When a bottle cap diameter is read as , a calculator can produce many digits after the area is calculated. The resolution of the measuring tool limits how many of those digits can be reported. rules determine which digits belong in the final result.
3.12 cm
Significant-figure
Significant figures are the digits retained to communicate the resolution of a measured value. Write the value only to the decimal place supported by the instrument. The last reported digit shows the limit of the reading and can change when the value is rounded.
The significant-figure rule keeps a report from claiming more precision than the measurement tool supports.
Situation
Question to answer
Reading one measurement
Which digits are actually supported by the tool?
Addition and subtraction
Which data has the smallest number of decimal places?
Multiplication and division
Which data has the smallest number of significant figures?
When a calculation tracks only significant figures, multiplication and division results are rounded to the fewest significant figures among the measured values. This shortcut does not replace a calculation of measurement uncertainty.
Suppose a rectangle has width 12.455 cm and length 35.2 cm.
A=l×w=35.2 cm×12.455 cm=438.416 cm2→438 cm2
The value 12.455 cm has 5 significant figures, while 35.2 cm has 3 significant figures. Therefore, the area is reported with 3 significant figures.
For a bottle cap with diameter 3.12 cm, exact formula factors such as π and 41 do not limit significant figures because they are not measured data. Use the calculator value of π and keep guard digits until the final line.
If the International System of Units (SI) is required, convert cm2 to m2. SI is the international standard for measurement units used in science.
7.65 cm2=0.000765 m2=7.65×10−4 m2
For addition and subtraction, round by decimal position. For multiplication and division, round by the fewest significant figures among the measured values. Round-to-even and one-step rounding prevent repeated rounding from biasing the result. Handbook 130