Match the corresponding formula from the right column to the description on the left. -S²₁ 1 Definition of entropy Increase of Entropy Principle Clausius inequality Reversible steady-flow work for compressor The first Tds relation The second Tds relation Reversible steady-flow work for turbine Isentropic relations for ideal gases with constant specific heats B. C. W rev, out "- W rev,in D. E. = = [² vdp. 1 du ds==+ 8Q dSZT vdP - Ake - Ape vdP + Ake+ Ape Pdv F. dS= or _&S=S₂-S₁²¸ dh vdP ds=-- T 21, ²00 = √²50 + 5₁ gen 1 or A.S=S₂-S₁= 80 (1) AS-5₁-5,- / (+) or int, rev G. a $ 250 zerzer- -1/k . and
Match the corresponding formula from the right column to the description on the left. -S²₁ 1 Definition of entropy Increase of Entropy Principle Clausius inequality Reversible steady-flow work for compressor The first Tds relation The second Tds relation Reversible steady-flow work for turbine Isentropic relations for ideal gases with constant specific heats B. C. W rev, out "- W rev,in D. E. = = [² vdp. 1 du ds==+ 8Q dSZT vdP - Ake - Ape vdP + Ake+ Ape Pdv F. dS= or _&S=S₂-S₁²¸ dh vdP ds=-- T 21, ²00 = √²50 + 5₁ gen 1 or A.S=S₂-S₁= 80 (1) AS-5₁-5,- / (+) or int, rev G. a $ 250 zerzer- -1/k . and
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
Match the corresponding formula from the right column to the description on the left.
|
![QUESTION 17
Match the corresponding formula from the right column to the description on the left.
A.
2
- S₁vd
1
Definition of entropy
Increase of Entropy Principle
✓Clausius inequality
Reversible steady-flow work for compressor
✓ The first Tds relation
The second Tds relation
Reversible steady-flow work for turbine
Isentropic relations for ideal gases with constant
specific heats
B.
C.
D.
E.
W
W
rev, out
rev.in
d$ 2
du Pdv
ds=-+
T T
==
F.
dS=
2
=5²₁
1
ds=-
8Q
T
or AS=S₁₂ S₁2
or AS=S₁-S₁ = 1²00
5-18
T
P
1
dh
T T
8Q
G. $0 / 50
H. T₂
vdP+ Ake+ Ape
vdP Ake- A pe
vdP
Int, rev
80
AS=S₂-S₁ =
$₂ - $₁ = 1,²( 1² )
2 1
V
2
1² 1² 500
V
-1
2
3-ere*.
=
P1
1
or
gen
ind, rev
k-1/k
and](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F50b7307d-f147-4c39-812e-01e48cbfa721%2F53adc546-9d08-4fe2-8ee9-0cae331651b7%2Fjjczwrq_processed.png&w=3840&q=75)
Transcribed Image Text:QUESTION 17
Match the corresponding formula from the right column to the description on the left.
A.
2
- S₁vd
1
Definition of entropy
Increase of Entropy Principle
✓Clausius inequality
Reversible steady-flow work for compressor
✓ The first Tds relation
The second Tds relation
Reversible steady-flow work for turbine
Isentropic relations for ideal gases with constant
specific heats
B.
C.
D.
E.
W
W
rev, out
rev.in
d$ 2
du Pdv
ds=-+
T T
==
F.
dS=
2
=5²₁
1
ds=-
8Q
T
or AS=S₁₂ S₁2
or AS=S₁-S₁ = 1²00
5-18
T
P
1
dh
T T
8Q
G. $0 / 50
H. T₂
vdP+ Ake+ Ape
vdP Ake- A pe
vdP
Int, rev
80
AS=S₂-S₁ =
$₂ - $₁ = 1,²( 1² )
2 1
V
2
1² 1² 500
V
-1
2
3-ere*.
=
P1
1
or
gen
ind, rev
k-1/k
and
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