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=FUNCTIONS

MODE.SNGL()

Statistical

Returns the most frequently occurring number in a data set.

MODE.SNGL(number1, [number2], ...)

MODE.SNGL returns whichever number appears most often among its arguments. If no value repeats, it returns a #N/A error, since there is no mode.

When two or more values are tied for the most frequent, MODE.SNGL returns only the first one encountered in the data, not all of them; use MODE.MULT (entered as an array formula) to see every tied mode.

MODE.SNGL replaces the older MODE function, which Excel still supports for compatibility but no longer recommends. Both return the same result for a data set with a single, unambiguous mode.

Arguments

number1
The first number, cell, or range.
number2, ...optional
Additional numbers, cells, or ranges, up to 255 total.

Examples

=MODE.SNGL(1,2,2,3,3,3,4)
3

3 appears three times, more than any other value.

=MODE.SNGL(5,5,6,6,7)
5

5 and 6 are tied at two occurrences each; MODE.SNGL returns the first one encountered, 5.

Tips / Tricks / Hacks

MODE.SNGL tricks, tips, and workbook hacks

MODE.SNGL is easier to remember when you learn the small patterns around it: where it fits, what can break it, and how to combine it with neighboring functions.

Use these practical notes as a working checklist before putting the formula into a real report, model, dashboard, tracker, or reusable template.

Quick wins before you trust the result

  • Start with the simplest MODE.SNGL formula that answers the question, then add conditions or error handling only when needed.
  • Keep input ranges consistent in size, shape, and meaning.
  • Test the formula on one row or one small sample before filling it down a large workbook.
  • Add a note beside important formulas explaining what business question they answer.
  • Pair the formula with related checks so mistakes are easier to spot.
MODE.SNGL tricks and formula patterns
Trick or hackFormula patternBest useWatch out
Build the formula in layersMODE.SNGL(number1, [number2], ...)When the full formula feels hard to read or debug.Confirm each argument or nested function before combining everything.
Use structured references=MODE.SNGL(Table1[Column])Excel Tables make formulas easier to read and expand automatically.Rename table columns carefully so formulas remain clear.
Protect against bad input=IFERROR(MODE.SNGL(...),"Check input")Dashboards and shared templates where users need a readable message.Do not hide errors until you understand why they happen.
Document the expected resultAdd a note or nearby labelReusable workbooks, finance models, templates, and handoff files.A clever formula without context becomes expensive to maintain.
Common mistakes and how to fix them
MistakeWhat it looks likeFix
Using a wider range than intendedThe result changes unexpectedly after new rows or helper columns are added.Use Excel Tables or named ranges to make the intended input explicit.
Mixing text, numbers, dates, and blanksThe answer technically works but does not match the business meaning.Clean and validate the source column before applying the function.
Copying a formula with moving referencesThe first row works; later rows drift into the wrong range.Use absolute references, structured references, or named ranges where needed.
Decision table: when the formula is ready for real work
ScenarioUseAvoid
You need a quick answer from clean dataMODE.SNGL with the smallest clear rangeOverbuilding the formula with unnecessary wrappers
The result will appear in a dashboardAdd checks, labels, and readable fallbacksLeaving raw errors or unexplained blanks for viewers
The workbook will grow over timeExcel Tables, named ranges, or structured referencesHard-coded ranges that miss new rows
The data comes from another systemClean inputs before summarizing or transformingAssuming pasted data has correct types and spacing

Practice drills

  1. Write MODE.SNGL once with direct cell references and once with an Excel Table reference.
  2. Break the formula on purpose, then use the error message to identify which argument failed.
  3. Create a small before/after example that explains the formula to another learner.

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