A 78 kg bungee jumper is initially standing at rest on a bridge. After falling a distance 15 m, then how fast is the person moving? Assume that the force of the bungee cord acting on the person can be modeled as F = 354.6s + -5.2s3, where s is how far the person has fallen.
A 78 kg bungee jumper is initially standing at rest on a bridge. After falling a distance 15 m, then how fast is the person moving? Assume that the force of the bungee cord acting on the person can be modeled as F = 354.6s + -5.2s3, where s is how far the person has fallen.
Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter4: The Laws Of Motion
Section4.4: Newton’s Second Law
Problem 4.3QQ: You push an object, initially at rest, across a frictionless floor with a constant force for a time...
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A 78 kg bungee jumper is initially standing at rest on a bridge. After falling a distance 15 m, then how fast is the person moving? Assume that the force of the bungee cord acting on the person can be modeled as F = 354.6s + -5.2s3, where s is how far the person has fallen.
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