Consider the circuit given below. 10 Ω 5 A(1 4Ω 17 Q If V= 2 V, obtain a numerical value for the mesh current i3 in the circuit and calculate the power dissipated by the 1-Q resistor using supermesh technique. The value for the mesh current iz is |A. The value of the power supplied by the 1-0 resistor is W.

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Consider the circuit given below.

[Diagram of an electrical circuit consisting of resistors and a current source]

- The circuit includes:
  - A 10 Ω resistor
  - A 5 Ω resistor
  - A 1 Ω resistor
  - A 4 Ω resistor
  - A 17 Ω resistor
  - A 5 A current source
  - A voltage source labeled V

The currents are labeled as:
- \( i_1 \)
- \( i_2 \)
- \( i_3 \)

Arrows indicate the direction of each mesh current.

**Task:**
If \( V = 2 \, \text{V} \), obtain a numerical value for the mesh current \( i_3 \) in the circuit and calculate the power dissipated by the 1-Ω resistor using the supermesh technique.

- The value for the mesh current \( i_3 \) is \_\_\_\_\_ A.
- The value of the power supplied by the 1-Ω resistor is \_\_\_\_\_ W.
Transcribed Image Text:Consider the circuit given below. [Diagram of an electrical circuit consisting of resistors and a current source] - The circuit includes: - A 10 Ω resistor - A 5 Ω resistor - A 1 Ω resistor - A 4 Ω resistor - A 17 Ω resistor - A 5 A current source - A voltage source labeled V The currents are labeled as: - \( i_1 \) - \( i_2 \) - \( i_3 \) Arrows indicate the direction of each mesh current. **Task:** If \( V = 2 \, \text{V} \), obtain a numerical value for the mesh current \( i_3 \) in the circuit and calculate the power dissipated by the 1-Ω resistor using the supermesh technique. - The value for the mesh current \( i_3 \) is \_\_\_\_\_ A. - The value of the power supplied by the 1-Ω resistor is \_\_\_\_\_ W.
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