14. In the figure, a cord runs around two mass-less, frictionless pulleys. A canister with mass m = 12.0 kg hangs from one pulley, and you exert a force F on the free end of the cord. If you pull 10.0 cm on the free end of the cord, how much work have you done on the canister? Assume that the canister is at rest after you have pulled the 10.0 cm.
14. In the figure, a cord runs around two mass-less, frictionless pulleys. A canister with mass m = 12.0 kg hangs from one pulley, and you exert a force F on the free end of the cord. If you pull 10.0 cm on the free end of the cord, how much work have you done on the canister? Assume that the canister is at rest after you have pulled the 10.0 cm.
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Midt ✰ midt ★ [Solv
с
FV
A) 2.94 J
B) 11.7 J
C) 5.88 J
D) 23.5 J
E) 11.8 J
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14. In the figure, a cord runs around two mass-less, frictionless pulleys. A canister with
mass m = 12.0 kg hangs from one pulley, and you exert a force F on the free end of the
cord. If you pull 10.0 cm on the free end of the cord, how much work have you done on
the canister? Assume that the canister is at rest after you have pulled the 10.0 cm.
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04/assignments/14982272
Midt ✰ midt ★ [Solv
с
FV
A) 2.94 J
B) 11.7 J
C) 5.88 J
D) 23.5 J
E) 11.8 J
P Pear
m
oper
New
G Search or type URL
Stati
14. In the figure, a cord runs around two mass-less, frictionless pulleys. A canister with
mass m = 12.0 kg hangs from one pulley, and you exert a force F on the free end of the
cord. If you pull 10.0 cm on the free end of the cord, how much work have you done on
the canister? Assume that the canister is at rest after you have pulled the 10.0 cm.
stud
oper
Peop
Download
Page <
Peop
14
C
A
of 22
◄
Confirm Ma
To continue
Mac passwo
Unable to D
"Microsoft C
Frameworks
not be instal
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