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How do you find the factors of 54204? - Answers

Start with the prime factorization. In Exponential Form: 2^2 x 3^1 x 4517^1 Adding one to the exponents and multiplying gives you the number of factors. 3 x 2 x 2 = 12 54204 has twelve factors. All we need to find is 6. Dividing them into 54204 will give us the other 6. Apply what you know about the rules of divisibility. 1 is because 1 always is. 2 is because it's even. 3 is because the digits add up to a multiple of 3. 4 is because the last two digits are a multiple of 4. 6 is because 2 and 3 are. That leaves one to find. We know 4517 is a factor from the prime factorization. Dividing that into 54204 gives us 12. That's all of them. All Factors of 54204: 1, 2, 3, 4, 6, 12, 4517, 9034, 13551, 18068, 27102, 54204



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How do you find the factors of 54204? - Answers

https://math.answers.com/basic-math/How_do_you_find_the_factors_of_54204

Start with the prime factorization. In Exponential Form: 2^2 x 3^1 x 4517^1 Adding one to the exponents and multiplying gives you the number of factors. 3 x 2 x 2 = 12 54204 has twelve factors. All we need to find is 6. Dividing them into 54204 will give us the other 6. Apply what you know about the rules of divisibility. 1 is because 1 always is. 2 is because it's even. 3 is because the digits add up to a multiple of 3. 4 is because the last two digits are a multiple of 4. 6 is because 2 and 3 are. That leaves one to find. We know 4517 is a factor from the prime factorization. Dividing that into 54204 gives us 12. That's all of them. All Factors of 54204: 1, 2, 3, 4, 6, 12, 4517, 9034, 13551, 18068, 27102, 54204



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https://math.answers.com/basic-math/How_do_you_find_the_factors_of_54204

How do you find the factors of 54204? - Answers

Start with the prime factorization. In Exponential Form: 2^2 x 3^1 x 4517^1 Adding one to the exponents and multiplying gives you the number of factors. 3 x 2 x 2 = 12 54204 has twelve factors. All we need to find is 6. Dividing them into 54204 will give us the other 6. Apply what you know about the rules of divisibility. 1 is because 1 always is. 2 is because it's even. 3 is because the digits add up to a multiple of 3. 4 is because the last two digits are a multiple of 4. 6 is because 2 and 3 are. That leaves one to find. We know 4517 is a factor from the prime factorization. Dividing that into 54204 gives us 12. That's all of them. All Factors of 54204: 1, 2, 3, 4, 6, 12, 4517, 9034, 13551, 18068, 27102, 54204

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      Start with the prime factorization. In Exponential Form: 2^2 x 3^1 x 4517^1 Adding one to the exponents and multiplying gives you the number of factors. 3 x 2 x 2 = 12 54204 has twelve factors. All we need to find is 6. Dividing them into 54204 will give us the other 6. Apply what you know about the rules of divisibility. 1 is because 1 always is. 2 is because it's even. 3 is because the digits add up to a multiple of 3. 4 is because the last two digits are a multiple of 4. 6 is because 2 and 3 are. That leaves one to find. We know 4517 is a factor from the prime factorization. Dividing that into 54204 gives us 12. That's all of them. All Factors of 54204: 1, 2, 3, 4, 6, 12, 4517, 9034, 13551, 18068, 27102, 54204
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