) Convert the ideal gas constant: kcal Btu R = 1.987 x 10-3, to 10-3kgmolK Ibmol°R ) A flow of mass through a sonic nozzle is a function of gas pressure and temperature. For a given pressure p and temperature T, mass flow rate through the nozzle is given by the following equation: m = pP/VT where, m is in Ib/min, p is in psia and T is in °R a) Determine the expected unit for the constantø.
) Convert the ideal gas constant: kcal Btu R = 1.987 x 10-3, to 10-3kgmolK Ibmol°R ) A flow of mass through a sonic nozzle is a function of gas pressure and temperature. For a given pressure p and temperature T, mass flow rate through the nozzle is given by the following equation: m = pP/VT where, m is in Ib/min, p is in psia and T is in °R a) Determine the expected unit for the constantø.
Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
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Transcribed Image Text:O 4G I.
11:36
Done Assignment 1 CHPE202 Fall 2021...
Note: This page should be the first page of your assignment
1) Convert the ideal gas constant:
kcal
Btu
R = 1.987 x 10-3
to
10-3kgmolK
Ibmol°R
2) A flow of mass through a sonic nozzle is a function of gas pressure and temperature.
For a given pressure p and temperature T, mass flow rate through the nozzle is given
by the following equation:
m = pP/VT
where, m is in lb/min, p is in psia and T is in °R
a) Determine the expected unit for the constantp.
b) if o is given as 0.0549, what will be the new value of the constant, if the
variables in the equation are to be substituted with SI units and m is calculated
in SI units.
3) Calcium carbonate (CaCO,) is a naturally occurring white solid used in the
manufacture of lime and cement. Calculate the number of Ibmol of calcium carbonate
in:
a) 50 g mol of CaCO.
b) 150 kg of CaCO,.
c) 100 lb of CaCO,
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