2 m Water Water Im Im Gagefluid SG = 3.46 The manometer fluid in the manometer has a SG of 3.46. Pipes A and B contain H,O. If the pressure in pipe A is decreased by 1.3 bar and pressure in pipe B increases by 0.9 bar determine the new differential reading of the manometer. (Density of water (pwater) = 1000 kg/m³, 1bar = 10$ Pa)

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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3. а)
b)
air
m
2 m
Water
h2= 1.2 m
Water
h1= 0.5 m
p1=1000
kg/m3
Im
to
p2=13600
kg/m³
Im
Gagefluid
SG = 3.46
What is the mass of the body m with cross-
sectional area A=0.01 m² for the pressure at
point C to be 3 bar?
The manometer fluid in the manometer has
a SG of 3.46. Pipes A and B contain H,O.
If the pressure in pipe A is decreased by 1.3
bar and pressure in pipe B increases by 0.9
bar determine the new differential reading
of the manometer. (Density of water (pwater)
= 1000 kg/m, lbar = 10$ Pa)
%3D
Transcribed Image Text:3. а) b) air m 2 m Water h2= 1.2 m Water h1= 0.5 m p1=1000 kg/m3 Im to p2=13600 kg/m³ Im Gagefluid SG = 3.46 What is the mass of the body m with cross- sectional area A=0.01 m² for the pressure at point C to be 3 bar? The manometer fluid in the manometer has a SG of 3.46. Pipes A and B contain H,O. If the pressure in pipe A is decreased by 1.3 bar and pressure in pipe B increases by 0.9 bar determine the new differential reading of the manometer. (Density of water (pwater) = 1000 kg/m, lbar = 10$ Pa) %3D
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