For the electric circuit shown, find the value of the voltage work. v across the 4 k2 resistor. Show your 2 k. 60 V 4 ΚΩ 1) 24 mA 12 k2 + v 4 kQ +

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**Problem Statement:**

2. For the electric circuit shown, find the value of the voltage \( v \) across the 4 kΩ resistor. Show your work.

**Diagram Explanation:**

The circuit diagram consists of the following components arranged in a specific configuration:

- A 4 kΩ resistor is connected in parallel with a current source labeled as 24 mA.
- This parallel combination is connected in series with a 12 kΩ resistor.
- Across the 12 kΩ resistor, the voltage \( v \) is measured and marked with the polarity.
- Following the 12 kΩ resistor, there is a series connection to a 2 kΩ resistor.
- This segment then connects to a 60 V voltage source, completing the circuit.
- Another 4 kΩ resistor is connected in series from the voltage source back to the parallel branch.

**Task:**

Calculate the voltage \( v \) across the 12 kΩ resistor using the given information about the circuit.
Transcribed Image Text:**Problem Statement:** 2. For the electric circuit shown, find the value of the voltage \( v \) across the 4 kΩ resistor. Show your work. **Diagram Explanation:** The circuit diagram consists of the following components arranged in a specific configuration: - A 4 kΩ resistor is connected in parallel with a current source labeled as 24 mA. - This parallel combination is connected in series with a 12 kΩ resistor. - Across the 12 kΩ resistor, the voltage \( v \) is measured and marked with the polarity. - Following the 12 kΩ resistor, there is a series connection to a 2 kΩ resistor. - This segment then connects to a 60 V voltage source, completing the circuit. - Another 4 kΩ resistor is connected in series from the voltage source back to the parallel branch. **Task:** Calculate the voltage \( v \) across the 12 kΩ resistor using the given information about the circuit.
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