Generally, no. But one of the infinite roots of 1 is 1.
Otherwise one of the roots would be nearly 1. Just a whisker smaller than 1 if it was the root of a number between 0 and 1, and just a whisker larger if the number was greater than 1.
If the number was less than 0, then the roots would vary from the real to the complex numbers.
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infinite
Infinite surd is a term used in mathematics. The definition of an infinite surd is a never ending irrational number with an exact value that would be left in square root form.
There are an infinite number of them. One of them is[ the square root of(0.0000000100001) ]
It is Irrational. If you have an infinite number of decimals that doesn't have a specific pattern, then it is rational!
{-1, -1, 1 and 4} is one of an infinite number of possible answers.{-1, -1, 1 and 4} is one of an infinite number of possible answers.{-1, -1, 1 and 4} is one of an infinite number of possible answers.{-1, -1, 1 and 4} is one of an infinite number of possible answers.
The square root of pi is a finite number. However, it is an irrational number. That implies that if you try to write it out as a decimal number, it will stretch out to an infinite number of decimal places to the right of the decimal point.
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An infinite number are possible.
Pi is an irrational number and has an infinite number of digits after the decimal point. So does its square root.
The square root of pi is an irrational number, meaning it has an infinite number of digits after the decimal point. It is typically rounded to a limited number of digits for practical use, such as 3.1416. However, if you are looking for the actual number of digits in the square root of pi, it would be infinite.
Yes.
infinite
Infinite.
There are an infinite number of possibilities
One possible classification is finite, countably infinite and uncountably infinite.
Infinite surd is a term used in mathematics. The definition of an infinite surd is a never ending irrational number with an exact value that would be left in square root form.