A bucket filled with water has a mass of 4.54 kg. It is tied to a 65 cm-long rope that can withstand a force of 525 N. The bucket is spun at a constant speed with a frequency of 2.0 Hz. a. Calculate the tension in the rope at the bottom of the circle. F m= 4.54 kg v = 65cm 525M f = 2.0H₂ T = ? 2

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Chapter7: Rotational Motion And The Law Of Gravity
Section: Chapter Questions
Problem 54AP: A 0.400-kg pendulum bob passes through the lowest part of its path at a speed of 3.00 m/s. (a) What...
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answer parts a-b

A bucket filled with water has a mass of 4.54 kg. It is tied to a
65 cm-long rope that can withstand a force of 525 N. The
bucket is spun at a constant speed with a frequency of 2.0 Hz.
a. Calculate the tension in the rope at the bottom of the circle.
m= 4,54 kg v = 65cm
v=65cm F = 525N
f = 2.0H₂ T = ?
Transcribed Image Text:A bucket filled with water has a mass of 4.54 kg. It is tied to a 65 cm-long rope that can withstand a force of 525 N. The bucket is spun at a constant speed with a frequency of 2.0 Hz. a. Calculate the tension in the rope at the bottom of the circle. m= 4,54 kg v = 65cm v=65cm F = 525N f = 2.0H₂ T = ?
b. Using only your answer from a, can you determine if the rope is strong
enough to withstand the circular motion? Explain.
Transcribed Image Text:b. Using only your answer from a, can you determine if the rope is strong enough to withstand the circular motion? Explain.
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