from the X direction, Find the magnitude and direction of A +B-C.Question 1-a, Numerical: The next figure shows an 80.0 kg cat burglar at static equilibrium. Assume the angle 8 of the inclined cable is 48.0°, find the tension in the inclined cable (T₁) measured in N. Ꮎ l L
- The bird feeder has a total mass of 5 kg. Given that angle 1 is 65 degrees and angle 2 is 40 degrees, what is the magnitude of the tension force in both cables? Include 1) a free body diagram 2) Newton's second law in vector form and 3) Newton's second law in the x-direction and the y- direction, expressed in terms of variables. O, Bird food7)A desk with a mass of 75.0 kg sits on a floor, and the coefficient of static friction between the two surfaces is 0.40. Draw a force diagram for the problem and how much force must someone apply in a direction horizontal to the surface of the floor to get the desk moving?Problem 4 The upper leg muscle (quadriceps) exerts a force of 1250 N, which is carried by a tendon over the kneecap (the patella) at the angles shown in the figure. Find the direction and magnitude of the force exerted by the kneecap on the femur. Fo = 1250 N 55° 75 Fo