The rule of an AND gate is........, BOTH SWITCHES HAVE TO BE ON, EITHER SWITCH HAS TO BE ON, DOES THE OPPOSITE, The rule of an AND gate is........, BOTH SWITCHES HAVE TO BE ON, EITHER SWITCH HAS TO BE ON, DOES THE OPPOSITE, The rule of an OR gate is........, BOTH SWITCHES HAVE TO BE ON, EITHER SWITCH HAS TO BE ON, DOES THE OPPOSITE, The rule of an OR gate is........, BOTH SWITCHES HAVE TO BE ON, EITHER SWITCH HAS TO BE ON, DOES THE OPPOSITE, The rule of an NOT gate is........, BOTH SWITCHES HAVE TO BE ON, EITHER SWITCH HAS TO BE ON, DOES THE OPPOSITE, The rule of an NOT gate is........, BOTH SWITCHES HAVE TO BE ON, EITHER SWITCH HAS TO BE ON, DOES THE OPPOSITE, What is the name of this gate?, AND, OR, NOT, What is the name of this gate?, AND, OR, NOT, What is the name of this gate?, AND, OR, NOT, What is the name of this gate?, AND, OR, NOT, What is the name of this gate?, AND, OR, NOT, What is the name of this gate?, AND, OR, NOT, What LOGIC GATE does this truth table represent?, AND, OR, NOT, What LOGIC GATE does this truth table represent?, AND, OR, NOT, What LOGIC GATE does this truth table represent?, AND, OR, NOT, What LOGIC GATE does this truth table represent?, AND, OR, NOT, What LOGIC GATE does this truth table represent?, AND, OR, NOT, What LOGIC GATE does this truth table represent?, AND, OR, NOT.

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