Full Adder_Digital Logic | BPSC Tre 4.0 Computer Science MCQ

A Full Adder is a combinational digital circuit that adds three binary inputs and produces Sum and Carry outputs.latest AI tools | tech blogs and crea

Full Adder_Digital Logic

A Full Adder is a combinational digital circuit that adds three binary inputs and produces Sum and Carry outputs.

A Full Adder is a combinational digital circuit that adds three binary inputs and produces Sum and Carry outputs.

1. A Full Adder is used to add:

A. Two binary digits
B. Two binary digits and a carry
C. Three decimal digits
D. Two hexadecimal digits
Answer: B
A Full Adder adds three 1-bit inputs: A, B, and Carry-in (Cin).

2. Full Adder has:

A. Two inputs and one output
B. Two inputs and two outputs
C. Three inputs and two outputs
D. Three inputs and one output
Answer: C

3. Full Adder is a:

A. Sequential circuit
B. Memory device
C. Combinational circuit
D. Clocked circuit
Answer: C

4. Inputs of a Full Adder are:

A. A, B
B. A, B, Cout
C. A, B, Cin
D. A, Cin
Answer: C

5. Outputs of a Full Adder are:

A. Sum and Borrow
B. Difference and Carry
C. Sum and Carry
D. Carry and Overflow
Answer: C

6. If A = 0, B = 0, Cin = 1, then output is:

A. S = 0, C = 0
B. S = 1, C = 0
C. S = 0, C = 1
D. S = 1, C = 1
Answer: B

7. If A = 1, B = 1, Cin = 0, then output is:

A. S = 0, C = 0
B. S = 1, C = 0
C. S = 0, C = 1
D. S = 1, C = 1
Answer: C

8. If A = 1, B = 1, Cin = 1, then output is:

A. S = 0, C = 0
B. S = 1, C = 0
C. S = 0, C = 1
D. S = 1, C = 1
Answer: D

9. Boolean expression for SUM in Full Adder is:

A. A + B + Cin
B. A ⊕ B
C. A ⊕ B ⊕ Cin
D. AB + BC + CA
Answer: C

10. Boolean expression for CARRY output is:

A. AB
B. AB + BCin + ACin
C. A ⊕ B
D. (A + B)Cin
Answer: B
Carry = majority function of A, B, Cin.

11. Carry output is 1 when:

A. Any one input is 1
B. All inputs are 1
C. At least two inputs are 1
D. All inputs are 0
Answer: C

12. Full Adder can be implemented using:

A. One Half Adder
B. Two Half Adders and one OR gate
C. Two XOR gates only
D. NAND gates only
Answer: B

13. How many XOR gates are required to implement the SUM of a Full Adder?

A. 1
B. 2
C. 3
D. 4
Answer: B

14. Which gates are required for Carry generation?

A. XOR only
B. AND only
C. AND and OR
D. NOR only
Answer: C

15. Full Adder differs from Half Adder because Full Adder:

A. Has no carry output
B. Has carry input
C. Has one output
D. Is sequential
Answer: B

16. Half Adder is a part of:

A. Decoder
B. Encoder
C. Full Adder
D. Multiplexer
Answer: C

17. Full Adders are used in:

A. Multiplexers
B. Counters
C. Arithmetic Logic Unit (ALU)
D. Encoders
Answer: C

18. Multiple Full Adders connected together form:

A. Decoder
B. Parallel Adder
C. Register
D. Counter
Answer: B

19. Full Adder can be used for multi-bit binary addition.

A. True
B. False
Answer: A

20. Full Adder requires a clock signal.

A. True
B. False
Answer: B

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