10.52 The value of the parameters in the circuit shown in Fig. P10.52 are L₁ = 4 mH; L₂ = 1 mH; k = 0.75; Rg = 20; and RL 14 2. If vg = 54√2 cos 1000t V, find a) the rms magnitude of vo b) the average power delivered to R₁; c) the percentage of the average power generated by the ideal voltage source that is delivered to R₁. Figure P10.52 Rg L₂3 = L₁ RL
10.52 The value of the parameters in the circuit shown in Fig. P10.52 are L₁ = 4 mH; L₂ = 1 mH; k = 0.75; Rg = 20; and RL 14 2. If vg = 54√2 cos 1000t V, find a) the rms magnitude of vo b) the average power delivered to R₁; c) the percentage of the average power generated by the ideal voltage source that is delivered to R₁. Figure P10.52 Rg L₂3 = L₁ RL
Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Transcribed Image Text:10.52 The value of the parameters in the circuit shown
in Fig. P10.52 are L₁ = 4 mH; L₂ = 1 mH;
k = 0.75; Rg = 20; and RL 140. If
v₂ = 54√2 cos 1000t V, find
a) the rms magnitude of vo;
b) the average power delivered to RL;
c) the percentage of the average power generated
by the ideal voltage source that is delivered to RL.
Figure P10.52
Vg
+
Rg
ww
=
L₁
VRL
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