11, 22, 33, 44, 55, 66, 77, 88, 99 and just keep adding 11 until you get to 198.
The multiples of 11 are numbers that can be divided evenly by 11. To find the multiples of 11 up to 2000, we can start by finding the first multiple of 11, which is 11 itself. The next multiples would be 22, 33, 44, and so on. Continuing this pattern, we find that the multiples of 11 up to 2000 are 11, 22, 33, 44, ..., 1988, 1999.
17, 34, 51, 68, 85, 102, 119, 136, 153, 170, 187.
The multiples of five up to 2000 are numbers that can be divided evenly by 5. To find these multiples, you can start with 5 and continue adding 5 to the previous number. The multiples of five up to 2000 are 5, 10, 15, 20, 25, and so on, up to 2000.
36 and 72
Common three-digit multiples of 27 and 11 are 297, 594 and 891. None of their digits add up to 10.
4,8,12,16,20
24, 48, 72, 96, 120, 144, 168, 192
72 and 144.
11, 22, 33, 44, 55, 66, 77, 88, 99, 110, 121, 132, 143, 154, 165, 176, 187, 198.
All the multiples of 11 up to 100 except 11 itself which is a prime number
I presume you mean what are all the multiples of 9 up to 100 (and not what are all the multiples of 9, 10, 11, ..., 100 of which there are infinitely many): 9, 18, 27, 36, 45, 54, 63, 72, 81, 90, 99.
143
Just 77.
5 and 6.
32, 64, 96, 128, 160, 192.
' 1 ' is a factor of every whole number . . . . . 100 of them' 2 ' is a factor of every even number . . . . . 50 of them' 3 ' has 33 multiples up to 100 . . . . . 33 of them' 4 ' has 25 multiples up to 100 . . . . . 25 of them' 5 ' has 20 multiples up to 100 . . . . . 20 of them' 6 ' has 16 multiples up to 100 . . . . . 16 of them' 7 ' has 14 multiples up to 100 . . . . . 14 of them' 8 ' has 12 multiples up to 100 . . . . . 12 of them' 9 ' has 11 multiples up to 100 . . . . . 11 of themTotal . . . . . . . . . . . . . . . . . . . . . . . . . 281 one-digit factors in all whole numbers 1 to 100 .
The multiples of 4 up to 200 are 4, 8, 12, 16, 20 and just keep adding 4 until you get to 200.