No
The cube root of 1125 can be calculated as follows: ( \sqrt[3]{1125} ). Simplifying, we have ( 1125 = 5^3 \times 9 ), which means ( \sqrt[3]{1125} = 5 \times \sqrt[3]{9} ). The approximate value of the cube root of 9 is about 2.08, so the cube root of 1125 is approximately ( 5 \times 2.08 ), which equals about 10.4. Thus, ( \sqrt[3]{1125} \approx 10.4 ).
no it is not 4 is a perfect cube
No, 148 is not a perfect cube.
No, 2 is neither a perfect square nor a perfect cube.
Yes, 1 is considered a perfect cube because it can be expressed as (1^3), which equals 1. A perfect cube is defined as a number that can be written as the cube of an integer, and since 1 is the cube of the integer 1, it qualifies as a perfect cube.
no it is not 4 is a perfect cube
If by cube you mean perfect cube (a cube of an integer), then no, and the nearest perfect cube is 81.
No, 148 is not a perfect cube.
No, 2 is neither a perfect square nor a perfect cube.
Yes, 1 is considered a perfect cube because it can be expressed as (1^3), which equals 1. A perfect cube is defined as a number that can be written as the cube of an integer, and since 1 is the cube of the integer 1, it qualifies as a perfect cube.
Because they are square/cube of an integer.
It is both because 1,000,000 is a perfect cube and a perfect square number
A cube root of a perfect cube has only one dimension. A perfect cube is a number that can be obtained by multiplying an integer by itself three times. Taking the cube root of a perfect cube will give you the original integer value, effectively reducing the dimensionality back to one.
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.
Not a perfect cube.
81 is a perfect squarebecause 81 = 9*9. It is NOT a perfect cube.
169 is neither a perfect cube nor a perfect square. A perfect cube is a number that can be expressed as the cube of an integer, and 169 is equal to (13^2) (a perfect square) but not (n^3) for any integer (n). Thus, it does not meet the criteria for being a perfect cube.