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When an input electrical signal A = 10100 is applied to a NOT gate, its output signal  is :
  • a)
    10100
  • b)
    10101
  • c)
    01011
  • d)
    00101
Correct answer is option 'C'. Can you explain this answer?
Verified Answer
When an input electrical signal A = 10100 is applied to a NOT gate, it...
NOT gate implies output  where A is the input.
The correct answer is: 01011
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Most Upvoted Answer
When an input electrical signal A = 10100 is applied to a NOT gate, it...
Understanding NOT Gate Functionality
A NOT gate, also known as an inverter, is a fundamental digital logic gate that outputs the opposite value of its input. The operation is straightforward: if the input is 0, the output is 1, and if the input is 1, the output is 0.

Input Signal Analysis
The given input signal is A = 10100. This input is a binary number with five bits. To determine the output of the NOT gate, we will analyze each bit of the input.

Bit-by-Bit Conversion
- The first bit (1) becomes 0.
- The second bit (0) becomes 1.
- The third bit (1) becomes 0.
- The fourth bit (0) becomes 1.
- The fifth bit (0) becomes 1.

Output Signal Formation
Now, let's compile the converted bits into a new binary number:
- First bit: 0
- Second bit: 1
- Third bit: 0
- Fourth bit: 1
- Fifth bit: 1
Thus, the output of the NOT gate when A = 10100 is:

Final Output: 01011

Conclusion
Therefore, when the input electrical signal A = 10100 is applied to a NOT gate, the output signal is indeed 01011. This matches with option 'C', confirming that the output of the NOT gate effectively inverts each bit of the input signal.
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When an input electrical signal A = 10100 is applied to a NOT gate, its output signalis :a)10100b)10101c)01011d)00101Correct answer is option 'C'. Can you explain this answer?
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