➗ Long Division Calculator

Divide any two numbers and see the full written long division, step by step — with remainders, decimal answers, repeating decimals and decimal divisors.

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Exact decimal (repeating part in parentheses)
32.(571428)

Worked long division

       3 2.5 7 1
    _____________
 7 ) 2 2 8.0 0 0
    -2 1
    ‾‾‾‾
       1 8
      -1 4
      ‾‾‾‾
         4 0
        -3 5
        ‾‾‾‾
           5 0
          -4 9
          ‾‾‾‾
             1 0
              -7
            ‾‾‾‾
               3

5 steps · each step: divide, multiply, subtract, bring down the next digit.

What Long Division Calculator Does

This long division calculator lays out the written method exactly as it is taught in school — the divisor outside the bracket, the quotient on top, and each multiply-and-subtract step stacked underneath — so you can check homework line by line or see where a step went wrong. Every step is free to view, with no login.

Results come in two forms: a quotient and remainder (228 ÷ 7 = 32 R 4), or a decimal. When a decimal never ends, the calculator finds the repeating block and shows it in parentheses, so 228 ÷ 7 = 32.(571428) means the six digits 571428 repeat forever. Arithmetic is done on whole-number integers internally, so dividends up to 17 digits come out exact rather than rounded.

For a decimal divisor, the calculator first shifts both decimal points the same number of places — 12.5 ÷ 0.25 becomes 1250 ÷ 25 — which leaves the answer unchanged and turns the problem into one you can do by hand.

How to Use Long Division Calculator

  1. Enter the dividend (the number being divided) and the divisor
  2. Choose quotient and remainder, or a number of decimal places
  3. Read the quotient, remainder and exact decimal with any repeating part
  4. Follow the worked layout: divide, multiply, subtract, bring down

Formula Used by Long Division Calculator

The four repeating steps

Divide → Multiply → Subtract → Bring down, until no digits remain

Worked example

228 ÷ 7

  1. 7 into 22 goes 3 times; 3 × 7 = 21; 22 − 21 = 1
  2. Bring down 8 → 18
  3. 7 into 18 goes 2 times; 2 × 7 = 14; 18 − 14 = 4
  4. No digits left

Result: 32 remainder 4. Check: 7 × 32 + 4 = 228.

Finding a repeating decimal

Keep dividing after the decimal point by bringing down zeros; when a remainder repeats, the digits between the two appearances repeat forever

Worked example

1 ÷ 7

  1. Remainders: 1 → 3 → 2 → 6 → 4 → 5 → 1
  2. Remainder 1 has come back after six digits

Result: 1 ÷ 7 = 0.(142857)

Common Fractions as Decimals

Parentheses mark the repeating block. A fraction in lowest terms terminates only when its denominator has no prime factors other than 2 and 5.

DivisionDecimalTerminates?
1 ÷ 20.5Yes
1 ÷ 30.(3)No
1 ÷ 40.25Yes
1 ÷ 60.1(6)No
1 ÷ 70.(142857)No
1 ÷ 80.125Yes
1 ÷ 90.(1)No
1 ÷ 110.(09)No
1 ÷ 120.08(3)No
1 ÷ 160.0625Yes

How to Read Your Result

Zeros inside the quotient

If the number you bring down is still smaller than the divisor, the divisor goes into it zero times and a 0 must be written in the quotient before bringing down the next digit. Skipping that zero is the most common long division mistake — 612 ÷ 6 is 102, not 12.

Remainder or decimal?

Use a remainder when things cannot be split, such as 228 students in buses of 7 (32 full buses and 4 students left over). Use a decimal for measurements and money. A remainder can always be written as a fraction too: 32 R 4 is 32 4⁄7.

Limitations & Accuracy Notes

  • The decimal expansion looks for a repeating block within the first 60 digits after the point; a longer period is cut off and marked with …, although the digits shown are still exact.
  • Inputs are limited to positive numbers, with dividends under 18 digits and divisors under 12. For a negative problem, divide the absolute values and apply the sign: the quotient is negative when exactly one number is negative.
  • The layout follows the U.S. style; some countries write the divisor and quotient in different places, but the steps are the same.

Frequently Asked Questions

How does long division work?
Work from left to right through the dividend, repeating four steps: divide (how many times does the divisor go into the current number?), multiply (the divisor by that digit), subtract, and bring down the next digit. When there are no digits left, what remains is the remainder — or you add a decimal point and zeros and keep going.
How do I do long division with a remainder?
Choose “Quotient and remainder”. For 228 ÷ 7 the answer is 32 remainder 4, because 7 × 32 = 224 and 228 − 224 = 4. The remainder is always smaller than the divisor; it can also be written as a fraction, 32 4/7.
How do I divide by a decimal?
Move the decimal point in the divisor to the right until it is a whole number, and move the dividend’s point the same number of places. 12.5 ÷ 0.25 becomes 1250 ÷ 25 = 50. The calculator does this first and tells you how far both points moved.
What does the repeating part in parentheses mean?
Some divisions never end — the same digits repeat forever. 1 ÷ 3 = 0.333… is shown as 0.(3), and 228 ÷ 7 = 32.571428571428… as 32.(571428). A fraction gives a repeating decimal whenever the divisor, in lowest terms, has a prime factor other than 2 or 5.
Why is there a zero in the middle of my answer?
Whenever the number you have brought down is still smaller than the divisor, that quotient digit is 0 and you bring down another digit. Forgetting to write that 0 is the most common long-division mistake — it shifts every later digit and makes the answer ten times too small.
How can I check a long division answer?
Multiply the quotient by the divisor and add the remainder; you should get the dividend back. For 228 ÷ 7: 32 × 7 + 4 = 228.

References & Further Reading

By OnlineToolHubs Team • September 2026