Physics for Scientists and Engineers with Modern Physics
Physics for Scientists and Engineers with Modern Physics
10th Edition
ISBN: 9781337671729
Author: SERWAY
Publisher: Cengage
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Chapter 18, Problem 21P

(a)

To determine

The number of moles of an ideal gas.

(b)

To determine

The mass of one cubic meter of air.

(c)

To determine

To explain: The way in which the mass of one cubic meter of air can be compared with the tabulated density of the air at 20.0°C .

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Students have asked these similar questions
(a) Find the number of moles in one cubic meter of an ideal gas at 20.0°C and atmospheric pressure. (b) For air, Avogadro’s number of molecules has mass 28.9 g. Calculate the mass of one cubic meter of air. (c) State how this result compares with the tabulated density of air at 20.0°C.
(a) Find the number of moles in one cubic meter of an ideal gas at 20.0˚C and atmospheric pressure. (b) For air, Avogadro's number of molecules has mass 28.9g. Calculate the mass of one cubic meter of air. (c) State how this result compares with the tabulated density of air at 20.0˚C
a) Calculate the volume in ft of one Ib-mole of air (MW = 29 lbm/lb-mole) at a temperature of 492 R at a pressure of 1 atm (absolute). b) Repeat the calculation of a) but now considering 1 Ib-mole of CO2 (MW= 44 lbmlb-mole). c) Calculate the molar volume (V) of this mole of air in ft'/lb-mole. d) Calculate the density (P) of air in Ibm/ft under these conditions e) Calculate the density (p) of CO, in Ib.m/ft under these conditions

Chapter 18 Solutions

Physics for Scientists and Engineers with Modern Physics

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