In the given circuit, Ix = 0.0003v A. IV ao 10 k2 20 k2 I bo Determine the power dissipated by 4.7 kN connected between the terminals a and b. (You must provide an answer before moving to the next part.) The power dissipated by the 4.7 kQ resistor connected between terminals a and bis µW.

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## Circuit Analysis Problem

### Problem Statement
This is a multi-part question. Once an answer is submitted, you will be unable to return to this part.

In the given circuit, \( I_x = 0.0003v_1 \) A.

### Circuit Description
- **Voltage Source:** 1 V connected at the top.
- **Resistors:**
  - 10 kΩ (left side, labeled between points \( a \) and \( b \))
  - 20 kΩ (right side, connected in series with the diamond-shaped source)
- **Controlled Source:** A current source, represented by a diamond shape, labeled as \( I_x \).

### Objective
Determine the power dissipated by a 4.7 kΩ resistor connected between the terminals \( a \) and \( b \).

### Calculation
- Power dissipation formula: \( P = I^2 R \) or \( P = V^2 / R \)
- Calculate the power dissipated by the 4.7 kΩ resistor in microwatts (µW).

The power dissipated by the 4.7 kΩ resistor connected between terminals \( a \) and \( b \) is \_\_\_\_ µW.

---

This content is intended to provide practice with circuit analysis and understanding of power dissipation in resistors using Ohm’s and Kirchhoff’s laws.
Transcribed Image Text:## Circuit Analysis Problem ### Problem Statement This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. In the given circuit, \( I_x = 0.0003v_1 \) A. ### Circuit Description - **Voltage Source:** 1 V connected at the top. - **Resistors:** - 10 kΩ (left side, labeled between points \( a \) and \( b \)) - 20 kΩ (right side, connected in series with the diamond-shaped source) - **Controlled Source:** A current source, represented by a diamond shape, labeled as \( I_x \). ### Objective Determine the power dissipated by a 4.7 kΩ resistor connected between the terminals \( a \) and \( b \). ### Calculation - Power dissipation formula: \( P = I^2 R \) or \( P = V^2 / R \) - Calculate the power dissipated by the 4.7 kΩ resistor in microwatts (µW). The power dissipated by the 4.7 kΩ resistor connected between terminals \( a \) and \( b \) is \_\_\_\_ µW. --- This content is intended to provide practice with circuit analysis and understanding of power dissipation in resistors using Ohm’s and Kirchhoff’s laws.
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