Square Root Calculator (2024)

Use this online calculator to easily calculate the square root of a given number, including fractions. Quick and easy square root finder.

Quick navigation:

  1. What is a square root?
  2. How calculate a square root
  3. Properties and practical application of square roots
  4. Commonly used square roots
  5. Does the calculator support fractions?

What is a square root?

The square root of a number answers the question "what number can I multiply by itself to get this number?". It is the reverse of the exponentiation operation with an exponent of 2, so if r2 = x, then we say that "r is the root of x". Finding the root of a number has a special notation called the radical symbol: √. Usually the radical spans over the entire equation for which the root is to be found. It is called a "square" root since multiplying a number by itself is called "squaring" as it is how one finds the area of a square.

For every positive number there are two square roots - one positive and one negative. For example, the square root of 4 is 2, but also -2, since -2 x -2 = 4. The negative root is always equal in value to the positive one, but opposite in sign. You can see examples in the table of common roots below. Most often when talking about "the root of" some number, people refer to the Principal Square Root which is always the positive root. This is the number our square root calculator outputs as well.

In geometrical terms, the square root function maps the area of a square onto its side length. The function √x is continuous for all nonnegative x and differentiable for all positive x.

How calculate a square root

Unlike other mathematical tasks, there is no formula or single best way to calculate the square root of a real number. Still, there is a handy way to find the square root of a number manually. The algorithm to find √a is as follows:

  1. Start with a guess (b). If a is between two perfect squares, a good guess would be a number between those squares.
  2. Divide a by b: e = a / b. If the estimate e is an integer, stop. Also stop if the estimate has achieved the desired level of decimal precision.
  3. Get a new guess b1 by averaging the result of step #2 e and the initial guess b: b1 = (e + b) / 2
  4. Go to step #2 using b1 in place of b

For example, to find the square root of 30 with a precision of three numbers after the decimal point:

Step 1: a = 30 is between 25 and 36, which have roots of 5 and 6 respectively. Let us start with b = 5.5.
Step 2: e = a / b = 30 / 5.5 = 5.45(45). Since b is not equal to e (5.500 ≠ 5.454), continue calculation.
Step 3: b1 = (5.45 + 5.5) / 2 = 5.47727(27)
Step 4: e = 30 / 5.47727 = 5.477178. Since b1 = e = 5.477 within three position after the decimal point, stop the square root-finding algorithm with a result of √30 = 5.47727(27).

Checking the outcome against the square root calculator output of 5.477226 reveals that the algorithm resulted in a correct solution. While the above process can be fairly tedious especially with larger roots, but will help you find the square root of any number with the desired decimal precision.

Properties and practical application of square roots

Square roots appear frequently in mathematics, geometry and physics. For example, many physical forces measured in quantities or intensities diminish inversely proportional to the square root of the distance. So, gravity between two objects 4 meters apart will be 1/√4 relative to their gravity at 0 meters. The same is true for radar energy waves, radio waves, light and magnetic radiation in general, and sound waves in gases. It is usually referred to as the "inverse-square law".

The square root is key in probability theory and statistics where it defines the fundamental concept of standard deviation.

Square Root Calculator (1)

Plotting the results from the square root function, as calculated using this square root calculator, on a graph reveals that it has the shape of half a parabola.


Commonly used square roots

Table of commonly encountered square roots:

Commonly used square roots
Square Root ofPositive rootNegative root
√11-1
√21.4142-1.4142
√31.7321-1.7321
√42-2
√52.2361-2.2361
√82.8284-2.8284
√93-3
√103.1623-3.1623
√164-4
√255-5
√366-6
√497-7
√648-8
√819-9
√10010-10
√102432-32

The calculations were performed using this calculator.

Does the calculator support fractions?

Yes, simply enter the fraction as a decimal number (use dot as a separator) and you will get the corresponding root. For example, to compute the square root of 1/4 simply enter 0.25 in the number field, press "Calculate" and you will get 0.50 as ouput. If you are having difficulty converting a fraction to a decimal number, you will find our fraction to decimal converter handy.

Square Root Calculator (2024)

FAQs

How to calculate a square root? ›

The square root of a number is a number that when multiplied by itself gives the actual number. For example, 2 is the square root of 4, and this is expressed as √4 = 2. This means when 2 is multiplied by 2 it results in 4 and this can be verified as 2 × 2 = 4.

How to do a square root without a calculator? ›

Long division method
  1. Separate your square root base into pairs. ...
  2. Find the largest square that divides into the first number or pair. ...
  3. Subtract the square from the first number or pair. ...
  4. Drop down the next pair. ...
  5. Multiply the first digit of the square by two. ...
  6. Set up the next factor equation.
Jul 1, 2024

How to square root a number calculator? ›

Some calculators have you input the number first and then push the square root button. Others have you push the square root button first followed by your number. So to find the square root of 5, for example, you'll push these buttons if your calculator has you input the number first.

How to find square root trick? ›

Example: Find the square root of 40401.
  1. Step 1: Pair the digits from right to left, 404 01.
  2. Step 2: Check the unit digit of the number and compare it with the above table. ...
  3. Step 3: Now, the first three digits are 404. ...
  4. Step 4: Hence, the required square root is 201.

How do I solve for roots? ›

The roots of a quadratic equation ax2 + bx + c = 0 can be found using the quadratic formula that says x = (-b ± √ (b2 - 4ac)) /2a. Alternatively, if the quadratic expression is factorable, then we can factor it and set the factors to zero to find the roots.

How to calculate the square of a number? ›

Finding the Square of a Number is a simple method. We need to multiply the given number by itself to find its square number. The square term is always represented by a number raised to the power of 2. For example, the square of 6 is 6 multiplied by 6, i.e., 6×6 = 62 = 36.

How do I solve by square roots? ›

To solve an equation by using the square root property, you will first isolate the term that contains the squared variable. You can then take the square root of both sides and solve for the variable. Make sure to write the final answer in simplified form.

What are the steps for the square root method? ›

Step 1: Divide the given number by divisor by identifying the suitable integer. Step 2: Multiply the divisor and integer (quotient) to get the number to be subtracted from the dividend. Step 3: Subtract the number from the dividend. Step 4: Bring down the remainder and another digit (if any) from the dividend.

How to simplify a square root? ›

Simplifying a Square Root

Step 1: Find the prime factors of the number inside the radical sign. Step 2: Group the factors into pairs. Step 3: Pull out one integer outside the radical sign for each pair. Leave the other integers that could not be paired inside the radical sign.

How to calculate the area? ›

How to calculate the area. To work out the area of a square or rectangle, multiply its height by its width. If the height and width are in cm, the area is shown in cm². If the height and width are in m, the area is shown in m².

What is √48 simplified? ›

√48 = 4√3. Therefore, the square root of 48 in radical form is 4√3.

What is the rule for calculating square roots? ›

What are the rules of square roots? Square roots can distribute over multiplication and division, just like exponents. Also, like exponents, square roots cannot distribute over addition or subtraction.

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