Learning Goal: To calculate power in an AC circuit using time-varying voltage and current functions. Before completing this tutorial, make sure you are familiar with instantaneous power, average power, and reactive power. Part A - Calculating average and reactive power I Calculate the average (P) and reactive (Q) power for the circuit element below. Consider, v(t) = 3.5 cos(600t – 120°) V and i(t) = 2.3 cos (600t +45°) A - Enter a numerical with three significant figures. ► View Available Hint(s) Submit v(t) i(t) P= ELEMENT W Q= VAR ?

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 2.15P: Let a voltage source v(t)=4cos(t+60) be connected to an impedance Z=230. (a) Given the operating...
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Learning Goal:
To calculate power in an AC circuit using time-varying voltage and current functions.
Before completing this tutorial, make sure you are familiar with instantaneous power, average power, and reactive power.
Part A - Calculating average and reactive power I
Calculate the average (P) and reactive (Q) power for the circuit element below.
Consider, v(t) = 3.5 cos(600t – 120°) V and i(t) = 2.3 cos (600t +45°) A
Enter a numerical with three significant figures.
► View Available Hint(s)
Submit
v (1)
i(t)
P=
ELEMENT
W
Q=
VAR
?
Transcribed Image Text:Learning Goal: To calculate power in an AC circuit using time-varying voltage and current functions. Before completing this tutorial, make sure you are familiar with instantaneous power, average power, and reactive power. Part A - Calculating average and reactive power I Calculate the average (P) and reactive (Q) power for the circuit element below. Consider, v(t) = 3.5 cos(600t – 120°) V and i(t) = 2.3 cos (600t +45°) A Enter a numerical with three significant figures. ► View Available Hint(s) Submit v (1) i(t) P= ELEMENT W Q= VAR ?
Part B - Calculating power factor
Calculate the power factor for the circuit element below.
Consider, v(t) = 3.5 cos(600t – 120°) V and i(t) = 2.3 sin(600t +45°) A
Express your answer using three significant figures.
► View Available Hint(s)
pf =
Submit
Part C
ΑΣΦ
↓↑ vec
Submit
Also identify if the power factor is leading, lagging, or neither leading nor lagging.
► View Available Hint(s)
The power factor is leading.
The power factor is lagging.
The power factor is neither leading nor lagging.
?
v(t)
i(t)
ELEMENT
Transcribed Image Text:Part B - Calculating power factor Calculate the power factor for the circuit element below. Consider, v(t) = 3.5 cos(600t – 120°) V and i(t) = 2.3 sin(600t +45°) A Express your answer using three significant figures. ► View Available Hint(s) pf = Submit Part C ΑΣΦ ↓↑ vec Submit Also identify if the power factor is leading, lagging, or neither leading nor lagging. ► View Available Hint(s) The power factor is leading. The power factor is lagging. The power factor is neither leading nor lagging. ? v(t) i(t) ELEMENT
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