Adding trailing zeros to make a result look more precise.
Report only digits supported by the method and state the resolution or uncertainty basis.
Module 4 · Practice
Report measurements with meaningful units and honest digits, while separating closeness to a reference from repeatability.
Objective
A measurement is a quantity expressed with a unit and a method. “12” is incomplete: 12 mL, 12 g, and 12 s mean different things. Use a consistent unit system for calculations and label axes, tables, and notebook values. NIST's SI guidance standardizes symbols and advises against carrying more digits through a conversion than the source measurement justifies.
Accuracy describes closeness to a reference or accepted value; precision describes how closely repeated results agree under stated conditions. A set can be precise but biased, or variable but centered near a reference. Uncertainty is a quantified description of doubt in a result based on relevant components such as repeatability, calibration information, resolution, and assumptions. It is not a synonym for error or a promise that the true value lies in a particular interval unless the reporting convention says so.
Keep guard digits during intermediate arithmetic, then round the final result using a stated rule. In addition and subtraction, decimal-place precision matters; in multiplication and division, relative precision or significant figures matters. Exact counts and defined conversion factors can be treated differently from measured inputs. Do not report a calculated volume as 10.0000 mL because a formula produced many digits when the original readings support only hundredths.
When comparing measurements, state the reference, method, and uncertainty basis. If no suitable reference exists, describe repeatability or observed spread and say that accuracy was not established. Avoid calling a result “accurate” merely because it looks plausible.
Worked example
The arithmetic mean is 10.03 mL. The readings cluster within 0.02 mL of one another, while the mean is 0.03 mL above the stated reference.
Materials
Safety & stop conditions
Method
Write quantity, unit, method, resolution, and reference or calibration information for each value.
Use dimensional cancellation in the equation and retain only digits supported by the source values.
Compute the chosen summary, identify uncertainty components or limitations, and state whether the claim concerns accuracy or precision.
Checkpoints
Common mistakes
Report only digits supported by the method and state the resolution or uncertainty basis.
Repeated agreement supports precision; accuracy requires comparison to a suitable reference.
Name the quantity: observed difference, standard deviation, standard uncertainty, or another defined measure.
Practice
Use supplied readings 10.02, 10.04, and 10.03 mL with a reference of 10.00 mL whose basis is stated as suitable for this exercise. Calculate a mean and describe spread; do not claim more than the data support.
Self-checks
Answer: Yes. A systematic offset can make repeated results tightly clustered away from a suitable reference.
Answer: Dimensional checking can expose a wrong conversion or formula and ensures the final quantity has a meaningful interpretation.
Answer: Usually 10.03 mL, with the rounding and method basis stated. The extra display digits are not supported by the recorded inputs.
Sources & further reading