Find the voltage drop VR(t) across the resistor when w=8wo. Suppose that UR (t) = AR cos(wt+), where AR>0 and -180° << 180°. Determine the values of AR, w, and . Express your answers using three significant figures separated by commas. Express AR in volts, w in kiloradians per second, and in degrees.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Consider the RLC bandreject filter in (Figure 1). The quality
factor of the filter is 5, the center frequency is 20 krad/s,
C = 50 nF. The input to the filter is 60 cos wt V.
Figure
Vi
+
+ VR
R
-
L
+
Î
C
<
Vo
1 of 1 >
degrees.
AR, w, p=
Submit
Part E
AR, W, =
OF
V—| ΑΣΦ
Submit
Request Answer
Provide Feedback
↓↑ vec
Find the voltage drop VR(t) across the resistor when w=8wo. Suppose that VR (t) = AR cos(wt + o), where AR > 0 and -180° < < 180°.
Determine the values of AR, w, and p.
Express your answers using three significant figures separated by commas. Express AR in volts, w in kiloradians per second, and in
degrees.
VD| ΑΣΦΑ ↓↑ vec
Request Answer
Ċ
6
?
wwwww
V, krad/s,
0
?
V, krad/s, °
Next >
Transcribed Image Text:Consider the RLC bandreject filter in (Figure 1). The quality factor of the filter is 5, the center frequency is 20 krad/s, C = 50 nF. The input to the filter is 60 cos wt V. Figure Vi + + VR R - L + Î C < Vo 1 of 1 > degrees. AR, w, p= Submit Part E AR, W, = OF V—| ΑΣΦ Submit Request Answer Provide Feedback ↓↑ vec Find the voltage drop VR(t) across the resistor when w=8wo. Suppose that VR (t) = AR cos(wt + o), where AR > 0 and -180° < < 180°. Determine the values of AR, w, and p. Express your answers using three significant figures separated by commas. Express AR in volts, w in kiloradians per second, and in degrees. VD| ΑΣΦΑ ↓↑ vec Request Answer Ċ 6 ? wwwww V, krad/s, 0 ? V, krad/s, ° Next >
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