a. 15891.04 rad/sec O b. 16110.01 rad/sec O c. 96711.80 rad/sec O d. 0.50 rad/sec Find the Zab- O a. 0.00 2 O b. 348.16 O c. 9.40 N O d. 0.00 2 Find the steady-state expression for i, at the frequency found in Question1 if vg=100 cos(wt) V. O a. 10.64 cos(wt) A O b. 0.28 cos(wt) A O c. 10.64 cos(wt+90°) A O d. 0.28 cos(wt+90°) A

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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a. 15891.04 rad/sec
O b. 16110.01 rad/sec
O c. 96711.80 rad/sec
O d. 0.50 rad/sec
Find the Zab-
O a. 0.00 2
O b. 348.16
O c. 9.40 N
O d. 0.00 2
Find the steady-state expression for i, at the frequency found in Question1 if vg=100 cos(wt) V.
O a. 10.64 cos(wt) A
O b. 0.28 cos(wt) A
O c. 10.64 cos(wt+90°) A
O d. 0.28 cos(wt+90°) A
Transcribed Image Text:a. 15891.04 rad/sec O b. 16110.01 rad/sec O c. 96711.80 rad/sec O d. 0.50 rad/sec Find the Zab- O a. 0.00 2 O b. 348.16 O c. 9.40 N O d. 0.00 2 Find the steady-state expression for i, at the frequency found in Question1 if vg=100 cos(wt) V. O a. 10.64 cos(wt) A O b. 0.28 cos(wt) A O c. 10.64 cos(wt+90°) A O d. 0.28 cos(wt+90°) A
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