2 x 2 =4
3 x 3 x 3 x 3 x 3 = 243
35 = 243
The prime factorization of 243 will require 5 numbers. It is possible to write a factorization in two numbers, but they won't both be prime. 3 x 3 x 3 x 3 x 3 = 243 9 x 27 = 243
3 x 3 x 3 x 3 x 3 = 243
The prime factorization of 4 is 2 X 2, represented as 2^2. Prime factorization of 4 is 2 X 2.
To find the highest common factor (HCF) of 81, 243, and 1215, we first need to find the prime factorization of each number. The prime factorization of 81 is 3^4, 243 is 3^5, and 1215 is 3^5 * 5. To find the HCF, we look for the highest power of each prime factor that appears in all the numbers. In this case, the highest power of 3 that appears in all three numbers is 3^4, so the HCF of 81, 243, and 1215 is 81.
No, 3x5x4 is not a prime factorization of 60. A prime factorization of 60 would consist of only prime numbers. The prime factorization of 60 is 2x2x3x5.
To find the exponent of 1296, we first determine its prime factorization. The prime factorization of 1296 is (2^4 \times 3^4). Therefore, the exponents in this factorization are 4 for both prime factors. The exponent of 1296 can be interpreted as the highest exponent in its prime factorization, which is 4.
Well, the prime factorization is 3^5 (3 to the 5th power). I can't tell you the GCF unless there's another number to compare it with.
243 / \ 3 81 / / \ 3 3 27 / / / \ 3 3 3 9 / / / / \ 3 3 3 3 3 = 3 x 3 x 3 x 3 x 3 = 35
No number has that prime factorization since 4 isn't prime.
No, 4 is not prime.
No, 4 is not prime.