a) Determine the Thevenin and Norton Equivalents of the circuit. b) How much power is dissipated by a 10Ω resistor connected to terminal ab?

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a) Determine the Thevenin and Norton Equivalents of the circuit.
b) How much power is dissipated by a 10Ω resistor connected to terminal ab?

The image shows an electrical circuit with the following components and layout:

- A 500 Ω resistor is connected in series on the left side of the circuit.
- A current labeled as \(i_x\) is flowing downward through the 500 Ω resistor.
- A dependent voltage source is connected to the branch with a voltage value of \(2i_x\). The positive terminal is connected at the top.
- A 700 mA current source is connected in parallel to the above branch, flowing downwards.
- A 1.5 kΩ (1500 Ω) resistor is positioned to the right of the current source, also in parallel.
- A 2500 Ω resistor is connected at the bottom in series with the other components.

The circuit forms a loop where node \(a\) is at the top right and node \(b\) is at the bottom right. The image represents a mix of series and parallel components with both independent and dependent sources.
Transcribed Image Text:The image shows an electrical circuit with the following components and layout: - A 500 Ω resistor is connected in series on the left side of the circuit. - A current labeled as \(i_x\) is flowing downward through the 500 Ω resistor. - A dependent voltage source is connected to the branch with a voltage value of \(2i_x\). The positive terminal is connected at the top. - A 700 mA current source is connected in parallel to the above branch, flowing downwards. - A 1.5 kΩ (1500 Ω) resistor is positioned to the right of the current source, also in parallel. - A 2500 Ω resistor is connected at the bottom in series with the other components. The circuit forms a loop where node \(a\) is at the top right and node \(b\) is at the bottom right. The image represents a mix of series and parallel components with both independent and dependent sources.
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According to question, we need to find thevenin and norton equivalent circuit and power dissipation by 10 ohm resistor.

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