No because 2 is an even integer
ODD Integers are those numbers that end in 1,3,5,7,9. So a set of ODD integers could be (101, 99, 93, 103, 10,005, 57) et seq/.
It is if we only consider integers. If we consider all real numbers, for example, it would not be.
Since negative six is not an odd integer, there cannot be any set of odd integers starting from it.
The answer depends on what set of integers is under consideration.The answer depends on what set of integers is under consideration.The answer depends on what set of integers is under consideration.The answer depends on what set of integers is under consideration.
Any set of three odd integers must be odd - for example, 3 + 5 + 7 = 15. Similarly, the sum of an even number of odd integers added together will always be an even integer.
The set of positive odd integers.
No. For example, 5 is an odd integer and 3 is an odd integer, yet 5/3 is neither an integer nor odd (as odd numbers are, by definition, integers).
ODD Integers are those numbers that end in 1,3,5,7,9. So a set of ODD integers could be (101, 99, 93, 103, 10,005, 57) et seq/.
There is no set of two consecutive odd integers for 323. The set has one odd and one even integer. The numbers are 161 and 162.
There is no set of four consecutive odd integers for 204. The only set is even: 48, 50, 52 and 54.
It is if we only consider integers. If we consider all real numbers, for example, it would not be.
Since negative six is not an odd integer, there cannot be any set of odd integers starting from it.
The answer depends on what set of integers is under consideration.The answer depends on what set of integers is under consideration.The answer depends on what set of integers is under consideration.The answer depends on what set of integers is under consideration.
addition
It is a set of two positive odd integers.
Because the set is not closed under addition. If x and y are odd, then x + y is not odd.
That is correct, the set is not closed.