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Q: Find two numbers whose difference is 3 and whose squares total 65?

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They are: 7 and 5 because 49-25 = 24

Every odd number greater than one is the difference of two squares. This includes all the odd prime numbers. To find the two numbers whose difference of squares equals a particular odd number, divide the odd number by 2. The two numbers are the integers immediately below and above that dividend. For example, 17 is the difference of two squares. Divide 17 by 2 and get 8.5. The two numbers are 8 and 9. 92 - 82 = 81 - 64 = 17.

They are perfect squares.

The numbers are 13 and 14.

8

36

perfect squares

12 and 12, whose squares will be 144 each. If either of the numbers is smaller than 12, then the other will be larger than 12 and its square will be larger than 144.

The numbers are 12 and 14.

The numbers are 12 and 14.

17 and 18

15 and 16

62 and 63

12 and 13

Two primes whose squares have a difference of 42 are 7and 11.

They are squares of rational numbers. there is no particular name for them.

The two numbers whose sum is 58 and whose difference is 16 are 21 and 37.

If you're looking for two numbers whose difference is 152, there are an infinite number of solutions. Try 155 and 3.

12 and 24?

2 and 1 .their sum is 3 .difference is 1

5 and 3 are two numbers less than 7, whose difference is 2.

The proposition in the question is simply not true so there can be no answer!For example, if given the integer 6:there are no two perfect squares whose sum is 6,there are no two perfect squares whose difference is 6,there are no two perfect squares whose product is 6,there are no two perfect squares whose quotient is 6.

12 and 13 (and you may note that 12+13 = 25)

Consecutive numbers are whole numbers whose difference is 1.

=The Two numbers are 41 and 13.=