It is: 2*3*3*3 = 54
If you look at the related question, "What are the prime factors of the numbers from 1 to 200?" (provided in the link below), take the prime numbers, and show them with multiplication signs between them, then you will have the prime factorization. Examples: The prime factors of 15 are 3 and 5. Therefore, the prime factorization is 3 x 5. The prime factors of 42 are 2, 3, and 7. Therefore, the prime factorization is 2 x 3 x 7. The prime factors of 64 are 2, 2, 2, 2, 2, and 2. Therefore, the prime factorization is 2 x 2 x 2 x 2 x 2 x 2. If you want the prime factorization of a specific number, it is sometimes listed under questions of the form, "What are the prime factors of __?" or "What are the factors of __?" or "What are the factors and prime factors of __?"
61 and 73 are prime numbers. Prime numbers don't have prime factorizations, since their only prime factors are themselves. Since these would have to be different numbers, they don't have any prime factors in common. The GCF of any set of prime numbers is 1.
3 x 3 x 3 = 27
Sum of the digits of 87 = 8+7 =15(a multiple of 3) which means that 87 is divisible by 3. Therefore, 87 is not a prime number as it has more than two factors which are 1, 87, 3 etc. In order to prove that a given number is prime we shall show that the given number has more than two factors. There is no need to find all the factors.
As a product of its prime factors: 2*2*2*7*127 = 7112
where is it
The prime factors of 88 are 2 and 11
43 is a prime number whose only factors are itself and one
The Prime Factors are 3 x 11 x 31.
Yes
98 is an even number. The only even prime is 2, so 98 is not prime. Therefore it is composite. That's one logic method. Another would be to show the factors (other than 1 and 98) such as (49 x 2) or (7 x 14). Since it as factors other than 1 and itself, then it is composite.
No, by inspection it is even (2 is one of the factors), also by sum of digits, 9 is one of the factors. Either of these is enough to show that it is not prime.
The prime factors of 8 are 2, 2 and 2 or 23 The prime factors of 14 are 2 and 7 or 2*7 LCM = highest prime factors multiplied = 23*7 = 56
90 45,2 15,3,2 5,3,3,2
50 25,2 5,5,2
A factor tree shows the prime factors of the working number and can also be used as a visual demonstration to show the prime factors of the working number.