Q: What is the method you use to square root?

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The square root of 2304 is 48

The square root of 28224 is 168

One way is trial and error. The square root of 121 is 11. So the square root of 120 is just under that. 10.9 squared is 118.81 10.95 squared is 119.9. 10.954 squared is 119.99 which is close enough for me.

There are a number of ways. The simplest would be to use a calculator (you probably would not know how to use log tables or a slide rule!) You could find a square root graphically; use numerical methods such as the Newton-Raphson method (not very fast but simple). There is also a method similar to long division, but that is rather complicated.

We will walk through the definition of the square root of 63, find out whether the square root of 63 is rational or irrational, and see how to find the square root of 63 by the long division method. ... Square Root of 63.

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To calculate the square root of 7.75 we use Hero's Method. By following Heroβs method we get: The square root of 7.75 = 2.7838 While round off 2.7838 to 3 Thus, the square root of 7.75 is 3 approximately

The square root of 28224 is 168

The square root of 2304 is 48

You can use the Math.sqrt() method.

35.0713558335 The easiest method is to use a calculator: first press the key marked with a √ (square root symbol) then type in the number 1230 and press enter.

The square root of 196 is 14, no matter what method you use. If you work a math problem two different ways and get different answers, then at least one of them is wrong, and there's a good chance that both of them are.

One way is trial and error. The square root of 121 is 11. So the square root of 120 is just under that. 10.9 squared is 118.81 10.95 squared is 119.9. 10.954 squared is 119.99 which is close enough for me.

There are a number of ways. The simplest would be to use a calculator (you probably would not know how to use log tables or a slide rule!) You could find a square root graphically; use numerical methods such as the Newton-Raphson method (not very fast but simple). There is also a method similar to long division, but that is rather complicated.

Here is a website with a method for determining the square root of any number: http://www.jimloy.com/arith/sqrt.htm Using a calculator, the closest square root of 4086248736408 to 8 significant digits is 2021447.2. You need to use the method referenced in the URL to find the answer to additional significant digits. If the answer can be divided by any whole number and the result is a whole number, then the square root is a rational number.

Square roots are computed using the Babylonian method, calculators, Newton's method, or the Rough estimation method. * * * * * Or the Newton-Raphson method.

There is, in general, no simple method.

No; you can prove the square root of any positive number that's not a perfect square is irrational, using a similar method to showing the square root of 2 is irrational.