In 1990 Walter Arfeuille of Belgium lifted a 281.5-kg object through a distance of 17.1 cm using only his teeth (a) How much work did Arfeuille do on the object? J (b) What magnitude force did he exert on the object during the lift, assuming the force was constant? kN A block of mass m = 2.10 kg is pushed a distance d = 5.80 m along a frictionless horizontal table by a constant applied force of magnitude F = 16.0 N directed at an angle 0 23.0° below the horizontal as shown in the figure below. m (a) Determine the work done on the block by the applied force. J (b) Determine the work done on the block by the normal force exerted by the table. (c) Determine the work done on the block by the force of gravity. J (d) Determine the work done by the net force on the block J

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Chapter1: Units, Trigonometry. And Vectors
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In 1990 Walter Arfeuille of Belgium lifted a 281.5-kg object through a distance of 17.1 cm using only his teeth
(a) How much work did Arfeuille do on the object?
J
(b) What magnitude force did he exert on the object during the lift, assuming the force was constant?
kN
Transcribed Image Text:In 1990 Walter Arfeuille of Belgium lifted a 281.5-kg object through a distance of 17.1 cm using only his teeth (a) How much work did Arfeuille do on the object? J (b) What magnitude force did he exert on the object during the lift, assuming the force was constant? kN
A block of mass m =
2.10 kg is pushed a distance d =
5.80 m along a frictionless horizontal table by a constant applied force of magnitude F = 16.0 N directed at an
angle 0
23.0° below the horizontal as shown in the figure below.
m
(a) Determine the work done on the block by the applied force.
J
(b) Determine the work done on the block by the normal force exerted by the table.
(c) Determine the work done on the block by the force of gravity.
J
(d) Determine the work done by the net force on the block
J
Transcribed Image Text:A block of mass m = 2.10 kg is pushed a distance d = 5.80 m along a frictionless horizontal table by a constant applied force of magnitude F = 16.0 N directed at an angle 0 23.0° below the horizontal as shown in the figure below. m (a) Determine the work done on the block by the applied force. J (b) Determine the work done on the block by the normal force exerted by the table. (c) Determine the work done on the block by the force of gravity. J (d) Determine the work done by the net force on the block J
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