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Get Full Access to Fluid Mechanics - 2 Edition - Chapter 2 - Problem 102p
Get Full Access to Fluid Mechanics - 2 Edition - Chapter 2 - Problem 102p

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# A rigid tank contains an ideal gas at 300 kPa and 600 K. ISBN: 9780071284219 39

## Solution for problem 102P Chapter 2

Fluid Mechanics | 2nd Edition

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Problem 102P

Problem 102P

A rigid tank contains an ideal gas at 300 kPa and 600 K. Half of the gas is withdrawn from the lank and the gas is at 100 kPa at the end of the process. Determine (a) the final temperature of the gas and (b) the final pressure if no mass were withdrawn from the tank and the same final temperature were reached at the end of the process.

Step-by-Step Solution:

Part (a)

Step 1:

A rigid tank contains an ideal gas at initial pressure and half of the gas is withdrawn from the lank and the gas at the end of the process.

Initial pressure of the ideal gas P1 = 300 kPa

Initial temperature of the gas T1 = 600 K

Final pressure after withdrawing half of the gas P2 = 100 kPa

Step 2 of 3

Step 3 of 3

##### ISBN: 9780071284219

Since the solution to 102P from 2 chapter was answered, more than 797 students have viewed the full step-by-step answer. The full step-by-step solution to problem: 102P from chapter: 2 was answered by , our top Engineering and Tech solution expert on 07/03/17, 04:51AM. Fluid Mechanics was written by and is associated to the ISBN: 9780071284219. The answer to “A rigid tank contains an ideal gas at 300 kPa and 600 K. Half of the gas is withdrawn from the lank and the gas is at 100 kPa at the end of the process. Determine (a) the final temperature of the gas and (b) the final pressure if no mass were withdrawn from the tank and the same final temperature were reached at the end of the process.” is broken down into a number of easy to follow steps, and 69 words. This textbook survival guide was created for the textbook: Fluid Mechanics, edition: 2. This full solution covers the following key subjects: gas, final, withdrawn, were, end. This expansive textbook survival guide covers 15 chapters, and 1547 solutions.

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