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(A,B) IS (0,0), (0,1), (1,0),(1,1) THEN ...


`(A,B)` IS (0,0), (0,1), (1,0),(1,1) THEN Output at X will be

A

(0,0,1,0)

B

(1,1,1,0)

C

(1,0,1,0)

D

(1,1,1,1)

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A
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Given the following truth table where A , B are inputs and Y the output : {:(A,B,Y),(0,0,1),(1,0,1),(0,1,1),(1,1,0):} The output Y is :

In the following logic circuit the sequence of the inputs A, B are (0, 0), (0,1), (1, 0) and 1, 1). The output Y for this sequence will be :

Logic gates X and Y have the truth tables shown below {:(P,Q,R,P,R),(0,0,0,0,1),(1,0,0,1,0),(0,1,0,,),(1,1,1,,):} When the output of X is connected to the input of Y , the resulting combination is equivalent to a single.

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Name the 2-input logic gate, whose truth table is given here, If this logic gate is connected to a NOT gate. What will be the output when (i) A=1, B=1 and (ii) A=0, B=1 ? |{:(A,B,"Output"y),(0,0,1),(0,1,1),(1,0,1),(1,1,0):}:| |{:(A,B,"Out put"y,"Output of Not gate"),(1,1,0,1),(0,1,1,0):}|

The truth table for the following combination of gates is (a) {:(A,B,Y),(0,0,0),(0,1,0),(1,0,1),(1,1,1):} (b) {:(A,B,Y),(0,0,0),(0,1,0),(1,0,0),(1,1,1):} (c) {:(A,B,Y),(0,0,1),(0,1,1),(1,0,1),(1,1,0):} (d) {:(A,B,Y),(0,0,0),(0,1,1),(1,0,1),(1,1,10):}

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