The molar analysis of a gas mixture at 25°C, 90 kPa is 40% N₂, 40% CO2, and 20% O2. Step 1 ✓ Your answer is correct. Determine the analysis in terms of mass fractions.
The molar analysis of a gas mixture at 25°C, 90 kPa is 40% N₂, 40% CO2, and 20% O2. Step 1 ✓ Your answer is correct. Determine the analysis in terms of mass fractions.
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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Question
![Current Attempt in Progress
The molar analysis of a gas mixture at 25°C, 90 kPa is 40% N2, 40% CO2, and 20% O2.
Step 1
Your answer is correct.
Determine the analysis in terms of mass fractions.
mfN₂ =
SAM
15
mfco₂ =
mfo₂ =
***
0.318
0.182
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MacBook Air
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Attempts: 1 of 3 used
Question 29
mod
S](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdcf24c8b-51e7-40c3-a9e2-f96b8a4d0887%2F7a8d6ef4-5c4d-4711-92e5-73ed6314c6a8%2Fk7cx6ju_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Current Attempt in Progress
The molar analysis of a gas mixture at 25°C, 90 kPa is 40% N2, 40% CO2, and 20% O2.
Step 1
Your answer is correct.
Determine the analysis in terms of mass fractions.
mfN₂ =
SAM
15
mfco₂ =
mfo₂ =
***
0.318
0.182
tv
MacBook Air
*****
W
zoom
Attempts: 1 of 3 used
Question 29
mod
S
![Determine the partial pressure of each component, in kPa.
PN₂ =
Pco₂ =
Po₂ F
Step 3
44
V =
SAN
15
44
22
XYour answer is incorrect.
Determine the volume occupied by 30 kg of the mixture, in m³.
23.964
kPa
Save for Later
kPa
kPa
m³
JU
oftv
APX
MacBook Air
Attempts: 2 of 3 used
000
Attempts: 3 of 3 used
W zoom
Submit Answer
Question 29](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdcf24c8b-51e7-40c3-a9e2-f96b8a4d0887%2F7a8d6ef4-5c4d-4711-92e5-73ed6314c6a8%2F6vw1ts_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Determine the partial pressure of each component, in kPa.
PN₂ =
Pco₂ =
Po₂ F
Step 3
44
V =
SAN
15
44
22
XYour answer is incorrect.
Determine the volume occupied by 30 kg of the mixture, in m³.
23.964
kPa
Save for Later
kPa
kPa
m³
JU
oftv
APX
MacBook Air
Attempts: 2 of 3 used
000
Attempts: 3 of 3 used
W zoom
Submit Answer
Question 29
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