The force F in the figure keeps the 7.34 kg block and the pulleys in equilibrium. The pulleys have negligible mass and friction. Calculate the tension T in the upper cable. (Hint: When a cable wraps halfway around a pulley as here, the magnitude of its net force on the pulley is twice the tension in the cable.) Number i Units
The force F in the figure keeps the 7.34 kg block and the pulleys in equilibrium. The pulleys have negligible mass and friction. Calculate the tension T in the upper cable. (Hint: When a cable wraps halfway around a pulley as here, the magnitude of its net force on the pulley is twice the tension in the cable.) Number i Units
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![13 of 20
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The force F in the figure keeps the 7.34 kg block
and the pulleys in equilibrium. The pulleys have
negligible mass and friction. Calculate the tension T
in the upper cable. (Hint: When a cable wraps
halfway around a pulley as here, the magnitude of its
net force on the pulley is twice the tension in the
cable.)
Number
i
Units
II](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F659d28f1-8e8c-4d2f-bd93-422acce4a2e0%2Ff1f5c417-2cdf-4965-b82a-5d19200e3300%2F95dkqm6_processed.jpeg&w=3840&q=75)
Transcribed Image Text:13 of 20
- /5
View Policies
Current Attempt in Progress
The force F in the figure keeps the 7.34 kg block
and the pulleys in equilibrium. The pulleys have
negligible mass and friction. Calculate the tension T
in the upper cable. (Hint: When a cable wraps
halfway around a pulley as here, the magnitude of its
net force on the pulley is twice the tension in the
cable.)
Number
i
Units
II
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