V2 R1 V1 R2 13 ↑ mm² Figure 6: A circuit R3 R4 Given the circuit in figure 6 with values R₁= 200 C, R₂ = 200, R3 = 100, R4 = 450 , C = 1mF, L = 2H, V₁(t) = 2cos (30t+10°) V, V₂ = 4V, and I3 (t) = 0.5sin (40t 50°) A. You must use phasors and superposition to solve the circuit. Answer the following questions. Please firstly redraw the circuit and label voltages/currents for each component and find using superposition the following; A) voltage over the capacitor C by evaluating voltage source V1. B) Using superposition, calculate the voltage over the capacitor C by evaluating voltage source V2. C) Using superposition, calculate the voltage over the capacitor C by evaluating voltage source 13. D) Using solutions from (a) to (c), calculate the voltage over the capacitor C when all sources are active.

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V2
R1
V1
R2
13
↑
mm²
Figure 6: A circuit
R3
R4
Given the circuit in figure 6 with values R₁= 200 C, R₂ = 200, R3 = 100, R4 = 450 , C = 1mF,
L = 2H, V₁(t) = 2cos (30t+10°) V, V₂ = 4V, and I3 (t) = 0.5sin (40t 50°) A. You must
use phasors and superposition to solve the circuit. Answer the following questions.
Please firstly redraw the circuit and label voltages/currents for each component and find using
superposition the following;
A) voltage over the capacitor C by evaluating voltage source V1.
B) Using superposition, calculate the voltage over the capacitor C by evaluating voltage source
V2.
C) Using superposition, calculate the voltage over the capacitor C by evaluating voltage source
13.
D) Using solutions from (a) to (c), calculate the voltage over the capacitor C when all sources are
active.
Transcribed Image Text:V2 R1 V1 R2 13 ↑ mm² Figure 6: A circuit R3 R4 Given the circuit in figure 6 with values R₁= 200 C, R₂ = 200, R3 = 100, R4 = 450 , C = 1mF, L = 2H, V₁(t) = 2cos (30t+10°) V, V₂ = 4V, and I3 (t) = 0.5sin (40t 50°) A. You must use phasors and superposition to solve the circuit. Answer the following questions. Please firstly redraw the circuit and label voltages/currents for each component and find using superposition the following; A) voltage over the capacitor C by evaluating voltage source V1. B) Using superposition, calculate the voltage over the capacitor C by evaluating voltage source V2. C) Using superposition, calculate the voltage over the capacitor C by evaluating voltage source 13. D) Using solutions from (a) to (c), calculate the voltage over the capacitor C when all sources are active.
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