They are 64 and 36
The two square numbers that add up to 100 are 36 and 64. Specifically, 6 squared (6²) equals 36, and 8 squared (8²) equals 64. When combined, 36 + 64 equals 100.
The two square numbers that have a difference of 51 are 64 and 13. Specifically, (8^2 = 64) and (4^2 = 16). The difference (64 - 13 = 51). Thus, the two square numbers are 64 and 13.
The two square numbers that have a difference of 51 are 64 and 13. Specifically, (8^2 = 64) and (7^2 = 49), giving (64 - 49 = 15). Therefore, the two square numbers are (8^2) and (7^2).
They are 36 and 64
They are 64 and 36
Well, butter my biscuit! The two square numbers that add up to 85 are 64 and 21. 64 is 8 squared, and 21 is 4 squared. So, there you have it, darlin' - 8 squared plus 4 squared equals 85.
The two square numbers that add up to 100 are 36 and 64. Specifically, 6 squared (6²) equals 36, and 8 squared (8²) equals 64. When combined, 36 + 64 equals 100.
The two square numbers that have a difference of 51 are 64 and 13. Specifically, (8^2 = 64) and (4^2 = 16). The difference (64 - 13 = 51). Thus, the two square numbers are 64 and 13.
The two square numbers that have a difference of 51 are 64 and 13. Specifically, (8^2 = 64) and (7^2 = 49), giving (64 - 49 = 15). Therefore, the two square numbers are (8^2) and (7^2).
The two square numbers that have a product of 64 are 8 and 8. A square number is a number that is the result of multiplying an integer by itself, so 8 x 8 = 64. Both 8 and 64 are perfect squares because they are the square of an integer.
36 and 64
64 itself is a square. There are no other two squares that add up to 64.
82
They are 36 and 64
They are 36 and 64
The pair of square numbers that add up to 80 is 16 and 64. Specifically, (4^2 = 16) and (8^2 = 64), since (16 + 64 = 80).