4 3s = 4*3 = 12, which is a rational number.
1, 2, 3, 4, 6, 8, 12, 16, 24, 32, 48, and 96 all go into the number 96. so 12 numbers can go into the number 96!! :D
It would be 16. The sequence is doubling pairs. 3 and 4 go on to be 6 and 8. 6 and 8 would go on to be 12 and 16. 12 and 16 would go on to be 24 and 32, and so on.
4 can go into 12 3 times
12 and 5/6 - 8 and 1/4 To solve this problem, subtract the whole numbers first. 12 - 8 = 4. Now we can work on the nasty little fractions! 5/6 - 1/4. In order to add or subtract fractions, we need to have a common denominator, that is, the same number on the bottom of BOTH fractions. 6 and 4 aren't the same, so we'll need to multiply and find a number that is the same. Are there any numbers both 6 and 4 can go into evenly? Don't pick a large number, start small. Well, 6 can go into 12 evenly. and 4 can also go into 12 evenly! OK, how many times does 6 go into 12? 2 times. We need to multiply 5/6 * 2/2 to get a 12 on the bottom. 5/6 * 2/2 = 10/12 (try reducing this fraction, see if 10/12 = 5/6) How many times will 4 go into 12? 3 times, that's right. Now multiply 1/4 * 3/3 = 3/12 (reduce 3/12 to lowest terms to check) So, since 5/6 = 10/12 and 1/4 = 3/12 --> 10/12 - 3/12 When adding or subtraction fractions, the bottom has to be the same. (Check!) Add or subtract fraction top numbers ONLY! Keep the same bottom number. 10/12 - 3/12 = 7/12. Combine this with the whole number we calculated earlier and we get: 12 and 5/6 - 8 and 1/4 = 4 and 7/12
The smallest number they can go into is 12.
60
84
1, 2, 3, 4, 6, 12.
Smallest number is 12
Any number at all can go into 12.But if you want the number to go into 12 evenly, without a fractionor a remainder, then the only possibilities are:1, -1, 2, -2, 3, -3, 4, -4, 6, -6, 12, and -12.
The LCM is 12 because 12 is the lowest number that 4 and 12 each go into evenly.
Factors of the number will also be factors of the number's multiples. Multiples of the number will also be multiples of the number's factors.
6
12
1 2 3 4 6 12.
1, 2, 3, 4, 6, 12.