V₁(t) + R1 www ix(t) C₁ R₂ Given the element values v₁ (t) = 18cos(210³t) V, R1 = 700 £2, R2 = 1400 and C1 = 120 nF, use frequency domain analysis to find i̟(t). Calculate the magnitude and phase in frequency domain, IT = Then calculate i(t), ix(t) = mA help (numbers) Note: use degree instead of radian mA help (formulas) Note: use radian instead of degree

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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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R1
w
ix(t)
V₁(t) +
C₁
R2
Given the element values v₁ (t) = 18cos (2π10³t) V, R1 = 700 £2, R2 = 1400 and C1 = 120 nF, use frequency domain analysis to find i̟ (t).
Calculate the magnitude and phase in frequency domain,
I =
Then calculate i(t),
ix(t) =
=
Z
mA help (numbers) Note: use degree instead of radian
mA help (formulas) Note: use radian instead of degree
Transcribed Image Text:R1 w ix(t) V₁(t) + C₁ R2 Given the element values v₁ (t) = 18cos (2π10³t) V, R1 = 700 £2, R2 = 1400 and C1 = 120 nF, use frequency domain analysis to find i̟ (t). Calculate the magnitude and phase in frequency domain, I = Then calculate i(t), ix(t) = = Z mA help (numbers) Note: use degree instead of radian mA help (formulas) Note: use radian instead of degree
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