4.2 Use the node-voltage method to find v in the circuit shown. 60 20 42 4.5 A 10 120 O) 30 V

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**Section 4.3 The Node-Voltage Method and Dependent Sources**

**Page 95**

**Exercise 4.2:** Use the node-voltage method to find \( v \) in the circuit shown.

**Circuit Description:**

- The circuit contains several components arranged in series and parallel.
- There is a 4.5 A current source connected to a 1 Ω resistor.
- Following this, a series connection includes two resistors labeled as 6 Ω and 2 Ω.
- Parallel to this, connected at the same node, is a series circuit consisting of a 4 Ω resistor and a 12 Ω resistor.
- This series circuit is followed by a 30 V voltage source.

**Task:** Apply the node-voltage method to determine the voltage \( v \) at the specified node.

This exercise illustrates how to use the node-voltage method for analyzing circuits with multiple resistors and sources.
Transcribed Image Text:**Section 4.3 The Node-Voltage Method and Dependent Sources** **Page 95** **Exercise 4.2:** Use the node-voltage method to find \( v \) in the circuit shown. **Circuit Description:** - The circuit contains several components arranged in series and parallel. - There is a 4.5 A current source connected to a 1 Ω resistor. - Following this, a series connection includes two resistors labeled as 6 Ω and 2 Ω. - Parallel to this, connected at the same node, is a series circuit consisting of a 4 Ω resistor and a 12 Ω resistor. - This series circuit is followed by a 30 V voltage source. **Task:** Apply the node-voltage method to determine the voltage \( v \) at the specified node. This exercise illustrates how to use the node-voltage method for analyzing circuits with multiple resistors and sources.
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