25 is 2 x 2 X 2 X 2x 2.
12^2
0.07050 in exponential form is: 7.05 × 10-2 or7.05E-2
53x53 in exponential form is: 532
4 times 256^1 2^8 4^4 16^2
fifty four * * * * * What has that to do with exponential form? 54 = 2*33
To express 270 in exponential form, we can factor it into its prime factors. The prime factorization of 270 is (2 \times 3^3 \times 5). Therefore, in exponential form, it can be represented as (2^1 \times 3^3 \times 5^1).
9^2
It is: 2^2 times 3^3 = 108
To express 1568 in exponential form, first, we can factor it into its prime factors. The prime factorization of 1568 is (2^4 \times 7^1 \times 11^1). Therefore, in exponential form, 1568 can be written as (2^4 \times 7^1 \times 11^1).
To express 38 in exponential form, we can write it as (38 = 2 \times 19). Since 2 and 19 are both prime numbers, we cannot simplify this further. Therefore, we can express 38 as (2 \times 19) in exponential form.
The number 4096 can be expressed in exponential form as ( 2^{12} ). This is because 4096 is the result of multiplying 2 by itself 12 times (2 × 2 × 2 × ... × 2). Therefore, the exponential representation of 4096 is ( 2^{12} ).
It is: 2^2 times 3^3 = 108
12^2
To express (2 \times 2 \times 2 \times 6 \times 6 \times 6) in exponential form, first count the number of times each base appears. The base 2 appears 3 times, and the base 6 appears 3 times. Therefore, the expression can be written in exponential form as (2^3 \times 6^3).
2 squared times 7
The number 128 can be expressed in exponential form as (2^7), since (2) multiplied by itself (7) times equals (128) (i.e., (2 \times 2 \times 2 \times 2 \times 2 \times 2 \times 2 = 128)). Alternatively, it can also be represented as (128^1) or (1.28 \times 10^2), depending on the context.
To write 5000 in exponential form, you first express it as a product of its prime factors. The prime factorization of 5000 is (5^4 \times 2^3). Therefore, in exponential form, it can be represented as (5^4 \times 2^3) or approximately (5 \times 10^3) if using scientific notation.