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Q: When using a truth table 1 and 0 equals what?
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When using a truth table 1 and 0 equal?

1 and 0 equal 0. "AND" behave like multiplication.


Which is not a gate?

Its truth table is: input output 0 1 1 0


What is the truth table of a inverter?

Input Output 0 1 1 0


Verify truth table of NAND gate using C programming?

I don't really know what this is supposed to mean, if you want to print the truth-table of the NAND-gate that will be something like this: for (a=0; a<=1; ++a) for (b=0; b<=1; ++b) printf ("%d %d %d\n", a, b, !(a&&b))


Make a truth table for the statement if p then not q?

. p . . . . . q. 0 . . . . . 1. 1 . . . . . 0


Draw truth table for AND OR Not?

.....0 10 | 0 01 | 0 1.....0 10 | 0 11 | 1 10 | 11 | 0


When a Boolean function said to be a self dual?

apparently whenever you can swap the 0's for 1's and 1's for 0's in the truth table and the truth result remains unchanged.


What is the difference between NA ND gate and NOR gate?

Truth table of 'NAND' is 0 0 - 1 0 1 - 1 1 0 - 1 1 1 - 0 NAND is just opposite of AND as the name itself suggest NAND is the not of AND Truth table of "NOR" is 0 0 - 1 0 1 - 0 1 0 - 0 1 1 - 0 NOR is just opposite of OR as the name itself suggest NOR is the not of OR.


After using javascript documentbodycontentEditable equals true documentdesignMode equals on void 0 How do you save?

You cant!


Could you write the program that display truth table of AND gate by using C plus plus programming language?

#include<iostream> int main() { std::cout << "Truth table for AND gate\n\n"; std::cout << " |0 1\n"; std::cout << "-+---\n"; for (unsigned a=0; a<2; ++a) { std::cout << a << '|'; for (unsigned b=0; b<2; ++b) { std::cout << (a & b) << ' '; } std::cout << '\n'; } std::cout << std::endl; }


What is the Truth table of logical operators in c plus plus?

It is the very same in every programming language. For example: AND: 0 && 0 = 0 0 && 1 = 0 1 && 0 = 0 1 && 1 = 1


Can you help me with this math x y problem x equals bx plus a the table is x 0 1 2 y 0 2 2 What is b and a?

To find the values of b and a, we can use the two data points given in the table. When x = 0, the equation becomes 0 = b(0) + a, which simplifies to a = 0. When x = 1, the equation becomes 2 = b(1) + 0, which simplifies to b = 2. Therefore, the values of b and a are b = 2 and a = 0.