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Q: Is 5.2 an integer

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-52 and 52

52. It is an integer!

52 is an integer, not a fraction. But you could express it as a fraction in the form 52/1.

Any pair of numbers of the form 52*k : k where k is an integer.

If you square an integer, you get an integer, so it is already rounded to the nearest tenth.

-52x <= 7 (-52x)/(-52) >= 7/(-52) {divide both sides by -52, and reverse the inequality when dividing by a negative. x >= -7/52 There is no largest integer value for x. If the question was ... greater than or equal to ... then the solution would be x <= -7/52, and the largest integer value would be -1.

They are 12 members from the infinite set of numbers of the form 52*k where k is an integer.

Any number of the form k*52 where k is an integer.

All numbers of the form 52k where k is a integer.

ermm i might be thinking of something else but i think its 53?

If r is an integer then r = 1, 2 or 4.

The fifth square number of a positive integer is equal to 52 = 25.

The only solution is that a = 5 then 25a = 25 x 5 = 52 x 5 = 53.

It is any number of the form (28*x)/(52*x) where x is a non-zero integer or where 1/x is a common factor of 28 and 52.

The second integer is 51.The integers are 50, 51, and 52, so therefore the second integer is 51. This problem can be solved using this method:(x) + (x+1) + (x+2) = 1533x + 3 = 1533x = 150x = 50If x = 50, then (x+1) = 51, and (x+2) = 52.

528 is an integer and there is no sensible way to represent it as a mixed fraction.

0

No, it is an integer.

some are but most are not. There are actually an infinite number that are, 13, 26, 39, 52, etc. are all divisible by 13.

Since the answer is meant to be an integer it seems reasonable to assume that the question is about the additive opposite. That being the case, the answer is -42.

Yes, the square of an integer is always an integer.

The absoluate value of a positive integer is the integer itself.The absoluate value of a positive integer is the integer itself.The absoluate value of a positive integer is the integer itself.The absoluate value of a positive integer is the integer itself.

Yes, always.

1448 is an integer.

The positive integer factors of 416 are: 1, 2, 4, 8, 13, 16, 26, 32, 52, 104, 208, 416

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