As a product of its prime factors: 2*2*2*3*5*5*5 = 3000
This question cannot be answered sensibly. There are infinitely many numbers that are not factors of 3000. For example, all integers greater than 3000 belong to the set of "not factors of 3000". To that infinite set you can add all integers from 1501 to 2999 (both inclusive). There are also a lot more numbers smaller than 1500 that are not factors.
The common factors of 270 and 3000 are numbers that can evenly divide both 270 and 3000 without leaving a remainder. To find the common factors, we first need to find the prime factorization of each number. The prime factorization of 270 is 2 x 3^3 x 5, and the prime factorization of 3000 is 2^3 x 3 x 5^3. By comparing the prime factors of both numbers, we can identify the common factors as 2, 3, and 5.
No.
There is more than one possible answer. The prime factors of 16 are 2, 2, 2, and 2. It has four prime factors, but only one distinct prime factor. The prime factors of 24 are 2, 2, 2, and 3. It has four prime factors, but only two distinct prime factors. The prime factors of 36 are 2, 2, 3, and 3. It has four prime factors, but only two distinct prime factors. The prime factors of 40 are 2, 2, 2, and 5. It has four prime factors, but only two distinct prime factors. The prime factors of 54 are 2, 3, 3, and 3. It has four prime factors, but only two distinct prime factors. The prime factors of 56 are 2, 2, 2, and 7. It has four prime factors, but only two distinct prime factors. The prime factors of 60 are 2, 2, 3, and 5. It has four prime factors, but only three distinct prime factors. The prime factors of 81 are 3, 3, 3, and 3. It has four prime factors, but only one distinct prime factor. The prime factors of 84 are 2, 2, 3, and 7. It has four prime factors, but only three distinct prime factors. The prime factors of 88 are 2, 2, 2, and 11. It has four prime factors, but only two distinct prime factors. The prime factors of 90 are 2, 3, 3, and 5. It has four prime factors, but only three distinct prime factors.
As a product of its prime factors: 2*2*2*3*5*5*5 = 3000
Factors= 1, 3000, 2, 1500, 3, 1000, 4, 750, 5, 600, 6, 500, 10, 300, 15,200, 150, 20, 30, 100, 60 50, 75, 3 Prime Factors= 1,3,5
This question cannot be answered sensibly. There are infinitely many numbers that are not factors of 3000. For example, all integers greater than 3000 belong to the set of "not factors of 3000". To that infinite set you can add all integers from 1501 to 2999 (both inclusive). There are also a lot more numbers smaller than 1500 that are not factors.
The common factors of 270 and 3000 are numbers that can evenly divide both 270 and 3000 without leaving a remainder. To find the common factors, we first need to find the prime factorization of each number. The prime factorization of 270 is 2 x 3^3 x 5, and the prime factorization of 3000 is 2^3 x 3 x 5^3. By comparing the prime factors of both numbers, we can identify the common factors as 2, 3, and 5.
2310 = 2 * 3 * 5 * 7 * 11
Prime factors are factors that are also prime numbers.
No.
There is more than one possible answer. The prime factors of 16 are 2, 2, 2, and 2. It has four prime factors, but only one distinct prime factor. The prime factors of 24 are 2, 2, 2, and 3. It has four prime factors, but only two distinct prime factors. The prime factors of 36 are 2, 2, 3, and 3. It has four prime factors, but only two distinct prime factors. The prime factors of 40 are 2, 2, 2, and 5. It has four prime factors, but only two distinct prime factors. The prime factors of 54 are 2, 3, 3, and 3. It has four prime factors, but only two distinct prime factors. The prime factors of 56 are 2, 2, 2, and 7. It has four prime factors, but only two distinct prime factors. The prime factors of 60 are 2, 2, 3, and 5. It has four prime factors, but only three distinct prime factors. The prime factors of 81 are 3, 3, 3, and 3. It has four prime factors, but only one distinct prime factor. The prime factors of 84 are 2, 2, 3, and 7. It has four prime factors, but only three distinct prime factors. The prime factors of 88 are 2, 2, 2, and 11. It has four prime factors, but only two distinct prime factors. The prime factors of 90 are 2, 3, 3, and 5. It has four prime factors, but only three distinct prime factors.
The prime factors of 336 are: 2,3,7
The following numbers less than 50 have 2 prime factors. Some are squares, having two of the same prime factor. Some have two different prime factors. The prime factors of 4 are 2 and 2. The prime factors of 6 are 2 and 3. The prime factors of 9 are 3 and 3. The prime factors of 10 are 2 and 5. The prime factors of 14 are 2 and 7. The prime factors of 15 are 3 and 5. The prime factors of 21 are 3 and 7. The prime factors of 22 are 2 and 11. The prime factors of 25 are 5 and 5. The prime factors of 26 are 2 and 13. The prime factors of 33 are 3 and 11. The prime factors of 34 are 2 and 17. The prime factors of 35 are 5 and 7. The prime factors of 38 are 2 and 19. The prime factors of 39 are 3 and 13. The prime factors of 46 are 2 and 23. The prime factors of 49 are 7 and 7.
The factors of 1993 are: 1 1993 The prime factors are: 1993 is a prime number.
factors: 1, 1291 (prime)prime factors: 1291 (go figure!)