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# A hockey stick is in contact with a 165-g puck for 22.4 ms; during this time, the force

ISBN: 9780134202709 403

## Solution for problem 69 Chapter 4

Essential University Physics | 3rd Edition

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Problem 69

A hockey stick is in contact with a 165-g puck for 22.4 ms; during this time, the force on the puck is given approximately by F1t2 = a + bt + ct2 , where a = -25.0 N, b = 1.25*105 N/s, and c = -5.58*106 N/s2 . Determine (a) the speed of the puck after it leaves the stick and (b) how far the puck travels while its in contact with the stick.

Step-by-Step Solution:
Step 1 of 3

Notes 10/3 Solar Nebular Hypothesis Planets form out of the same cloud of gas and dust as the sun; simultaneously 1. Slowly spinning cloud of gas and dust begins to collapse a. We do not know what caused collapse—possibly a shockwave 2. As it collapses, a. Density of the cloud increases (m/v=d) b. Temperature of the cloud increases (energy...

Step 2 of 3

Step 3 of 3

##### ISBN: 9780134202709

The full step-by-step solution to problem: 69 from chapter: 4 was answered by , our top Physics solution expert on 03/14/18, 04:50PM. This full solution covers the following key subjects: . This expansive textbook survival guide covers 38 chapters, and 3042 solutions. Since the solution to 69 from 4 chapter was answered, more than 470 students have viewed the full step-by-step answer. Essential University Physics was written by and is associated to the ISBN: 9780134202709. The answer to “A hockey stick is in contact with a 165-g puck for 22.4 ms; during this time, the force on the puck is given approximately by F1t2 = a + bt + ct2 , where a = -25.0 N, b = 1.25*105 N/s, and c = -5.58*106 N/s2 . Determine (a) the speed of the puck after it leaves the stick and (b) how far the puck travels while its in contact with the stick.” is broken down into a number of easy to follow steps, and 74 words. This textbook survival guide was created for the textbook: Essential University Physics, edition: 3.

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A hockey stick is in contact with a 165-g puck for 22.4 ms; during this time, the force

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