Problem #2 Zn the Circuit Shown below if Ve = 8 145, Calculate Ÿs ' -jz sz I, 22 R, V Vs V.

Introductory Circuit Analysis (13th Edition)
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**Problem #2**

In the circuit shown below, if \( \underline{V}_c = 8 \angle 45^\circ \), calculate \( \underline{V}_s \).

**Circuit Diagram:**

- The circuit includes the following components:
  - Voltage source \( V_s \).
  - Resistor \( R_1 \) with resistance \( 2 \, \Omega \).
  - Inductor with impedance \( j2 \, \Omega \).
  - Capacitor with impedance \( -j2 \, \Omega \).
  - Resistor with resistance \( 2 \, \Omega \).

- Current directions:
  - \( I_1 \) flows through resistor \( R_1 \).
  - \( I_2 \) flows through the inductor.
  - \( I_3 \) flows through the capacitor.

- The output voltage is denoted as \( V_o \).

**Given:**

\( \underline{V}_c = 8 \angle 45^\circ \).

**Task:**

Calculate the voltage \( \underline{V}_s \).
Transcribed Image Text:**Problem #2** In the circuit shown below, if \( \underline{V}_c = 8 \angle 45^\circ \), calculate \( \underline{V}_s \). **Circuit Diagram:** - The circuit includes the following components: - Voltage source \( V_s \). - Resistor \( R_1 \) with resistance \( 2 \, \Omega \). - Inductor with impedance \( j2 \, \Omega \). - Capacitor with impedance \( -j2 \, \Omega \). - Resistor with resistance \( 2 \, \Omega \). - Current directions: - \( I_1 \) flows through resistor \( R_1 \). - \( I_2 \) flows through the inductor. - \( I_3 \) flows through the capacitor. - The output voltage is denoted as \( V_o \). **Given:** \( \underline{V}_c = 8 \angle 45^\circ \). **Task:** Calculate the voltage \( \underline{V}_s \).
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