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The subsets of all the square roots of 144 are {+12} and {-12}.

The single set that includes all the square roots of 144 is {+12, -12}.

That's all there are. There are no more.

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Q: What are the subsets of the real numbers of square root of 144?
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What is the subsets of real numbers for square root of 169?

{natural, whole, integers, rational, real}


What real number subsets are square root numbers in?

if there is no integer answer, they are irrationalex. sq root 5 is irrational but sq root 9 = 3 so it is rational,integer, counting numberif you are taking sq root of a negative they are imaginary ex. sqroot (-9)=========================The square roots of all positive real numbers are real numbers.The square roots of all negative real numbers are imaginary numbers.Some square roots are rational, but the vast majority are irrational.


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Which subset does the square root of 13 belong in?

It belongs to many many subsets including: {sqrt(13)}, The set of square roots of integers The set of square roots of primes The set of square roots of numbers between 12 and 27 {3, -9, sqrt(13)} The set of irrational numbers The set of real numbers


Is non-real numbers exist?

no, every number is a real number --- There are numbers that are not real numbers. They are called imaginary numbers, and have the property that when they are squared, the result is negative. The square root of -1 is called i, and the square root of any other negative number is i times the square root of the absolute value of the number. So the square root of -4 is 2i.


Is the square root of any real number always a real number?

No, it is not, because real numbers include negative numbers. The square root of a negative number is an imaginary number


Is the square root of -4 irrational?

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What is the square root of -8x3?

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Is the square root of negative 3 an irrational or a real number?

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