Q: What is the prime factorization of the number 325,010,111?

 A:
  • The prime factors are: 89 x 251 x 14,549
    • or also written as { 89, 251, 14,549 }
  • Written in exponential form: 891 x 2511 x 14,5491

Why is the prime factorization of 325,010,111 written as 891 x 2511 x 14,5491?

What is prime factorization?

Prime factorization or prime factor decomposition is the process of finding which prime numbers can be multiplied together to make the original number.

Finding the prime factors of 325,010,111

To find the prime factors, you start by dividing the number by the first prime number, which is 2. If there is not a remainder, meaning you can divide evenly, then 2 is a factor of the number. Continue dividing by 2 until you cannot divide evenly anymore. Write down how many 2's you were able to divide by evenly. Now try dividing by the next prime factor, which is 3. The goal is to get to a quotient of 1.

If it doesn't make sense yet, let's try it...

Here are the first several prime factors: 2, 3, 5, 7, 11, 13, 17, 19, 23, 29...

Let's start by dividing 325,010,111 by 2

325,010,111 ÷ 2 = 162,505,055.5 - This has a remainder. Let's try another prime number.
325,010,111 ÷ 3 = 108,336,703.6667 - This has a remainder. Let's try another prime number.
325,010,111 ÷ 5 = 65,002,022.2 - This has a remainder. Let's try another prime number.
...
Keep trying increasingly larger numbers until you find one that divides evenly.
...
325,010,111 ÷ 89 = 3,651,799 - No remainder! 89 is one of the factors!
3,651,799 ÷ 89 = 41,031.4494 - There is a remainder. We can't divide by 89 evenly anymore. Let's try the next prime number
3,651,799 ÷ 97 = 37,647.4124 - This has a remainder. 97 is not a factor.
3,651,799 ÷ 101 = 36,156.4257 - This has a remainder. 101 is not a factor.
3,651,799 ÷ 103 = 35,454.3592 - This has a remainder. 103 is not a factor.
...
Keep trying increasingly larger numbers until you find one that divides evenly.
...
3,651,799 ÷ 251 = 14,549 - No remainder! 251 is one of the factors!
14,549 ÷ 251 = 57.9641 - There is a remainder. We can't divide by 251 evenly anymore. Let's try the next prime number
14,549 ÷ 257 = 56.6109 - This has a remainder. 257 is not a factor.
14,549 ÷ 263 = 55.3194 - This has a remainder. 263 is not a factor.
14,549 ÷ 269 = 54.0855 - This has a remainder. 269 is not a factor.
...
Keep trying increasingly larger numbers until you find one that divides evenly.
...
14,549 ÷ 14,549 = 1 - No remainder! 14,549 is one of the factors!

The orange divisor(s) above are the prime factors of the number 325,010,111. If we put all of it together we have the factors 89 x 251 x 14,549 = 325,010,111. It can also be written in exponential form as 891 x 2511 x 14,5491.

Factor Tree

Another way to do prime factorization is to use a factor tree. Below is a factor tree for the number 325,010,111.

325,010,111
Factor Arrows
893,651,799
Factor Arrows
25114,549

More Prime Factorization Examples

325,010,109325,010,110325,010,112325,010,113
31 x 371 x 2,928,019121 x 51 x 32,501,011126 x 31 x 71 x 241,823114,4791 x 22,4471

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