AQA GCSE · 試験対策

Physics 8463 試験対策

An evidence-based masterclass for AQA GCSE Physics (8463) Foundation Tier. Grounded in actual 2022-2024 examiners' reports, this guide reveals critical mark-saving strategies, unit conversion traps, and required practical frameworks to secure top marks.

読了時間 5 分更新日: 2026年6月21日

試験の概要

試験数
2
満点
200
制限時間
3時間 30分
出題形式
4
試験時間配点問題数配点比率出題形式
Paper 1 (Foundation)1時間 45分1001150%Multiple choice & fill-in-the-blanks, Short structured answer / graphical plotting, Structured calculations & comparative analysis, Extended response experimental description (Level-marked)
Paper 2 (Foundation)1時間 45分1001050%Multiple choice & matching lines, Short structured response / vector direction, Multi-step mathematical applications, Detailed calculation (e.g., 2as) with 2 s.f. rounding, Extended response experimental description (Level-marked)
評価段階
987654321
電卓の規定

A scientific or graphical calculator that meets JCQ regulations may be used (some GCSE Mathematics and Science papers are non-calculator). Graphical calculators must be set to exam mode; you must clear any stored programs, notes or data before the exam, and the calculator must not be able to retrieve stored text or formulae.

  • AO1: AO1: Demonstrate knowledge and understanding (40%)
  • AO2: AO2: Apply knowledge and understanding (40%)
  • AO3: AO3: Analyse information and ideas (20%)

過去問と採点基準にもとづいて作成(2022–2024)。

電卓プログラム

Table mode for roots & turning points

Scientific calculator (e.g. Casio fx-991 series)

目的: Tabulate \(y\) across a range of \(x\) to locate sign changes (roots) and approximate maxima/minima.

使う場面: Solving or sketching a function when you want to find where its graph crosses or turns.

手順
Enter the function in TABLE mode, set the start, end and step, then read where the sign of \(y\) changes or where it peaks.

試験での注意: Allowed under JCQ rules, but you must still show your method — an unsupported calculator answer earns no method marks. Clear all stored programs, notes and data (graphical calculators in exam mode) before the exam.

Statistics mode (mean, SD & regression)

Scientific calculator (e.g. Casio fx-991 series)

目的: Read the mean \(\bar{x}\) and standard deviation directly, and the gradient/intercept (and \(r\)) of a linear regression for bivariate data.

使う場面: Any data-handling, statistics, or required-practical analysis question.

手順
Enter the data in STAT mode (1-VAR or A+BX), then recall \(\bar{x}\), \(\sigma\) or the regression coefficients.

試験での注意: Allowed under JCQ rules, but you must still show your method — an unsupported calculator answer earns no method marks. Clear all stored programs, notes and data (graphical calculators in exam mode) before the exam.

Carry exact values with Ans & memory

Scientific calculator (e.g. Casio fx-991 series)

目的: Keep full-precision intermediate values to avoid rounding errors.

使う場面: Multi-step calculations where premature rounding loses the final accuracy mark.

手順
Use Ans, STO/RCL or the M+ memory to reuse the unrounded result of each step; round only the final answer.

試験での注意: Allowed under JCQ rules, but you must still show your method — an unsupported calculator answer earns no method marks. Clear all stored programs, notes and data (graphical calculators in exam mode) before the exam.

Equation solver — to CHECK your working

Scientific calculator (e.g. Casio fx-991 series)

目的: Use the built-in EQN/SOLVE mode to verify roots of quadratics or simultaneous equations you have already solved by algebra.

使う場面: As a check only, after solving by hand.

手順
Enter the coefficients in EQN mode (or use SOLVE) and confirm they match your worked solution.

試験での注意: Allowed under JCQ rules, but you must still show your method — an unsupported calculator answer earns no method marks. Clear all stored programs, notes and data (graphical calculators in exam mode) before the exam.

よくあるミス

  1. 1high影響する配点: 2Current, potential difference and resistance

    Failing to convert time from minutes to seconds when calculating charge flow (Q = It). For example, substituting 5 minutes as 5 instead of 300 seconds.

    回避方法: Always multiply minutes by 60 before plugging the time value into the formula.
  2. 2medium影響する配点: 1Waves in air, fluids and solids

    Drawing a straight line of best fit through data points on a graph when the clear physical trend is a curve (e.g., for thermistor resistance vs. temperature or refraction angles).

    回避方法: Inspect the trend of the plotted coordinates. If they do not align linearly, draw a single, smooth, continuous curve of best fit.
  3. 3high影響する配点: 2Hazards and uses of radioactive emissions

    Conflating radioactive contamination with irradiation (exposure to radiation), leading to incorrect safety explanations.

    回避方法: Remember that irradiation is exposure to external radiation waves/particles, while contamination is the physical transfer of radioactive isotopes onto clothes or skin.
  4. 4high影響する配点: 1Pressure and pressure differences in fluids

    Omitting the unit or writing the wrong unit (like leaving out 'Pa' for pressure or 'J' for energy) in final answers.

    回避方法: Scan the question space to see if a unit is pre-printed. If not, write down the standard SI unit next to your calculated number.
  5. 5medium影響する配点: 2Induced potential, transformers and the National Grid

    Assuming step-up transformers increase electric current instead of voltage/potential difference.

    回避方法: Remember that power is conserved (P = VI); step-up transformers increase potential difference, which mathematically reduces current to decrease energy loss in transmission cables.
  6. 6medium影響する配点: 3Changes of state and the particle model

    Failing to convert mass from grams to kilograms before substituting into specific latent heat or specific heat capacity formulas.

    回避方法: Divide the mass value in grams by 1,000 to convert it into standard kilograms (kg) before performing your calculation.
  7. 7medium影響する配点: 2Moments, levers and gears

    Failing to convert perpendicular distance from centimeters to meters when calculating a force's moment.

    回避方法: Always divide centimeter values by 100 to convert them to standard meters (m) before running the equation M = F x d.

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