the set of multiples for 7 is infinite
14, 28, 42, 56, 70.
Here are some multiples of 31: 31,62,93,124,155,186
There are 3598 numbers between 10000 and 99999 which are divisible by 25. They are elements of the set of numbers of the form 25*k, where k is an integer between 41 and 3999 (inclusive).
The set of even numbers is the set of all the numbers that are divisible by 2 (or multiples of 2).
To be pedantic, it is not.
Multiples of 10 cannot be prime.
The set is: 20, 24, 28.
the set of multiples for 7 is infinite
The infinite set of numbers which are multiples of three. The infinite set of numbers which are multiples of three. The infinite set of numbers which are multiples of three. The infinite set of numbers which are multiples of three.
The set of all integers; the set of all rational numbers; the set of all real numbers; the set of all complex numbers. Also their multiples - for example the set of all multiples of 2; the set of all multiples of 2.5; the set of all multiples of sqrt(17); the set of all multiples of 3 + 4i where i is the imaginary square root of -1.
The set of multiples of 18.
The set of multiples of 12.
14, 28, 42, 56, 70.
The infinite set of multiples of 56.
The complement of a set refers to everything that is NOT in the set. A "universe" (a set from which elements may be taken) must always be specified (perhaps implicitly). For example, if your "universe" is the real numbers, and the set you are considering is 0
By comparing its multiples to another set of multiples.