EBK AUTOMOTIVE TECHNOLOGY
EBK AUTOMOTIVE TECHNOLOGY
6th Edition
ISBN: 9780135257470
Author: Halderman
Publisher: VST
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Chapter 23, Problem 3CQ

A typical oil pump can pump how many gallons per minute?

  1. a. 3 to 6 gallons
  2. b. 6 to 10 gallons
  3. c. 10 to 60 gallons
  4. d. 50 to 100 gallons
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Carbon dioxide contained in a piston–cylinder device is compressed from 0.3 to 0.1 m3. During the process, the pressure and volume are related by P = aV–2, where a = 6 kPa·m6. Calculate the work done on carbon dioxide during this process.   The work done on carbon dioxide during this process is  kJ.
The volume of 1 kg of helium in a piston–cylinder device is initially 5 m3. Now helium is compressed to 3 m3 while its pressure is maintained constant at 130 kPa. Determine the initial and final temperatures of helium as well as the work required to compress it, in kJ. The gas constant of helium is R = 2.0769 kJ/kg·K.   The initial temperature of helium is  K. The final temperature of helium is  K. The work required to compress helium is  kJ.
A piston-cylinder device initially contains 0.4 kg of nitrogen gas at 160 kPa and 140°C. Nitrogen is now expanded isothermally to a pressure of 80 kPa. Determine the boundary work done during this process. The properties of nitrogen are R= 0.2968 kJ/kg-K and k= 1.4. N₂ 160 kPa 140°C The boundary work done during this process is KJ.

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