There is not a number that is a perfect square and perfect cube between 1 and 25.
There is not a number that is a perfect square and perfect cube between 1 and 25.
There is not a number that is a perfect square and perfect cube between 1 and 25.
There is not a number that is a perfect square and perfect cube between 1 and 25.
It is the smallest composite number that is both a perfect square and a perfect cube.
26, known as Fermat's Sandwich Theorem.
64EDIT: Someone suggested any even number multiplied by itself, but this is not true as the result would not be a cube number. The only number that satisfies the criteria in the question is 64, because;it has 2 digitsit is a square number (8 x 8 = 64)it is a cube number (4 x 4 x 4 = 64)
Every number has a square root and cube root. e.g. 2^(1/2) = 1.414213562..... 2^(1/3) = 1.25992105..... Both are irrational AND RECUR TO INFINITY. Similarly every other number.
64 = 4 cubed and 8 squared.
A square number is the product of an integer multiplied by itself, while a cube number is the product of an integer multiplied by itself twice. Between 50 and 100, the square numbers are 64 (8²) and 81 (9²), and the only cube number is 64 (4³). Thus, both a square and cube number within that range is 64.
1 and 64
It is the smallest composite number that is both a perfect square and a perfect cube.
It is both because 1,000,000 is a perfect cube and a perfect square number
Yes it is both
46656 is the square of 216 and the cube of 36 2^6 x 3^6 is the square of a cube and the cube of a square.
Cube root.
1
729
they both have 4 sides, they both have a square at the bottom
4
· it has 2 digits · it is a square number (8 x 8 = 64) · it is a cube number (4 x 4 x 4 = 64)