56 2 + 3.3 V 10 mA(A VAB 10) What is the value of VAB, the open-circuit voltage between terminals A and B in the –/1 circuit above?

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### Circuit Diagram Analysis

The given diagram illustrates an electrical circuit with the following components:

1. **Voltage Source**: There is a 3.3 V voltage source.
2. **Resistor**: A 56 Ω resistor is connected in series.
3. **Current Source**: A 10 mA current source is present, connected in parallel with the voltage across terminals A and B.
4. **Terminals**: Points A and B are labeled, with the open-circuit voltage \(V_{AB}\) across them.

### Diagram Explanation
- The 3.3 V voltage source provides a constant potential difference.
- The 56 Ω resistor limits the current flow in the circuit.
- The 10 mA current source ensures constant current is maintained through its branch.
- The voltage \(V_{AB}\), of interest, is the open-circuit voltage measured between terminals A and B.

### Problem Statement

**Question 10:** What is the value of \(V_{AB}\), the open-circuit voltage between terminals A and B in the circuit above?
Transcribed Image Text:### Circuit Diagram Analysis The given diagram illustrates an electrical circuit with the following components: 1. **Voltage Source**: There is a 3.3 V voltage source. 2. **Resistor**: A 56 Ω resistor is connected in series. 3. **Current Source**: A 10 mA current source is present, connected in parallel with the voltage across terminals A and B. 4. **Terminals**: Points A and B are labeled, with the open-circuit voltage \(V_{AB}\) across them. ### Diagram Explanation - The 3.3 V voltage source provides a constant potential difference. - The 56 Ω resistor limits the current flow in the circuit. - The 10 mA current source ensures constant current is maintained through its branch. - The voltage \(V_{AB}\), of interest, is the open-circuit voltage measured between terminals A and B. ### Problem Statement **Question 10:** What is the value of \(V_{AB}\), the open-circuit voltage between terminals A and B in the circuit above?
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