In the figure below, calculate the output voltage Vout, and the phase angle 8 with V₁ at 300 KHz. VIN 200 mvp.p for all frequencies R1 = 10 ΚΩ www L = 15 mH O Output O

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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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**Problem Statement:**

In the figure below, calculate the output voltage \( V_{\text{out}} \) and the phase angle \( \theta \) with \( V_{\text{IN}} \) at 300 KHz.

**Circuit Description:**

- A sinusoidal input voltage \( V_{\text{IN}} = 200 \text{ mV}_{P-P} \) for all frequencies is applied.
- The circuit consists of a resistor \( R1 = 10 \, \text{k}\Omega \) in series with an inductor \( L = 15 \, \text{mH} \).
- The output is taken across the inductor.

**Objective:**

Calculate the output voltage \( V_{\text{out}} \) and the phase angle \( \theta \) at a frequency of 300 KHz.
Transcribed Image Text:**Problem Statement:** In the figure below, calculate the output voltage \( V_{\text{out}} \) and the phase angle \( \theta \) with \( V_{\text{IN}} \) at 300 KHz. **Circuit Description:** - A sinusoidal input voltage \( V_{\text{IN}} = 200 \text{ mV}_{P-P} \) for all frequencies is applied. - The circuit consists of a resistor \( R1 = 10 \, \text{k}\Omega \) in series with an inductor \( L = 15 \, \text{mH} \). - The output is taken across the inductor. **Objective:** Calculate the output voltage \( V_{\text{out}} \) and the phase angle \( \theta \) at a frequency of 300 KHz.
Expert Solution
Step 1: Summarize the given details

Given data

V subscript I N end subscript equals 200 space text mv end text subscript p minus p end subscript

R subscript 1 equals 10 space text kΩ end text

L equals 15 space text mH end text

f equals 300 space text kHz end text

To find

  • Output voltage V subscript o u t end subscript,
  • Phase angle theta,
steps

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