# Applications and ExamplesPath of a water skier Suppose ## Problem 58E Chapter 8.4

Thomas' Calculus: Early Transcendentals | 13th Edition

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Problem 58E

Applications and Examples

Path of a water skier Suppose that a boat is positioned at the origin with a water skier tethered to the boat at the point (30, 0) on a rope 30 ft long. As the boat travels along the positive y-axis, the skier is pulled behind the boat along an unknown path y = f(x), as shown in the accompanying figure.

a. Show that (Hint: Assume that the skier is always pointed directly at the boat

and the rope is on a line tangent to the path y = f(x))

b. Solve the equation in part (a) for f(x) using f(30)= 0 Step-by-Step Solution:
Step 1 of 3
Step 2 of 3

Step 3 of 3

##### ISBN: 9780321884077

This full solution covers the following key subjects: boat, skier, path, rope, along. This expansive textbook survival guide covers 138 chapters, and 9198 solutions. Since the solution to 58E from 8.4 chapter was answered, more than 236 students have viewed the full step-by-step answer. The answer to “Applications and ExamplesPath of a water skier Suppose that a boat is positioned at the origin with a water skier tethered to the boat at the point (30, 0) on a rope 30 ft long. As the boat travels along the positive y-axis, the skier is pulled behind the boat along an unknown path y = f(x), as shown in the accompanying figure.a. Show that (Hint: Assume that the skier is always pointed directly at the boatand the rope is on a line tangent to the path y = f(x))b. Solve the equation in part (a) for f(x) using f(30)= 0” is broken down into a number of easy to follow steps, and 101 words. Thomas' Calculus: Early Transcendentals was written by and is associated to the ISBN: 9780321884077. This textbook survival guide was created for the textbook: Thomas' Calculus: Early Transcendentals , edition: 13th. The full step-by-step solution to problem: 58E from chapter: 8.4 was answered by , our top Calculus solution expert on 08/01/17, 02:37PM.

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Applications and ExamplesPath of a water skier Suppose

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