The next six questions pertain to the situation described below. A circuit is constructed with two capacitors and an inductor as shown. The values for the capacitors are: C1 = 112 µF and C2 = 271 µF. The inductance is L = 303 mH. At time t =0, the current through the inductor has its maximum value Ij (0) = 104 mA and it has the direction shown. C2 1) What is oo, the resonant frequency of this circuit? radians/s 2) What is Q1(t|), the charge on the capacitor C1 at time t=t 18 ms? The sign of Qj is defined to be the sameas the sign of the potential difference Vab = Va - Vp at time t = t. 3) What is Vhe(t)= Vp - Ve, the voltage across the inductor at time t = 18 ms? Note that this voltage is a signed number. V 4) What is Q1.max, the magnitude of the maximum charge on capacitor C1? C 5) At time t= t2, the magnitude of the current through the inductor has its maximum value. What are the magnitudes of Q1, the charge on capacitor C1, and VL, the voltage across the inductor at this time? a. Q1 = Qmax and VL b. Q = 0 and VL c. Q1 = Qmax d. Q = 0 and V = 0 = V max V %3D max and VL = 0 0000
The next six questions pertain to the situation described below. A circuit is constructed with two capacitors and an inductor as shown. The values for the capacitors are: C1 = 112 µF and C2 = 271 µF. The inductance is L = 303 mH. At time t =0, the current through the inductor has its maximum value Ij (0) = 104 mA and it has the direction shown. C2 1) What is oo, the resonant frequency of this circuit? radians/s 2) What is Q1(t|), the charge on the capacitor C1 at time t=t 18 ms? The sign of Qj is defined to be the sameas the sign of the potential difference Vab = Va - Vp at time t = t. 3) What is Vhe(t)= Vp - Ve, the voltage across the inductor at time t = 18 ms? Note that this voltage is a signed number. V 4) What is Q1.max, the magnitude of the maximum charge on capacitor C1? C 5) At time t= t2, the magnitude of the current through the inductor has its maximum value. What are the magnitudes of Q1, the charge on capacitor C1, and VL, the voltage across the inductor at this time? a. Q1 = Qmax and VL b. Q = 0 and VL c. Q1 = Qmax d. Q = 0 and V = 0 = V max V %3D max and VL = 0 0000
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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