AQA A Level Physics June 2018 Insert 1: Data Analysis and Core Concepts | AQA 物理 A Level 2018年6月附加材料1:数据分析与核心概念

📚 AQA A Level Physics June 2018 Insert 1: Data Analysis and Core Concepts | AQA 物理 A Level 2018年6月附加材料1:数据分析与核心概念

This article walks you through the style of AQA A Level Physics June 2018 Insert 1. An insert is not extra reading; it is a working document. You must extract numerical data, read graphs, select equations and show clear reasoning under timed conditions. We focus on the core skills and physics content that this insert rewards.

本文带你拆解 AQA A Level 物理 2018 年 6 月附加材料 1 的命题风格。附加材料不是额外的阅读内容,而是一份工作文件。你必须在限时条件下提取数值、阅读图像、选择公式并展示清晰的推理过程。我们重点讲解这份附加材料所考查的核心技能与物理内容。


1. What Is Insert 1 and Why It Matters | 什么是附加材料1及其重要性

Insert 1 in the June 2018 AQA Physics paper provides source data such as tables, graphs, constants and short descriptions of experimental setups. You are expected to use this information together with the question paper, not from memory alone.

2018 年 6 月 AQA 物理试卷中的附加材料 1 提供了表格、图像、常数以及实验装置的简短描述等原始数据。你需要将这些信息与试卷题目结合使用,而不是仅凭记忆作答。

Examiners often test whether you can locate the correct value, convert its unit, and substitute it into a formula. A common error is using a data sheet constant when the insert gives a slightly different value for a specific context.

考官经常考查你能否找到正确的数值、转换单位并将其代入公式。一个常见错误是使用数据手册中的常数,而附加材料在特定情境中给出了略有不同的数值。

  • Identify the variable and its unit before calculating.
  • Check whether the insert gives a graph value or a mean of repeated readings.
  • Use the insert data to justify comparisons or conclusions.
  • 计算前先确认变量及其单位。
  • 检查附加材料给出的是图像数值还是多次读数的平均值。
  • 用附加材料数据来支持比较或结论。

2. Units, Prefixes and Standard Form | 单位、词头与标准形式

Insert tables often mix pico, nano, micro, milli, kilo, mega and giga. You must convert to base SI units before using equations such as F = ma or V = IR.

附加材料中的表格常常混用皮、纳、微、毫、千、兆和吉等单位词头。在使用 F = ma 或 V = IR 等公式之前,你必须先换算为基本国际单位。

For example, a wavelength given as 650 nm must be written as 650 × 10⁻⁹ m before calculating frequency with c = fλ. Similarly, a charge of 2.4 pC is 2.4 × 10⁻¹² C.

例如,波长为 650 nm 时必须先写成 650 × 10⁻⁹ m,再用 c = fλ 计算频率。同样,2.4 pC 的电荷量应写成 2.4 × 10⁻¹² C。

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Prefix Symbol Factor
pico p 10⁻¹²
nano