This time, V = 88.6 V; R1 = 106 Ohms; R2 = 86 Ohms; R3 = 121 Ohms; R4 = 167 Ohms; R5 = 123 Ohms; and R6 = 88 Ohms. How much power flows through resistor R5? O 0.705 W O 1.233 W O 0.353 W O 0.881 W

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This is a schematic of an electrical circuit.

1. **Voltage Source (V)**: On the left, there's a symbol for a voltage source providing electrical energy to the circuit.

2. **Resistors**:
   - **R1**: Positioned horizontally at the top connected in series with the voltage source.
   - **R2**: Positioned at the bottom horizontally in series with R1.
   - **R3**: Positioned vertically, connecting the path after R2, creating a branch.
   - **R4, R5, R6**: Three resistors create a parallel sub-circuit. R4 is in the top branch, and R5 and R6 are in series with each other in the lower branch, and this whole pair is parallel to R4.

### Circuit Explanation:
- The circuit begins at the voltage source and electricity flows through R1 and R2, both of which are in series.
- The circuit then encounters a branch featuring R3. After R3, the circuit divides into two parallel paths.
- In the top parallel path, the current passes through R4.
- In the bottom path, the current passes through both R5 and R6 in series.
- The circuit paths then converge, completing the circuit back to the voltage source.

### Educational Focus:
- This type of circuit illustrates both series and parallel configurations.
- It demonstrates how current divides across branches and how equivalent resistance can be calculated for mixed configurations.
Transcribed Image Text:This is a schematic of an electrical circuit. 1. **Voltage Source (V)**: On the left, there's a symbol for a voltage source providing electrical energy to the circuit. 2. **Resistors**: - **R1**: Positioned horizontally at the top connected in series with the voltage source. - **R2**: Positioned at the bottom horizontally in series with R1. - **R3**: Positioned vertically, connecting the path after R2, creating a branch. - **R4, R5, R6**: Three resistors create a parallel sub-circuit. R4 is in the top branch, and R5 and R6 are in series with each other in the lower branch, and this whole pair is parallel to R4. ### Circuit Explanation: - The circuit begins at the voltage source and electricity flows through R1 and R2, both of which are in series. - The circuit then encounters a branch featuring R3. After R3, the circuit divides into two parallel paths. - In the top parallel path, the current passes through R4. - In the bottom path, the current passes through both R5 and R6 in series. - The circuit paths then converge, completing the circuit back to the voltage source. ### Educational Focus: - This type of circuit illustrates both series and parallel configurations. - It demonstrates how current divides across branches and how equivalent resistance can be calculated for mixed configurations.
**Question:**

Given the following values in a circuit:
- Voltage \( V = 88.6 \) V
- Resistance \( R1 = 106 \) Ohms
- Resistance \( R2 = 86 \) Ohms
- Resistance \( R3 = 121 \) Ohms
- Resistance \( R4 = 167 \) Ohms
- Resistance \( R5 = 123 \) Ohms
- Resistance \( R6 = 88 \) Ohms

Calculate the power flowing through resistor \( R5 \).

**Options:**

- \( 0.705 \) W
- \( 1.233 \) W
- \( 0.353 \) W
- \( 0.881 \) W
Transcribed Image Text:**Question:** Given the following values in a circuit: - Voltage \( V = 88.6 \) V - Resistance \( R1 = 106 \) Ohms - Resistance \( R2 = 86 \) Ohms - Resistance \( R3 = 121 \) Ohms - Resistance \( R4 = 167 \) Ohms - Resistance \( R5 = 123 \) Ohms - Resistance \( R6 = 88 \) Ohms Calculate the power flowing through resistor \( R5 \). **Options:** - \( 0.705 \) W - \( 1.233 \) W - \( 0.353 \) W - \( 0.881 \) W
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