17 has one factor pair, 1 and 17.
The factors of 4913 are 1, 17, 289, and 4913. The factor pairs of 4913 are 1 x 4913, and 17 x 289.
(34,1)(17,2) (85,1)(17,5)
The difference is between factor pairs and distinct factors. With square numbers, one of the factor pairs will be the same number twice. When listing the distinct factors, that number is only listed once.
They are 1 and 17 because 17 is a prime number which has only two factors
17 has one factor pair, 1 and 17.
17 is prime. Its only factors are 1 and 17.
13
The factors of 4913 are 1, 17, 289, and 4913. The factor pairs of 4913 are 1 x 4913, and 17 x 289.
If pairs of factors separate independently of other pairs of factors, you are dealing with the: Law of independent assortment
The four factors of 119 are 1, 7, 17, and 119.The factor pairs of 119 are 1 x 119 and 7 x 17.The proper factors of 119 are 1, 7, and 17The prime factors of 119 are 7 and 17.The 2 distinct prime factors (listing each prime factor only once) of 119 are 7 and 17.The prime factorization of 119 is 7 x 17.
To express 68 as a product of 2 factors, we need to find all pairs of numbers that multiply to 68. The pairs are: 1 and 68, 2 and 34, 4 and 17, and 17 and 4. These pairs give us the following expressions: 1 x 68, 2 x 34, 4 x 17, and 17 x 4.
Factor pairs:85 = 1 x 8585 = 5 x 17Prime factors:5 x 17
To find the factorization of a number, list the factor pairs. 1 x 85 5 x 17 The factors are 1, 5, 17, 85.
(34,1)(17,2) (85,1)(17,5)
85 is a composite number because it has factors other than 1 and itself.The 4 factors of 85 are 1, 5, 17, and 85.The factor pairs of 85 are 1 x 85 and 5 x 17.The proper factors of 85 are 1, 5, and 17 or,if the definition you are using excludes 1, they are 5 and 17.The prime factors of 85 are 5 and 17.The distinct prime factors of 85 are also 5 and 17, since there is no repetition of factors.The prime factorization of 85 is 5 x 17.- Nicole Thomas
3 pairs