Calculate the greatest (highest) common factor (divisor)
gcf, hcf, gcd (99,999,898; 200,000,000,650) = ?
Method 1. The prime factorization:
The prime factorization of a number: finding the prime numbers that multiply together to make that number.
99,999,898 = 2 × 101 × 131 × 3,779
99,999,898 is not a prime number but a composite one.
200,000,000,650 = 2 × 52 × 569 × 7,029,877
200,000,000,650 is not a prime number but a composite one.
- Prime number: a natural number that is only divisible by 1 and itself. A prime number has exactly two factors: 1 and itself.
- Composite number: a natural number that has at least one other factor than 1 and itself.
Calculate the greatest (highest) common factor (divisor):
Multiply all the common prime factors, taken by their smallest exponents (the smallest powers).
Step 1. Divide the larger number by the smaller one:
200,000,000,650 ÷ 99,999,898 = 2,000 + 204,650
Step 2. Divide the smaller number by the above operation's remainder:
99,999,898 ÷ 204,650 = 488 + 130,698
Step 3. Divide the remainder of the step 1 by the remainder of the step 2:
204,650 ÷ 130,698 = 1 + 73,952
Step 4. Divide the remainder of the step 2 by the remainder of the step 3:
130,698 ÷ 73,952 = 1 + 56,746
Step 5. Divide the remainder of the step 3 by the remainder of the step 4:
73,952 ÷ 56,746 = 1 + 17,206
Step 6. Divide the remainder of the step 4 by the remainder of the step 5:
56,746 ÷ 17,206 = 3 + 5,128
Step 7. Divide the remainder of the step 5 by the remainder of the step 6:
17,206 ÷ 5,128 = 3 + 1,822
Step 8. Divide the remainder of the step 6 by the remainder of the step 7:
5,128 ÷ 1,822 = 2 + 1,484
Step 9. Divide the remainder of the step 7 by the remainder of the step 8:
1,822 ÷ 1,484 = 1 + 338
Step 10. Divide the remainder of the step 8 by the remainder of the step 9:
1,484 ÷ 338 = 4 + 132
Step 11. Divide the remainder of the step 9 by the remainder of the step 10:
338 ÷ 132 = 2 + 74
Step 12. Divide the remainder of the step 10 by the remainder of the step 11:
132 ÷ 74 = 1 + 58
Step 13. Divide the remainder of the step 11 by the remainder of the step 12:
74 ÷ 58 = 1 + 16
Step 14. Divide the remainder of the step 12 by the remainder of the step 13:
58 ÷ 16 = 3 + 10
Step 15. Divide the remainder of the step 13 by the remainder of the step 14:
16 ÷ 10 = 1 + 6
Step 16. Divide the remainder of the step 14 by the remainder of the step 15:
10 ÷ 6 = 1 + 4
Step 17. Divide the remainder of the step 15 by the remainder of the step 16:
6 ÷ 4 = 1 + 2
Step 18. Divide the remainder of the step 16 by the remainder of the step 17:
4 ÷ 2 = 2 + 0
At this step, the remainder is zero, so we stop:
2 is the number we were looking for - the last non-zero remainder.
This is the greatest (highest) common factor (divisor).
The greatest (highest) common factor (divisor):
gcf, hcf, gcd (99,999,898; 200,000,000,650) = 2
The two numbers have common prime factors