I cannot see how odd or even will determine the number of digits in the square root. For example:100 is an even number, and its square root is 10 (2 digits)121 is an odd number, and its square root is 11 (2 digits)Maybe the question is not phrased properly for what the questioner is asking.
No.
-1,0,or 1 the negative square root of four is negative two and the square root of four is two
The number of digits in the square root of a number depends on the number. If it is a square number, the square root will have a finite number of digits. If the number is not a square number then the square root will be an irrational number with an infinite, non-repeating decimal representation. In both cases, the number of digits before the decimal point, in the square root of x will be the rounded value of 1+0.5*log10(x)
The square root of 5 is approximately 2.236. It is an irrational number meaning we can not calculate its value no matter how many digits we can find. At one point a NASA computer was used to calculate the first million digits of the number.
I cannot see how odd or even will determine the number of digits in the square root. For example:100 is an even number, and its square root is 10 (2 digits)121 is an odd number, and its square root is 11 (2 digits)Maybe the question is not phrased properly for what the questioner is asking.
No.
-1,0,or 1 the negative square root of four is negative two and the square root of four is two
The number of digits in the square root of a number depends on the number. If it is a square number, the square root will have a finite number of digits. If the number is not a square number then the square root will be an irrational number with an infinite, non-repeating decimal representation. In both cases, the number of digits before the decimal point, in the square root of x will be the rounded value of 1+0.5*log10(x)
The square root of 5 is approximately 2.236. It is an irrational number meaning we can not calculate its value no matter how many digits we can find. At one point a NASA computer was used to calculate the first million digits of the number.
The square root of four twenty-fifths, is two fifths, because of the fact that the square root of four is two and the square root of twenty-five is five.
It is an irrational number, but rounded to 10 digits, the square root of 3.43 is 1.852025918.
24√3 or 41.5692194 or 41.57, to the justified number of significant digits since 1728 has only four.
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.
4
it is 13.92 and then a lot of numbers come after it but that is the first two digits that come after the decimal point
252 = 625