AS & A-Level Physics 26 — Practical Skills and Experimental Reasoning
PublicIndependent Deckloop revision aligned with the Cambridge International AS & A Level Physics (9702) syllabus, 2025–2027. Not affiliated with or endorsed by Cambridge International Education. Chapter 26 of 26: Practical skills and experimental reasoning. Concepts, worked applications and misconception checks.
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Instrument Selection, Resolution, and Zero Checks
Key points
- Instrument suitability depends on the quantity and desired precision.
- Resolution is the smallest measurable increment of an instrument.
- Zero checks identify systematic zero errors (positive or negative).
- Correct zero errors by adding or subtracting the error from raw readings.
Worked example
Question
Solution
2. Understand that a negative zero error means the measured reading is consistently lower than the true value.
3. Correct the measured reading: Actual current = Measured reading - Zero error.
4. Calculate: Actual current = 0.45 A - (-0.02 A) = 0.45 A + 0.02 A.
The actual current is 0.47 A.
Common pitfalls
- Ignoring zero errors: Failing to perform a zero check or correct for a detected zero error will lead to systematically inaccurate results. Always check for zero errors and apply corrections.
- Using an instrument with insufficient resolution: Using a metre rule to measure the thickness of a human hair will yield highly uncertain results. Always select an instrument whose resolution is appropriate for the scale of the measurement.
Prerequisites
- Understanding physical quantities and units is fundamental to interpreting instrument readings.
- Knowledge of systematic errors, including zero errors, is essential for performing and understanding zero checks.
- Distinguishing between precision and accuracy helps in selecting instruments with appropriate resolution.
Further resources
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OpenStax University Physics Volume 1, chapter 1, summary
Chapter reference used for scientific factual checks. William Moebs, Samuel J. Ling and Jeff Sanny. © Rice University, OpenStax. Reference licence: CC BY-NC-SA 4.0.
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OpenStax: access for free
William Moebs, Samuel J. Ling and Jeff Sanny. Free access to this chapter reference.
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OpenStax reference licence: CC BY-NC-SA 4.0
Licence for the linked OpenStax reference, © Rice University.
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NIST CODATA 2022 recommended constants, SP 961 May 2024
Chapter reference used for scientific factual checks.