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Answered 2016-10-12 23:15:36

Positive numbers can be either rational or irrational.

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Positive rational = 0.0000000001Positive irrational = 0.0000000001*pi


That is a rational number, as are all of the integers.



Any positive number is always bigger than a negative number - whether they are rational or irrational.


there are infinitely many positive rational and irrational numbers smaller than .0001. Try .00001. Or how about π/100000.


It is irrational. * The square root of any positive integer, except of a perfect square, is irrational. * The product of an irrational number and a rational number (except zero) is irrational.


Irrational. The square root of a positive integer is either an integer, or an irrational number.


No rational number is an irrational number.


No, they are complementary sets. No rational number is irrational and no irrational number is rational.Irrational means not rational.


Is the number 65.4349224 a rational number or irrational


It is rational. The root of a perfect square, such as 4, is rational; the root of any positive integer that is not a perfect square is an irrational number.



it is a rational number but 4.121314..... is an irrational no


Such a product is always irrational - unless the rational number happens to be zero.


Any integer, whether positive or negative, is a rational number.


The product of a rational and irrational number can be rational if the rational is 0. Otherwise it is always irrational.


No.A rational times an irrational is never rational. It is always irrational.


No number is irrational and rational.


If an irrational number is added to, (or multiplied by) a rational number, the result will always be an irrational number.


Irrational. If you multiply a rational number by an irrational number, you will always get an irrational number (except if the rational number happens to be zero).


The sum of a rational and irrational number must be an irrational number.


When a rational numbers is divided by an irrational number, the answer is irrational for every non-zero rational number.






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