Problem 3: (Problem 58 in section 8.5). Refer to problem 2 above. Show your work. 58. Refer to Exercise 56. a. Find the component vector of F perpendicular to the ramp. Round values to 1 decimal place. b. Find the magnitude of the force that the ramp makes against each tire. Round to the nearest pound.

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Please solve problem 3 parts a and b Do not solve problem 2!
Problem 2: (Problem 56 in section 8.5). Show your work.
S9548 W
56. A forklift is used to offload freight from a delivery truck. Together the forklift and its contents weigh 800
16, and the weight is evenly distributed among four wheels. The ramp is inclined 14° from the horizontal.
F1
a. Write the force vector F in terms of i and j representing the weight against a single tire.
b. Find the component vector of F parallel to the ramp. Round values to 1 decimal place.
-47;=117
c. Find the magnitude of the force needed to keep the forklift from rolling đown the ramp. Round to
the nearest pound.
486b
Problem 3: (Problem 58 in section 8.5). Refer to problem 2 above. Show your work.
58. Refer to Exercise 56.
a. Find the component vector of F perpendicular to the ramp. Round values to 1 decimal place.
b. Find the magnitude of the force that the ramp makes against each tire. Round to the nearest pound.
Transcribed Image Text:Problem 2: (Problem 56 in section 8.5). Show your work. S9548 W 56. A forklift is used to offload freight from a delivery truck. Together the forklift and its contents weigh 800 16, and the weight is evenly distributed among four wheels. The ramp is inclined 14° from the horizontal. F1 a. Write the force vector F in terms of i and j representing the weight against a single tire. b. Find the component vector of F parallel to the ramp. Round values to 1 decimal place. -47;=117 c. Find the magnitude of the force needed to keep the forklift from rolling đown the ramp. Round to the nearest pound. 486b Problem 3: (Problem 58 in section 8.5). Refer to problem 2 above. Show your work. 58. Refer to Exercise 56. a. Find the component vector of F perpendicular to the ramp. Round values to 1 decimal place. b. Find the magnitude of the force that the ramp makes against each tire. Round to the nearest pound.
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