It is: 3*5*7^2 = 735
24 x 5 x 72 = 3920
All composite numbers can be expressed as unique products of prime numbers. This is accomplished by dividing the original number and its factors by prime numbers until all the factors are prime. A factor tree can help you visualize this. Example: 210 210 Divide by two. 105,2 Divide by three. 35,3,2 Divide by five. 7,5,3,2 Stop. All the factors are prime. 2 x 3 x 5 x 7 = 210 That's the prime factorization of 210.
As a product of its prime factors: 5*109 = 545
express 5610 as the product of prime factors
2 x 2 x 2 x 3 = 24
648 expressed as a product of its prime factors in index form is 2^3 times 3^4
the prime factorization.
1,820 expressed as a product of its prime factors is: 2 x 5 x 7 x 13 = 910
7 is a prime number.
a prime factorization
As a product of its prime factors expressed in exponents it is: 23*33 = 216
300
It is the same as finding the LCM of two numbers that have been expressed as a product of their prime factors except that you need to use the highest index for each prime factor.
a prime factorization
153=32x17
72 *23
To express 63 as a product of prime factors in index form, we first need to find the prime factors of 63. 63 can be factored as 3 x 3 x 7. This can be written in index form as 3^2 x 7. Therefore, 63 as a product of prime factors in index form is 3^2 x 7.