2 with an exponent of 3 and 3. 2x2x2=8x8=24.
24 = 23 x 31
24
24*35 = 3888
24 x 3 x 54 = 30,000
2 with an exponent of 3 and 3. 2x2x2=8x8=24.
It is: 24 = 16
24 = 23 x 31
24
24 x 52
24 x 52
24*35 = 3888
24 x 3 x 54 = 30,000
You can define any base you like and calculate an appropriate exponent or, you can pick an exponent and calculate the base. So you can have base 25, with exponent 2 or base 5 and exonent 4 or base e (the base for natural logarithms) and exponent 6.437752 (to 6 dp) or base 10 and exponent 2.795880 (to 6 dp) or base 2 and exponent 9.287712 etc or base 8.54988 (to 3 dp) and exponent 3 or base 3.623898 (to 3 dp) and exponent 5 etc There is no need for the base to be an integer or even rational. Probably the most important bases in advanced mathematics is e, which is a transcendental number. Similarly, there is no need for the exponent to be an integer.
24 x 37 = 592
3,888 = 24 x 35
In exponent notation it is: 24*32*53 = 18000