+ www R1=2_R2 R2=4_2 VI-IV 시 ± V2=3V

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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what is the current in R2

The image presents a simple electrical circuit diagram featuring two voltage sources and two resistors in series. 

**Components:**
- **Voltage Source V1:** Provides 1 Volt (V).
- **Resistor R1:** Has a resistance of 2 Ohms (Ω).
- **Resistor R2:** Has a resistance of 4 Ohms (Ω).
- **Voltage Source V2:** Provides 3 Volts (V).

**Circuit Details:**
- The components are arranged in a closed loop with V1 and V2 placed on opposite sides of the resistors.
- The circuit begins at V1, passes through R1, then through R2, and finally completes the loop at V2.
- The resistors are connected in series, meaning the total resistance in the circuit is the sum of R1 and R2, which is \(2 \, Ω + 4 \, Ω = 6 \, Ω\).
  
This setup can be used to study series circuits, Ohm’s Law, and the effects of multiple voltage sources within a circuit.
Transcribed Image Text:The image presents a simple electrical circuit diagram featuring two voltage sources and two resistors in series. **Components:** - **Voltage Source V1:** Provides 1 Volt (V). - **Resistor R1:** Has a resistance of 2 Ohms (Ω). - **Resistor R2:** Has a resistance of 4 Ohms (Ω). - **Voltage Source V2:** Provides 3 Volts (V). **Circuit Details:** - The components are arranged in a closed loop with V1 and V2 placed on opposite sides of the resistors. - The circuit begins at V1, passes through R1, then through R2, and finally completes the loop at V2. - The resistors are connected in series, meaning the total resistance in the circuit is the sum of R1 and R2, which is \(2 \, Ω + 4 \, Ω = 6 \, Ω\). This setup can be used to study series circuits, Ohm’s Law, and the effects of multiple voltage sources within a circuit.
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