18 of 20 K What are the expected voltages at points C and D of this circuit? O 12 V and 12 V O 0.01 V and 0.00 V O 6 V and 6 V O 11.99 V and 0.01 V 12 V 12 V 10,000 C OO 10 Ω D

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**Circuit Analysis Question**

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**Question 18 of 20**

What are the expected voltages at points C and D of this circuit?

**Circuit Diagram Description:**

The diagram depicts a simple electrical circuit. The circuit includes:

- A 12V battery connected in series with a resistor, which appears to be connected to a switch, followed by another 12V battery.
- After the switch, the circuit splits into two parallel branches.
- There is a 10,000-ohm resistor leading to point C, and a 10-ohm resistor leading to point D.
- The circuit ends with voltmeters measuring the voltage at points C and D.

**Options:**

- ○ 12 V and 12 V
- ○ 0.01 V and 0.00 V
- ○ 6 V and 6 V
- ○ 11.99 V and 0.01 V

Identifying the correct voltage across each point involves analyzing the potential drop across the resistors in the given configuration, considering the arrangement and total supply voltage.

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The correct option is the one which reflects the expected potential difference at points C and D based on the voltmeters' readings in relation to their respective resistances.
Transcribed Image Text:**Circuit Analysis Question** --- **Question 18 of 20** What are the expected voltages at points C and D of this circuit? **Circuit Diagram Description:** The diagram depicts a simple electrical circuit. The circuit includes: - A 12V battery connected in series with a resistor, which appears to be connected to a switch, followed by another 12V battery. - After the switch, the circuit splits into two parallel branches. - There is a 10,000-ohm resistor leading to point C, and a 10-ohm resistor leading to point D. - The circuit ends with voltmeters measuring the voltage at points C and D. **Options:** - ○ 12 V and 12 V - ○ 0.01 V and 0.00 V - ○ 6 V and 6 V - ○ 11.99 V and 0.01 V Identifying the correct voltage across each point involves analyzing the potential drop across the resistors in the given configuration, considering the arrangement and total supply voltage. --- The correct option is the one which reflects the expected potential difference at points C and D based on the voltmeters' readings in relation to their respective resistances.
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