Problem 1: For the circuit shown here determine the current, ic(t), using the following circuit is(t)) element values: is(t)=12cos(2π x 106t - 60°) mA R=50 C=3nF ic(t)=8.23cos(2π × 10ºt — 13.3°) mA - Problem 2: For the circuit shown here determine the current, is(t), using the following circuit element values: R ww is(t) R vs(t)=20cos(7x10¹t - 90°) V Ds(1) C R = 10 ΚΩ L = 10 mH C = 15 nF is(t) = 1.9cos(7 × 10¹t — 104.8°) mA HH Lic ell
Problem 1: For the circuit shown here determine the current, ic(t), using the following circuit is(t)) element values: is(t)=12cos(2π x 106t - 60°) mA R=50 C=3nF ic(t)=8.23cos(2π × 10ºt — 13.3°) mA - Problem 2: For the circuit shown here determine the current, is(t), using the following circuit element values: R ww is(t) R vs(t)=20cos(7x10¹t - 90°) V Ds(1) C R = 10 ΚΩ L = 10 mH C = 15 nF is(t) = 1.9cos(7 × 10¹t — 104.8°) mA HH Lic ell
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Transcribed Image Text:Problem 1:
For the circuit shown here determine the
current, ic(t), using the following circuit is(t))
element values:
is(t)=12cos(2π x 106t - 60°) mA
R=50
C=3nF
ic(t)=8.23cos(2π × 10ºt — 13.3°) mA
-
Problem 2:
For the circuit shown here determine the
current, is(t), using the following circuit
element values:
R
ww
is(t)
R
vs(t)=20cos(7x10¹t - 90°) V
Ds(1)
C
R = 10 ΚΩ
L = 10 mH
C = 15 nF
is(t) = 1.9cos(7 × 10¹t — 104.8°) mA
HH
Lic
ell
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