2 x 3 x 3 = 18
3 x 7 = 21
2 x 3 x 3 x 7 = 126, the LCM
The prime factorization of 4 is 2 x 2. It is not possible to find the LCM of a single number.
That appears to be the prime factorization of 14175. If you compare that to the prime factorization of another number, you will be able to find the LCM between the two.
The LCM of the given three numbers using prime factorization is 25200
yes
What is the prime authorization for LCM of 18,24
22 x 33 is the prime factorization of 108. If you have another prime factorization, we can find a GCF and an LCM between the two.
You have written the prime factorization for 432. You need at least two numbers to find an LCM.
To find the Least Common Multiple (LCM) of 5, 25, and 125, we need to first find the prime factorization of each number. The prime factorization of 5 is 5, the prime factorization of 25 is 5^2, and the prime factorization of 125 is 5^3. The LCM is the product of the highest power of each prime factor that appears in any of the numbers, which in this case is 5^3, equaling 125. Therefore, the LCM of 5, 25, and 125 is 125.
To find the Least Common Multiple (LCM) of 8, 18, and 24, we first need to find the prime factorization of each number. The prime factorization of 8 is 2^3. The prime factorization of 18 is 2 * 3^2. The prime factorization of 24 is 2^3 * 3. To find the LCM, we take the highest power of each prime factor that appears in any of the numbers. So the LCM of 8, 18, and 24 is 2^3 * 3^2 = 72.
True.
To find the Least Common Multiple (LCM) of 26 and 8, you first need to find the prime factorization of each number. The prime factorization of 26 is 2 x 13, and the prime factorization of 8 is 2^3. Then, you take the highest power of each prime factor that appears in either factorization, which is 2^3 x 13 = 104. Therefore, the LCM of 26 and 8 is 104.
You can find the GCF and/or the LCM of a set of numbers by comparing the prime factorizations of the individual members of the set.