The wheels, axle, and handles of a wheelbarrow weigh W-69 N. The load chamber and its contents weigh W₁ - 522 N. The drawing shows these two forces in two different wheelbarrow designs. To support the wheelbarrow in equilibrium, the man's hands apply a force to the handles that is directed vertically upward. Consider a rotational axis at the point where the tire contacts the ground, directed perpendicular to the plane of the paper. Find the magnitude of the man's force for both designs. (a) F-i (b) F-i 0.400 0.700 m 0.200 m W 6.600 m²0.700 m (b)

Principles of Physics: A Calculus-Based Text
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Chapter10: Rotational Motion
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Problem 22P: The fishing pole in Figure P10.22 makes an angle of 20.0 with the horizontal. What is the torque...
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The wheels, axle, and handles of a wheelbarrow weigh W-69 N. The load chamber and its contents weigh W₁ - 522 N. The drawing
shows these two forces in two different wheelbarrow designs. To support the wheelbarrow in equilibrium, the man's hands apply a
force to the handles that is directed vertically upward. Consider a rotational axis at the point where the tire contacts the ground,
directed perpendicular to the plane of the paper. Find the magnitude of the man's force for both designs.
F
(a) F- i
(b) F-i
W
W₁₂
0.400m 0.700 m
0.200 m
W
W₁
6.600 mo.
m 0.700 m
(b)
Transcribed Image Text:The wheels, axle, and handles of a wheelbarrow weigh W-69 N. The load chamber and its contents weigh W₁ - 522 N. The drawing shows these two forces in two different wheelbarrow designs. To support the wheelbarrow in equilibrium, the man's hands apply a force to the handles that is directed vertically upward. Consider a rotational axis at the point where the tire contacts the ground, directed perpendicular to the plane of the paper. Find the magnitude of the man's force for both designs. F (a) F- i (b) F-i W W₁₂ 0.400m 0.700 m 0.200 m W W₁ 6.600 mo. m 0.700 m (b)
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