The length of nylon rope from which a mountain climber is suspended has a force constant of 1.50 X 104 N/m. (a) What is the frequency (in Hz) at which he bounces, given that his mass plus the mass of his equipment is 78.0 kg? Hz (b) How much would this rope stretch (in cm) to break the climber's fall if he free-falls 2.00 m before the rope runs out of slack? Hint: Use conservation of energy. cm (c) Repeat both parts of this problem in the situation where twice this length of nylon rope is used. frequency (in Hz) Hz

College Physics
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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solve part c.

The length of nylon rope from which a mountain climber is suspended has a force constant of 1.50 X 104 N/m.
(a) What is the frequency (in Hz) at which he bounces, given that his mass plus the mass of his equipment is 78.0 kg?
Hz
(b) How much would this rope stretch (in cm) to break the climber's fall if he free-falls 2.00 m before the rope runs out of slack? Hint: Use conservation of energy.
cm
(c) Repeat both parts of this problem in the situation where twice this length of nylon rope is used.
frequency (in Hz)
stretch length (in cm)
Hz
cm
Transcribed Image Text:The length of nylon rope from which a mountain climber is suspended has a force constant of 1.50 X 104 N/m. (a) What is the frequency (in Hz) at which he bounces, given that his mass plus the mass of his equipment is 78.0 kg? Hz (b) How much would this rope stretch (in cm) to break the climber's fall if he free-falls 2.00 m before the rope runs out of slack? Hint: Use conservation of energy. cm (c) Repeat both parts of this problem in the situation where twice this length of nylon rope is used. frequency (in Hz) stretch length (in cm) Hz cm
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