Note: Use values of MW, Cp, Cv, etc., from the Tables provid 1. Consider this item as ideal gas: A rigid tank containing 3 lb of gaseous mixture of nitrogen, helium and carbon dioxide, each 33.33 % by volume at 275.71 Kpaa, and 65.56 c receives 1 lb more of nitrogen with the temperature remaining at 65.56 c. For the resulting 4lb, determine (a) the gravimetric and volume analyses, (b) the pressure and (c) the ..molecular weight... Note; 2.2100=1 km For the initial mixture, determine (d) Cp, (e) Cv and, (f) R Answers: a) Answers: (b). (c)_ (e). _(d)_ _(f).
Note: Use values of MW, Cp, Cv, etc., from the Tables provid 1. Consider this item as ideal gas: A rigid tank containing 3 lb of gaseous mixture of nitrogen, helium and carbon dioxide, each 33.33 % by volume at 275.71 Kpaa, and 65.56 c receives 1 lb more of nitrogen with the temperature remaining at 65.56 c. For the resulting 4lb, determine (a) the gravimetric and volume analyses, (b) the pressure and (c) the ..molecular weight... Note; 2.2100=1 km For the initial mixture, determine (d) Cp, (e) Cv and, (f) R Answers: a) Answers: (b). (c)_ (e). _(d)_ _(f).
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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UPVOTE WILL BE GIVEN. PLEASE WRITE THE COMPLETE SOLUTIONS LEGIBLY. SHOW THE STEP-BY-STEP PROCESS WITH SHORT COMMENT/EXPLANATION. ANSWER IN 3 DECIMAL PLACES.

Transcribed Image Text:Note: Use values of MW, Cp, Cv, etc., from the Tables provid
1. Consider this item as ideal gas: A rigid tank containing
3 lb of gaseous mixture of nitrogen, helium and carbon
dioxide, each 33.33 % by volume at 275.71 Kpaa,
and 65.56 c receives 1 lb more of nitrogen with the temperature
remaining at 65.56 c. For the resulting 4lb, determine (a) the
gravimetric and volume analyses, (b) the pressure and (c) the
molecular weight.
Note; 2.2 lbm=1 km.
For the initial mixture, determine (d) Cp, (e) Cv
and, (f) R
Answers: a)
Answers: (b)_
(c)_
(e).
(f)
(d).
Gas
Nitrogen
Helium
N₂
He
Carbon CO₂
Dioxide
1-2
8
1.1
1.0
0.9
0.8
0.7
0.6
0.5
0.4
Formula
0.3
0.2
0.1
0
28
4
44
0.5
MW
1.0
Tg-1.00
1.5
T 1.10
2.0
Density
(kg/m3)
1.1648
0.1663
1.8417
X
TR 1.20
2.5
O
.
1000
X
a
T=2.00
3.0
0.189
Tg-1.50
XX X
Tg-1.30
D .9.
D
3.5 4.0
Reduced pressure Pr
Ody
1.034
5.234
4.5
0.858
auth
Legend:
x Methane
o Ethylene
A Ethane
o Propane
O-Butane
R
(Gas
constant)
Cp
kJ/(kg.K) kJ/(kg.K) kJ/(kg.K)
0.297
0.733
2.078
3.153
A Nitrogen
• Carbon dioxide
• Water
Average curve based on data on
hydrocarbons
1
5.0
Cv
5.5
0.66
■ Iso-pentane
n-Heptane
6.0
Cp/Cv=Y
1.41
1.66
6.5
1.3
7.0-
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