Now your problem has to do with the use of xor and xnor.
Design a combinational circuit that compares two four bit.
The circuit output is equal to 1 if the two numbers are equal and 0 otherwise.
Design a combinational circuit that compares two 4 bit unsigned numbers a and b to see whether b is greater than 2a.
The circuit output is equal to 1 if the two numbers are e.
To get minimized functions look for groupings of 2 row or column 4 row column or 2 by 2 etc.
The circuit output is equal to 1 if the two numbers are equal and 0 otherwise.
Design a combinational circuit that compares two 4 bit numbers to check if they are equal.
Part b 30 points 5 design a combinational circuit that compares two 4 bit numbers to check if they are equal.
Eg 2 10 3 10 5 10 7 10.
The circuit output is equal to 1 if the two numbers are equal and 0 otherwise.
The circuit has one output x so that.
5 points the circuit output is equal to 1 if the two numbers are equal and 0 otherwise.
To be honest i have trouble with that myself.
Given two input bits a and b produce three outputs x y and z so that x is 1 only when only when a b y is 1 only when a b and z is 1 only when a b learn more.
Kwuimy 6 a implement the following boolean function with a multiplexer.
Compare two 1 bit numbers.
The circuit output is equal to 1 when the two numbers are equal and 0 otherwise.
Design a circuit that has a 3 bit binary input and a single output that output 1 if it is a prime number.
Design a combinational circuit that compares two four bit numbers to check they are equal.
Assume two numbers are a a3 a2 a1 a1 and b b3 b2 b1 b0 thank yo.
Design a combinational circuit that converts a four bit gray code table 1 6 to a bit four binary number a implement the circuit with exclusive o.