50μF, In the circuit shown, the component values are: C₁ = C₂ =100μF, L = 1.6mH, and R₂ = 1202. The current and voltage sources produce I₁ (t) =10cos(2500t) A, V2(t)=9cos(2500t+90°) V. Write the phasor form of the inductor current in Cartesian form as I₁ = X + jY. Provide the value of X in Amps (A). Cz C₁ R₂ 11 L V₂

Delmar's Standard Textbook Of Electricity
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Chapter24: Resistive-inductive-capacitive Parallel Circuits
Section: Chapter Questions
Problem 1RQ: An AC circuit contains a 24 resistor, a 15.9-mH inductor, and a 13.3F capacitor connected in...
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50μF,
In the circuit shown, the component values are: C₁ =
C₂ =100μF, L = 1.6mH, and R₂ = 1202. The current
and voltage sources produce
I₁ (t) =10cos(2500t) A,
V2(t)=9cos(2500t+90°) V.
Write the phasor form of the inductor current in Cartesian
form as I₁ = X + jY. Provide the value of X in Amps (A).
Cz
C₁
R₂
11
L
V₂
Transcribed Image Text:50μF, In the circuit shown, the component values are: C₁ = C₂ =100μF, L = 1.6mH, and R₂ = 1202. The current and voltage sources produce I₁ (t) =10cos(2500t) A, V2(t)=9cos(2500t+90°) V. Write the phasor form of the inductor current in Cartesian form as I₁ = X + jY. Provide the value of X in Amps (A). Cz C₁ R₂ 11 L V₂
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