The fuel-cost functions in S/h for two 800 MW thermal plants are given by C1-400-6P1-0.004(P1 P11, C2-500-a*P2-b (P2 P2). The incremental cost of power A is $7/MWh when the total power demand is 800 MW. Neglecting losses. Pt and P2 are: Select one: Ⓒa. P1= 700 MW. P2= 100 MW b. P1= 100 MW. P2= 700 MW c. P1= 125 MW. P2= 675 MW d. P1=675 MW. P2= 125 MW

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter2: Fundamentals
Section: Chapter Questions
Problem 2.31P: Consider two interconnected voltage sources connected by a line of impedance Z=jX, as shown in...
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The fuel-cost functions in S/h for two 800 MW thermal plants are given by C1-400-6P1-0.004(P1 P11, C2-500 a*P2-b*
(P2 P2). The incremental cost of power A is $7/MWh, when the total power demand is 800 MW. Neglecting losses. Pt and
P2 are:
Select one:
Ⓒa. P1= 700 MW. P2= 100 MW
b. P1= 100 MW. P2= 700 MW
c. P1= 125 MW. P2= 675 MW
d. P1= 675 MW. P2= 125 MW
CAP
Transcribed Image Text:The fuel-cost functions in S/h for two 800 MW thermal plants are given by C1-400-6P1-0.004(P1 P11, C2-500 a*P2-b* (P2 P2). The incremental cost of power A is $7/MWh, when the total power demand is 800 MW. Neglecting losses. Pt and P2 are: Select one: Ⓒa. P1= 700 MW. P2= 100 MW b. P1= 100 MW. P2= 700 MW c. P1= 125 MW. P2= 675 MW d. P1= 675 MW. P2= 125 MW CAP
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