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1272 Divide by two. 636,2 Divide by two. 318,2,2 Divide by two. 159,2,2,2 Divide by three. 53,3,2,2,2 Stop. 2 x 2 x 2 x 3 x 53 = 1272
When the first number can divide the second without remainder. The formal definition would be as follows: For integers x and y, x is a factor of y if there exists an integer n such that y = n*x
Prime factorization of 528 = 2 x 2 x 2 x 2 x 3 x 11
Divide prime numbers into it until all the factors are prime. A factor tree can help you visualize this.18 Divide by two.9,2 Divide by three.3,3,2 Stop.2 x 3 x 3 is the prime factorization of 18.
All composite numbers can be expressed as unique products of prime numbers. This is accomplished by dividing the original number and its factors by prime numbers until all the factors are prime. A factor tree can help you visualize this. Example: 210 210 Divide by two. 105,2 Divide by three. 35,3,2 Divide by five. 7,5,3,2 Stop. All the factors are prime. 2 x 3 x 5 x 7 = 210 That's the prime factorization of 210.