That's an infinite list.
35 and 70 both have 7 and 5 as prime factors
35 and all of its integral multiples
All nonzero numbers have an infinite number of multiples.
The multiples of 13 are numbers that can be divided by 13 without leaving a remainder. The multiples of 13 are: 13, 26, 39, 52, 65, 78, 91, 104, 117, and so on. The multiples of 7 are numbers that can be divided by 7 without leaving a remainder. The multiples of 7 are: 7, 14, 21, 28, 35, 42, 49, 56, 63, 70, and so on.
Multiples of 3 are 3, 6, 9 and so on. Multiples of 7 are 7, 14, 21 and so on. The common multiples of 3 and 7 include 21, 42, 63 and so on.
Since 14 is a multiple of 7, all of its multiples are common.
Multiples of 28
Since all 3 are prime numbers LCM = 3 * 5 * 7 = 105 All multiples of 105 are multiples of 3, 5 and 7
There are 71 multiples altogether here. Some of them are 7, 14, 21.
42 is the LCM of 3, 6 and 7. All multiples of 42 are multiples of 3, 6 and 7
There are no multiples of 7 down there, nor are there any NON-multiples of 7 . The truth is that there are no numbers at all below.
Itself and all other multiples of 7
All multiples of 7, which is an infinite number.
1, 2, 4, 7, 24 and 28 are all the multiples of 28
No, try 14.
84, 91 and 98
63 and all of its multiples.