There are infinitely many common multiples of 6 and 8. The least common multiple of them is 24. After that, all of the multiples of 24 (i.e., 48, 72, 96, etc.) are the common multiples of 6 and 8.
24, 48, 72 and 96
To find the least common denominator, list the multiples of each denominator. The lowest one they have in common is the LCD.For example:2/3 and 3/4:The multiples of 3 are: 3, 6, 9, 12, 15, 18, 24...The multiples of 4 are: 4, 8, 12, 16, 20, 24...The common multiples are 12 and 24. Since 12 is the least, it is the LCM.
The LCM is: 48To find the LCM, you can list the multiples of each until you find a common one:16 is 16, 32, 4824 is 24, 48
The common multiples of 3 and 8 are 24, 48, 72, 96, 120, and so on. The LCM (least common multiple) of 3 and 8 is 24.
Any that are multiples of 24.
There are infinitely many common multiples of 6 and 8. The least common multiple of them is 24. After that, all of the multiples of 24 (i.e., 48, 72, 96, etc.) are the common multiples of 6 and 8.
LCM or least common multiple of 24 and 18 is 72 so any multiple of 72 is a common multiple To list them all we can write {m| m=72n for some natural number n) which means the set of all m such that m is a natural number multiple of 72 Or you can just say all common multiples of 24 and 18 are 72k where k = 1,2,3....
12, 24, 36 and so on.
The numbers: 0, 12, 24, 36, 48, etc. (the multiples of 12) are the only common multiples of 4 and 6.
The least common multiple is 72. So take the number 72 and go through it's multiples. They will all be common multiples of 24 and 36.
Multiples of 24 include 24, 48 and 72. For them to be common, they need to be compared to another set of multiples.
24, 48, 72 and 96
The common multiples of 18 and 24 are 72 and 144.
48,96,144,192,240,288,336,384,432.......................5925888 and so on. These are the common multiples of 16 and 24.
72 :) :) :) :) :) :)
They are members of the infinite set of numbers of the form 72*k where k is an integer. Since the set is infinite, it is not possible to list them all.