A. What is the velocity of the gas at the 0.6096-m ID pipe? O 34.2899 ft/s O 112.5 m/s O 76.70 mi/hr O 112.5 mi/hr Other:

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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B. What is the mass flowrate of the gas, in number 2, through the 0.9144-m ID
pipe?
910.4 lb/s
404 kg/s
O 413.8 Ib/s
O 901.4 kg/s
O other:
Transcribed Image Text:B. What is the mass flowrate of the gas, in number 2, through the 0.9144-m ID pipe? 910.4 lb/s 404 kg/s O 413.8 Ib/s O 901.4 kg/s O other:
A natural gas, composed of mostly methane, flows through a 0.9144 m ID pipe at a velocity of 34.0909
mi/hr at 5.5158 MPa and 60 degree F (density of the gas at this condition is 2.576 lb/ft*3. The gas then
goes through contraction in a 0.6096-m ID pipe at 3.4474 MPa and 60 degree F.
A. What is the velocity of the gas at the 0.6096-m ID pipe?
O 34.2899 ft/s
O 112.5 m/s
O 76.70 mi/hr
O 112.5 mi/hr
Other:
Transcribed Image Text:A natural gas, composed of mostly methane, flows through a 0.9144 m ID pipe at a velocity of 34.0909 mi/hr at 5.5158 MPa and 60 degree F (density of the gas at this condition is 2.576 lb/ft*3. The gas then goes through contraction in a 0.6096-m ID pipe at 3.4474 MPa and 60 degree F. A. What is the velocity of the gas at the 0.6096-m ID pipe? O 34.2899 ft/s O 112.5 m/s O 76.70 mi/hr O 112.5 mi/hr Other:
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