M Support Cable 37° M As shown in the diagram above, a rigid rod of mass M is hinged at its left end against a wall. A block of mass M hangs on the right edge of the rod. A support cable attached to the right end of the rod forms an angle of 37 degrees with horizontal. The tension in the string is 1,057 N. Calculate the mass M of the rod and the block. Express your answer in kilograms and round to the nearest tenth (1 decimal).
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- The leg and cast in the figure weigh 220N (w,). Determine the weight w, and the angle alpha needed so that no force is exerted on the hip joint by the leg plus the cast. 110 NA crate is supported by three cables as shown. Knowing that the tension in cable ADis 351 lb, determine the tension in cable AC . Round off only on the final answer expressed in 3 decimals and indicate unit.Two rods and one cable are attached to the supports at O. If two of the forces are as shown, determine the magnitude F and direction of the third force so that the resultant of the three forces is vertically downward with a magnitude of 1280 lb. 1160 lb Answers: : 480 lb
- Determine the tension in Cable CB and Cable CA supporting the given load for each figure. (Assume m1 = 3000 lb and m2 = 7000 lb. Round your answers to one decimal place.)A force of 60N acts on a body at an angle of 60 degree with the vertical. What are its rectangular components?A 28.0-kg block is connected to an empty 2.50-kgbucketby a cord running over a frictionless pulley. The coefficient of static friction between the table and the block is 0.41 and the coefficient of kinetic friction between the table and the block is 0.32. Sand is gradually added to the bucket until the system just begins to move. Ignore massof cord. (Figure 1) Calculate the mass of sand added to the bucket. Express your answer to two significant figures and include the appropriate units. Calculate the acceleration of the system. Express your answer to two significant figures and include the appropriate units
- As shown in the figure, the mass of the block is 214 kg. If Fappi= 59.4 N and Fapp2=38.7 N, find the normal force. Fapp. Fopps FRA sport utility vehicle with a gross weight of 4950 pounds is parked on a slope of 6°. Assume that the only force to overcome is the force of gravity. (Round your answers to one decimal place.) Find the force required to keep the vehicle from rolling down the hill. Ib Find the force perpendicular to the hill. lbThe three forces create a vertical resultant acting through pt. A in the figure below. If S = 2,00o lb, compute the values of G and E. Each side of the small square is i in. 个S A ME G V
- A man pushing a lawn mower exerts a force of 436 N on the handle. The handle makes an angle of 40o with the horizontal. What is the horizontal force applied to the mower?The leg and cast in the figure below weigh 380 N (w,). Determine the weight w, and the angle needed so that no force is exerted on the hip yont ty the leg plus cast. 110 N Need Help?The motor draws in the cable with an acceleration of 3 m/s?. The beam has a uniform mass of 25 kg/m, and the crate has a mass of 150 kg . Neglect the mass of the motor and pulleys. (Figure 1) Determine the components of the reaction at the support A using scalar notation. Express your answers using three significant figures separated by a comma. TVO AZO n vec Ar. Ay = 0, 1654.687 kN Figure 1 of 1 Submit Previous Answers Request Answer 0.5 m -2.5 m- X Incorrect; Try Again; 3 attempts remaining 3 m B Part B 3 m/s Determine the reaction at the support B. Express your answer to three significant figures and include the appropriate units. By = 1.51 kN C Submit Previous Answers