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What pressure is exerted on the bottom of a 0.500-mwide by

Physics: Principles with Applications | 6th Edition | ISBN: 9780130606204 | Authors: Douglas C. Giancoli

Problem 20PE Chapter 11

Physics: Principles with Applications | 6th Edition

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Physics: Principles with Applications | 6th Edition | ISBN: 9780130606204 | Authors: Douglas C. Giancoli

Physics: Principles with Applications | 6th Edition

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Problem 20PE

What pressure is exerted on the bottom of a 0.500-mwide by 0.900-m-long gas tank that can hold 50.0 kg of gasoline by the weight of the gasoline in it when it is full?

Step-by-Step Solution:

Step-by-step solution Step 1 of 5 It is suggested that increase the area to reduce the value of pressure for a specific force. There is an inverse relation exists between pressure and area if applied force is constant. Step 2 of 5 Pressure is defined as, …… (1) Here, is pressure, is force applied and is area perpendicular to the force. Step 3 of 5 The relation between force and mass is, Here, the mass and g is gravity.

Step 4 of 5

Chapter 11, Problem 20PE is Solved
Step 5 of 5

Textbook: Physics: Principles with Applications
Edition: 6th
Author: Douglas C. Giancoli
ISBN: 9780130606204

This textbook survival guide was created for the textbook: Physics: Principles with Applications, edition: 6th. This full solution covers the following key subjects: gasoline, hold, full, gas, bottom. This expansive textbook survival guide covers 35 chapters, and 3914 solutions. The answer to “What pressure is exerted on the bottom of a 0.500-mwide by 0.900-m-long gas tank that can hold 50.0 kg of gasoline by the weight of the gasoline in it when it is full?” is broken down into a number of easy to follow steps, and 33 words. Since the solution to 20PE from 11 chapter was answered, more than 242 students have viewed the full step-by-step answer. Physics: Principles with Applications was written by Sieva Kozinsky and is associated to the ISBN: 9780130606204. The full step-by-step solution to problem: 20PE from chapter: 11 was answered by Sieva Kozinsky, our top Physics solution expert on 03/03/17, 03:53PM.

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