23 x 32 x 5 x 7
To write 26 in exponential form, you would express it as 2^6. This is because the base number, 2, is raised to the power of 6, which equals 26. Exponential form is a way to represent repeated multiplication in a concise manner.
if you were paying attention in class you knew the answer
3^(3) 2^(4)7^(1)
4^2 * 3
3^6 = 729
It is: 3^2 = 9
2^2 x 3^2
exponential form
2*2*2*3 = 23*3
It is: 2^2 times 3^3 = 108
48 in exponential form is 2^4 * 3^1. This is because 48 can be expressed as the product of its prime factors, which are 2 and 3. There are 4 factors of 2 and 1 factor of 3 in the prime factorization of 48, so it can be written as 2^4 * 3^1.
The prime factorization of 96 is 2^5 * 3. This means that 96 can be expressed as the product of 2 raised to the power of 5, multiplied by 3. In exponential form, this would be written as 2^5 * 3.
A repeated factor, f, of a number, n, written in exponential form denotes how many times n divides f. If n divides f t times, then f^t is a factor of n. Ex. The number 192 has a prime factorization 2, 2, 2, 2, 2, 2, 3 which can be written as 2^6, 3 where (2^6)(3) = 192
A number written in scientific form is written in the form #.##... x 10a (note exactly one number before the decimal place), where a is an integer, while a number in exponential form is written in the form bc where b is prime and c is an integer. See the following examples: * 1024 is written in scientific notation as 1.024 x 103, but in exponential form as 210. * 0.0016 is written in scientific notation as 1.6 x 10-3, but in exponential form as 5-4. * 3 is written in scientific notation as 3 x 100 and in exponential form as 31. Please, note, however, that some sources say exponential form is just another way of saying scientific notation.
2^3 * 5 * 7^2
To write 72 as a product of prime factors in exponential form, we first break down 72 into its prime factors: 72 = 2 x 2 x 2 x 3 x 3. Then, we can rewrite this as 72 = 2^3 x 3^2 in exponential form.
It is: 2^2 times 3^3 = 108