1, 3, 59, 177
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531 is a composite number because it has factors other than 1 and itself. It is not a prime number.The 6 factors of 531 are 1, 3, 9, 59, 177, and 531.The factor pairs of 531 are 1 x 531, 3 x 177, and 9 x 59.The proper factors of 531 are 1, 3, 9, 59, and 177 or,if the definition you are using excludes 1, they are 3, 9, 59, and 177.The prime factors of 531 are 3, 3, and 59. Note: There is repetition of these factors, so if the prime factors are being listed instead of the prime factorization, usually only the distinct prime factors are listed.The 2 distinct prime factors (listing each prime factor only once) of 531 are 3 and 59.The prime factorization of 531 is 3 x 3 x 59 or, in index form (in other words, using exponents), 32 x 59.NOTE: There cannot be common factors, a greatest common factor, or a least common multiple because "common" refers to factors or multiples that two or more numbers have in common.1, 3, 9, 59, 177, 531
354 is a composite number because it has factors other than 1 and itself. It is not a prime number.The 8 factors of 354 are 1, 2, 3, 6, 59, 118, 177, and 354.The factor pairs of 354 are 1 x 354, 2 x 177, 3 x 118, and 6 x 59.The proper factors of 354 are 1, 2, 3, 6, 59, 118, and 177 or,if the definition you are using excludes 1, they are 2, 3, 6, 59, 118, and 177.The prime factors of 354 are 2, 3, and 59.The 3 distinct prime factors (listing each prime factor only once) of 354 are 2, 3, and 59.The prime factorization of 354 is 2 x 3 x 59.NOTE: There cannot be common factors, a greatest common factor, or a least common multiple because "common" refers to factors or multiples that two or more numbers have in common.
no
Since the sum if its digits (1 + 7 + 7 = 15) is divisible by 3, the original number 177 is divisible by 3.Now we know that it has at least one factor in addition to '1' and itself, so it's not prime.
3 x 59 = 177