637 = 7 * 7 * 13 = 72 * 13
As a product of its prime factors: 7*7*13 = 637
7^2 x 13
Writing down all the factors of both numbers requires too much time so it is not a good idea to find solution by writing each factor of both numbers. Method of prime factorization is one of the good methods to find GCF. Prime factorization is like breaking a number into other numbers, prime numbers, and this factorization is unique. Prime factorization is like a blueprint for numbers. Prime factorization of 1820 = 22 x 5 x 7 x 13 Prime factorization of 637 = 7 x 7 x 13 7, 13 and 7x13 are common in the prime factorization of both numbers, but 7x13 is the greatest among these numbers. So, 7x13 = 91 is the GCF of 1820 and 637.
To find two numbers that multiply to 637, we can start by factoring 637. The prime factorization of 637 is 7 x 7 x 13. Therefore, the two numbers that multiply to 637 are 7 and 91, since 7 x 91 = 637.
637 is a composite number.
No.
637 = 7 x 7 x 13 98 = 2 x 7 x 7
No, as its factors are: 1, 7, 13, 49, 91, 637.
4459 is a composite number, not a prime number. Its factors are 1, 7, 13, 49, 91, 343, 637, and 4459. Its prime factorization is 7 x 7 x 7 x 13 (or 73 x 13).
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.
When all the factors are prime numbers, that's a prime factorization.