A 985 n crate rests on the floor.
A 1100 n crate rests on the floor.
How much work is required to move it at constant speed 5 0 m vertically.
How much work is required to move it at constant speed 5 0 m vertically.
Since the crate is not accelerating horizontally.
A how much work isrequired to move it at constant speed 4 8 m along the floor againsta friction force of 240 n.
How much work is required to move it at constant speed 5 0 m along the floor against a friction force of 310 n.
C how much work must be done to stop a 1 670 kg car travelingat 149 km h.
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A 1400 n crate rests on the floor.
A 1100 n crate rests on the floor.
Express your answer to two significant figures and include the appropriate units.
A 1 200 n crate rests on the floor.
A 1100 n crate rests on the floor.
Part a part completehow much work is required to move it at constant speed 5 0 m along the floor against a friction force of 290 n.
How much work is required move it constant spoed 50 the a friction force of 270 n.
How much work is required to move it at constant speed a 4 0 m along the floor against a friction force of 230 n and b 4 0 m vertically.
J b how much work is required to move it at constant speed 6 9 m vertically j.
A how much work is required to move it at constant speed 6 9 m along the floor against a friction force of 180 n.
A 1100 n crate rests on the floor.
How much work is required move it constant spoed 50 the a friction force of 270 n.
A see the free body diagram for the crate as it is being pulled.
How much work is required to move it at constant speed a 4 0 m along the floor against a friction force of 230 n and b 4 0 m vertically.
Express your answer to two significant figures and include the appropriate units.
How much work is required to move it at constant speed 5 0 m along the floor against a friction force of 250 n.
A 1400 n crate rests on the floor.
A 1300 n crate rests on the floor.
Answer 1 45 kj part b how much work is required to move it at constant speed 5 0 m vertically.
B how much work is required to move itat constant speed the same distance vertically.