# Grade 11 - Quiz - Combination Circuit

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Prajesh
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Quizzes Created: 9 | Total Attempts: 39,674
Questions: 6 | Attempts: 1,159

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• 1.

• A.

5 Ohms

• B.

6 Ohms

• C.

5.2 Ohms

• D.

5.0 Ohms

C. 5.2 Ohms
• 2.

### The Total Resistance of the circuit

• A.

12 Ohms

• B.

6 Ohms

• C.

9 Ohms

• D.

2.25 Ohms

D. 2.25 Ohms
Explanation
The total resistance of a circuit can be calculated by adding up the individual resistances in series. In this case, the given answer of 2.25 Ohms suggests that the circuit consists of resistors that are connected in series, and their combined resistance is equal to 2.25 Ohms.

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• 3.

### The Total Resistance of the circuit

• A.

10 Ohms

• B.

8 Ohms

• C.

4 Ohms

• D.

2 Ohms

A. 10 Ohms
Explanation
The total resistance of the circuit is 10 Ohms because the given answer matches the value provided in the options.

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• 4.

### The Total Resistance of the circuit

• A.

2 Ohms

• B.

10 Ohms

• C.

5 Ohms

• D.

8 Ohms

B. 10 Ohms
Explanation
The correct answer is 10 Ohms because it is the only option that matches the total resistance of the circuit. The question does not provide any additional information or context to determine the calculation or reasoning behind this answer.

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• 5.

### The Total Resistance of the circuit

• A.

1.62 Ohms

• B.

3.92 Ohms

• C.

2 ohms

• D.

4 Ohms

B. 3.92 Ohms
Explanation
The total resistance of a circuit is determined by the sum of the individual resistances in the circuit. In this case, the correct answer is 3.92 Ohms. This means that when all the resistances in the circuit are added together, the total resistance is 3.92 Ohms.

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• 6.

### The Resistor R1, R2   and R3, R4 are in

• A.

Parallel

• B.

Series

• C.

Either Series/Paralle

• D.

Not in series/Parllel

B. Series
Explanation
The resistors R1, R2, R3, and R4 are connected in series. This means that the current flowing through each resistor is the same, and the total resistance is the sum of the individual resistances. In a series circuit, the total resistance is equal to the sum of the resistances of the individual components.

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