(k) For sinusoidal function over one period, a root-mean-square value is the half of peak value: For v(t) = Vm sin(wt + 0), Urms = Vm (1) (m) - For a phasor notation, v = V20°, V is the rms value of waveform. The total impedance will be frequency dependent. (n) For parallel ac networks, the total impedance is the sum of reciprocal of impedance of each components: Zeq = ½ + ½ + ··· + (o) The ideal voltage source can be converted into the current source. -

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 2.7P: Let a 100V sinusoidal source be connected to a series combination of a 3 resistor, an 8 inductor,...
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Choose [T]rue or [F]alse for the following statements

k) F

l) T

m) T

n) T

o) T

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(k) For sinusoidal function over one period, a root-mean-square value is the half of
peak value: For v(t) = Vm sin(wt + 0), Urms = Vm
(1)
(m)
-
For a phasor notation, v = V20°, V is the rms value of waveform.
The total impedance will be frequency dependent.
(n) For parallel ac networks, the total impedance is the sum of reciprocal of
impedance of each components: Zeq = ½ + ½ + ··· +
(o) The ideal voltage source can be converted into the current source.
-
Transcribed Image Text:(k) For sinusoidal function over one period, a root-mean-square value is the half of peak value: For v(t) = Vm sin(wt + 0), Urms = Vm (1) (m) - For a phasor notation, v = V20°, V is the rms value of waveform. The total impedance will be frequency dependent. (n) For parallel ac networks, the total impedance is the sum of reciprocal of impedance of each components: Zeq = ½ + ½ + ··· + (o) The ideal voltage source can be converted into the current source. -
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