To express 360 as a product of prime factors in index form, we first need to find the prime factors of 360. The prime factorization of 360 is 2^3 * 3^2 * 5. In index form, this would be written as 2^3 * 3^2 * 5^1.
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.
2^4 x 3 x 5
120 = 23 x 3 x 5
Prime factors of 1080 are 23 33 5.
As a product of its prime factors: 2*3*3*5 = 90
It is: 24*112 = 1936
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.
2^4 x 3 x 5
120 = 23 x 3 x 5
To express 144 as a product of its prime factors in index form, we first find the prime factors of 144, which are 2 and 3. 144 can be written as 2^4 * 3^2 in index form, where 2 is raised to the power of 4 and 3 is raised to the power of 2. This shows that 144 can be expressed as the product of its prime factors in index form.
express 5610 as the product of prime factors
Prime factors of 1080 are 23 33 5.
As a product of its prime factors: 2*3*3*5 = 90
648 expressed as a product of its prime factors in index form is 2^3 times 3^4
As a product of its prime factors: 2*3*5*7 = 210
300
2x2x11