1. Identify significant digits
Non-zero digits are significant, leading zeros are not, and zeros between significant digits are significant.
Count significant figures, round values to a chosen number of significant digits, convert numbers to scientific notation, and apply precision rules to arithmetic calculations.
Choose a mode to round a number, count significant figures, or calculate with sig-fig arithmetic rules.
The calculator identifies meaningful digits, ignores non-significant leading zeros, preserves significant trailing zeros, and applies the correct precision rule for the selected operation.
Non-zero digits are significant, leading zeros are not, and zeros between significant digits are significant.
The next digit determines whether the final retained digit stays the same or increases by one.
Multiplication and division use significant figures; addition and subtraction use decimal-place precision.
Place = 10^(floor(log10(|x|)) − significant figures + 1)
Result uses the fewest significant figures among the inputs
Result uses the least precise decimal-place position among the inputs
Leading zeros only locate the decimal point, so this value has two significant figures.
Zeros between non-zero digits are significant, so this value has four significant figures.
Trailing zeros after a decimal point indicate measured precision, giving four significant figures.
Without a decimal point or scientific notation, trailing zeros are usually treated as ambiguous and not significant.
Important rules for counting and calculating significant figures.
Significant figures are the meaningful digits in a measured or reported value, including digits that show its precision.
No. Zeros before the first non-zero digit only position the decimal point and are not significant.
Yes. Interior or captive zeros are always significant.
Trailing zeros after a decimal point are significant. Whole-number trailing zeros without a decimal point are usually ambiguous.
Round the final result to the same number of significant figures as the input with the fewest significant figures.
Round the result to the least precise place value among the input numbers rather than the fewest significant figures.
Scientific notation makes the intended significant figures clear, especially for very large or very small numbers and whole numbers ending in zeros.
Usually keep extra digits during intermediate steps and round only the final result to avoid accumulated rounding error.