Select one correct answer from the statements below. Assume T₁ and T₁ as the absolute temperatures of the high and low temperature energy reservoirs, respectively. i) COP, - ii) COP E 1 T/T, -1 a. reversible. b. irreversible. c. reversible and irreversible cycles. is applicable for 1-0,/9n is applicable for a. reversible. b. irreversible. c. reversible and irreversible cycles. Qu Tu is applicable for Q. T a. reversible. b. irreversible. e. reversible and irreversible cycles. a. True. b. False. iv) If COP and COPurses are the coefficient of performances of actual and reversible heat pumps operating between the same temperature limits, the relationship COP COP is

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Select one correct answer from the statements below. Assume Tu and TL as the absolute
temperatures of the high and low temperature energy reservoirs, respectively.
i) COP =
ii) COP
iii)
1
T/T, -1
a. reversible.
b. irreversible.
c. reversible and irreversible cycles.
1
1-0₁/0
is applicable for
is applicable for
a. reversible.
b. irreversible.
c. reversible and irreversible cycles.
On is applicable for
9. T,
a. reversible.
b. irreversible.
c. reversible and irreversible cycles.
a. True.
b. False.
iv) If COP and COPurses are the coefficient of performances of actual and reversible
heat pumps operating between the same temperature limits, the relationship
COP COP is
Transcribed Image Text:Select one correct answer from the statements below. Assume Tu and TL as the absolute temperatures of the high and low temperature energy reservoirs, respectively. i) COP = ii) COP iii) 1 T/T, -1 a. reversible. b. irreversible. c. reversible and irreversible cycles. 1 1-0₁/0 is applicable for is applicable for a. reversible. b. irreversible. c. reversible and irreversible cycles. On is applicable for 9. T, a. reversible. b. irreversible. c. reversible and irreversible cycles. a. True. b. False. iv) If COP and COPurses are the coefficient of performances of actual and reversible heat pumps operating between the same temperature limits, the relationship COP COP is
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