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Logic gates X and Y have the truth table...

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` of connected to the input of `Y`, the resulting combination is equivalent to a single.

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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.

The truth table given below is for: |(A,B,X),(0,0,0),(0,1,0),(1,0,0),(1,1,1)|

The truth table given below is for :- {:(A,B,Y),(0,0,1),(0,1,0),(1,0,0),(1,1,1):}

The truth table given below is for which gate? |(A,B,C),(0,0,1),(0,1,1),(1,0,1),(1,1,0)|

Thr truth table given below is for :- {:(A,B,Y),(0,0,1),(0,1,0),(1,0,0),(1,1,1):}

Thr truth table given below is for :- {:(A,B,Y),(0,0,1),(0,1,0),(1,0,0),(1,1,1):}

The truth table shown in figure is for |(A,0,0,1,1),(B,0,1,0,1),(Y,1,0,0,1)|

The following truth table is for {:(A,B,Y,,),(1,1,0,,),(1,0,1,,),(0,1,1,,),(0,0,1,,):} .

Logic gates X and Y have the truth tables shown below When the output of X is connected to the input of Y, the resulting combination is equivalent to a single.

Logic gates X and Y have the truth tables shown below When the output of X is connected to the input of Y, the resulting combinaion is equivalent to a single