OCR Year 7 Chemistry: Key Formulas & Theorems Quick Reference | 公式定理速查手册

📚 OCR Year 7 Chemistry: Key Formulas & Theorems Quick Reference | 公式定理速查手册

Welcome to your go-to guide for the essential chemistry formulas, laws, and principles covered in OCR Year 7. Whether you are revising states of matter, preparing for a test on acids and alkalis, or simply brushing up on particle theory, this handbook gives you everything you need in one clear, bilingual resource.

欢迎使用这本专为 OCR Year 7 编写的化学核心公式、定律与原理速查手册。无论你是在复习物质的状态、准备关于酸和碱的测验,还是想快速回顾粒子理论,这本中英双语资源都能帮你把关键点一网打尽。

1. The Particle Model of Matter | 物质的粒子模型

All substances are made of tiny moving particles. The arrangement and motion of these particles explain the three states of matter: solid, liquid, and gas.

所有物质都由不断运动的微小粒子构成。粒子的排列方式和运动状态可以解释物质的三态:固态、液态和气态。

  • Solids have particles packed tightly in a regular pattern. They vibrate in fixed positions. → Fixed shape and volume.
  • 固体的粒子紧密排列成规则结构,只能在固定位置振动。→ 形状和体积固定。
  • Liquids have particles close together but not in a fixed pattern. They can slide past each other. → Fixed volume but take the shape of the container.
  • 液体的粒子间距小但排列不规则,能相互滑动。→ 体积固定但形状随容器改变。
  • Gases have particles that are far apart and move rapidly in all directions. → No fixed shape or volume; can be compressed.
  • 气体的粒子相距很远,快速向各个方向运动。→ 没有固定的形状和体积;可被压缩。

2. Changes of State and Fixed Points | 物态变化与固定点

Changes of state are physical changes, not chemical ones. Mass is conserved when a substance changes state. At the melting point and boiling point, the temperature stays constant until the change is complete.

物态变化属于物理变化,不产生新物质。物质在状态变化过程中质量守恒。在熔点和沸点,温度保持恒定,直到状态变化完全结束。

  • Melting: solid → liquid at the melting point.
  • 熔化:在熔点温度下,固态 → 液态。
  • Freezing: liquid → solid at the freezing point (same temperature as melting point).
  • 凝固:在凝固点(与熔点温度相同)液态 → 固态。
  • Boiling / Evaporation: liquid → gas. Boiling occurs at the boiling point throughout the liquid; evaporation occurs only at the surface.
  • 沸腾 / 蒸发:液态 → 气态。沸腾在沸点温度下整个液体内部都发生;蒸发仅在液体表面发生。
  • Condensation: gas → liquid. Occurs when gas cools below its boiling point.
  • 冷凝:气态 → 液态。当气体冷却到沸点以下时发生。
  • Sublimation: solid → gas directly (e.g., dry ice).
  • 升华:直接从固态变为气态(如干冰)。

mass (before change) = mass (after change)


3. Diffusion and Gas Pressure | 扩散与气体压强

Diffusion is the movement of particles from a region of higher concentration to a region of lower concentration. It happens in liquids and gases but is fastest in gases.

扩散是粒子从高浓度区域向低浓度区域的自发运动。扩散在液体和气体中都能发生,但在气体中最快。

  • Lighter particles diffuse faster than heavier particles at the same temperature.
  • 在相同温度下,较轻的粒子比较重的粒子扩散得更快。
  • Gas pressure is caused by particles colliding with the walls of their container. More collisions per second → higher pressure.
  • 气体压强是由粒子撞击容器壁产生的。单位时间内碰撞次数越多 → 压强越高。
  • Increasing temperature increases particle speed, leading to more frequent and harder collisions, so pressure increases (if volume is fixed).
  • 温度升高使粒子运动加快,碰撞更频繁、更有力,因此压强增大(若体积固定)。

4. Element, Compound, and Mixture | 单质、化合物与混合物

An element contains only one type of atom. A compound contains two or more different types of atoms chemically bonded together. A mixture contains two or more substances not chemically joined.

单质只含有一种原子。化合物由两种或多种不同种类的原子通过化学键结合而成。混合物由两种或多种物质组成,它们之间没有发生化学结合。

  • Elements are listed on the Periodic Table (about 118 known).
  • 单质列在元素周期表中(目前已发现约 118 种)。
  • Compounds have fixed proportions of elements (e.g., H₂O always has 2 hydrogen atoms for every 1 oxygen atom).
  • 化合物中各元素有固定的比例(如 H₂O 中,总是 2 个氢原子对 1 个氧原子)。
  • Mixtures can be separated by physical methods such as filtration, distillation, and chromatography.
  • 混合物可以通过过滤、蒸馏、层析等物理方法分离。

5. Atomic Structure Basics | 原子结构基础

Atoms are the smallest part of an element that can still be recognised as that element. They consist of a central nucleus containing protons and neutrons, with electrons orbiting in shells.

原子是单质中能独立存在并保持其化学性质的最小微粒。原子由中心的原子核(含质子和中子)和核外按电子层排布的电子组成。

Particle / 粒子 Relative charge / 相对电荷 Relative mass / 相对质量
Proton / 质子 +1 1
Neutron / 中子 0 1
Electron / 电子 –1 ~0 (1/1840)
  • Atomic number = number of protons (defines the element).
  • 原子序数 = 质子数(决定了元素种类)。
  • Mass number = protons + neutrons.
  • 质量数 = 质子数 + 中子数。
  • In a neutral atom: number of electrons = number of protons.
  • 中性原子中:电子数 = 质子数。

mass number (A) = protons (Z) + neutrons


6. The Periodic Table for Year 7 | 七年级必学元素周期表结构

The Periodic Table arranges all known elements in order of increasing atomic number. Vertical columns are called groups; horizontal rows are called periods.

元素周期表按原子序数递增的顺序排列所有已知元素。纵列称为族,横行称为周期。

  • Group number tells us the number of electrons in the outer shell for main-group elements.
  • 主族元素的族号等于其最外层电子数。
  • Period number tells us the number of occupied electron shells.
  • 周期号等于该原子所具有的电子层数。
  • Metals are on the left and centre; non-metals are on the right. A stepped line separates them.
  • 金属位于表的左方和中部;非金属位于右方。两者之间有一条锯齿形分界线。
  • Group 1: Alkali metals (very reactive, soft). Group 7: Halogens (reactive non-metals). Group 0/8: Noble gases (unreactive).
  • 第一族:碱金属(非常活泼,质地软)。第七族:卤素(活泼的非金属)。第零/第八族:稀有气体(极不活泼)。

7. Chemical Word Equations | 化学反应文字方程式

A chemical reaction forms new substances. A word equation shows the names of reactants (on the left) and products (on the right), separated by an arrow.

化学反应生成新的物质。文字方程式用反应物(左侧)和生成物(右侧)的名称表示,中间用箭头隔开。

reactant A + reactant B → product C + product D

  • Common Year 7 examples:
  • 七年级常见示例:
  • Magnesium + Oxygen → Magnesium oxide
  • 镁 + 氧气 → 氧化镁
  • Hydrogen + Oxygen → Water
  • 氢气 + 氧气 → 水
  • Calcium carbonate + Hydrochloric acid → Calcium chloride + Water + Carbon dioxide
  • 碳酸钙 + 盐酸 → 氯化钙 + 水 + 二氧化碳
  • Sodium + Water → Sodium hydroxide + Hydrogen
  • 钠 + 水 → 氢氧化钠 + 氢气

8. Law of Conservation of Mass | 质量守恒定律

In a chemical reaction, the total mass of the reactants equals the total mass of the products. Atoms are rearranged, not created or destroyed.

在化学反应中,反应物的总质量等于生成物的总质量。原子只是重新组合,既不会凭空产生,也不会凭空消失。

  • This is why chemical equations must be balanced. The number of each type of atom is the same on both sides.
  • 这就是为什么化学方程式必须配平。每种原子的数目在反应前后保持不变。
  • In open systems, gas may escape, so measured mass might seem to decrease, but total mass is still conserved if you include the gas.
  • 在开放体系中,气体可能逸散,导致测得的质量看似减少,但如果计入气体,总质量仍然守恒。

9. Acids and Alkalis – The pH Scale | 酸和碱 – pH 量表

The pH scale shows how acidic or alkaline a solution is. It runs from 0 to 14. Acids have a pH less than 7; alkalis have a pH greater than 7; neutral solutions have pH 7.

pH 量表用来表示溶液的酸碱度,范围从 0 到 14。酸的 pH 值小于 7;碱的 pH 值大于 7;中性溶液的 pH 等于 7。

  • Indicators: Litmus (red in acid, blue in alkali), Universal indicator (rainbow colours from pH 0 to 14).
  • 指示剂:石蕊试纸(酸中变红,碱中变蓝),通用指示剂(从 pH 0 到 14 显示彩虹色)。
  • Neutralisation reaction: acid + alkali → salt + water
  • 中和反应:酸 + 碱 → 盐 + 水
  • Example: Hydrochloric acid + Sodium hydroxide → Sodium chloride + Water
  • 实例:盐酸 + 氢氧化钠 → 氯化钠 + 水

acid + alkali → salt + water


10. Combustion and Oxidation | 燃烧与氧化

Combustion is a rapid chemical reaction between a fuel and oxygen, releasing heat and light. Oxidation is a more general term for a substance gaining oxygen.

燃烧是燃料与氧气之间发生的快速化学反应,放出热和光。氧化则是一个更广泛的概念,指物质获得氧的过程。

  • Complete combustion of a hydrocarbon: Fuel + excess oxygen → Carbon dioxide + Water (+ energy)
  • 碳氢化合物的完全燃烧:燃料 + 充足的氧气 → 二氧化碳 + 水(+ 能量)
  • E.g. Methane + Oxygen → Carbon dioxide + Water
  • 如:甲烷 + 氧气 → 二氧化碳 + 水
  • Fire triangle: fuel, heat, oxygen. Remove any one to extinguish a fire.
  • 燃烧三要素:可燃物、热量、氧气。去除任意一个要素即可灭火。
  • Oxidation of metals: metal + oxygen → metal oxide (e.g., iron + oxygen → iron oxide → rusting).
  • 金属的氧化:金属 + 氧气 → 金属氧化物(如:铁 + 氧气 → 氧化铁 → 生锈)。

11. Air Composition and Separation | 空气的成分与分离

Air is a mixture of gases. Dry air contains roughly 78% nitrogen, 21% oxygen, 0.9% argon, 0.04% carbon dioxide, and trace amounts of other gases.

空气是多种气体的混合物。干空气大约含有 78% 的氮气、21% 的氧气、0.9% 的氩气、0.04% 的二氧化碳以及微量其他气体。

  • Oxygen can be tested with a glowing splint – it relights.
  • 氧气可用带火星的木条检验——木条复燃。
  • Carbon dioxide turns limewater milky (cloudy).
  • 二氧化碳能使澄清石灰水变浑浊。
  • Fractional distillation of liquid air separates gases based on their different boiling points.
  • 通过液态空气的分馏,可根据气体沸点不同将它们分离。

12. Key Vocabulary and Symbols | 核心词汇与符号

Familiarity with chemical symbols and state symbols helps you read and write equations confidently. Here is a quick reference table:

熟悉化学符号和状态符号能帮助你自信地阅读和书写方程式。以下是快速参考表:

Common Chemical Symbols 常用化学符号
O – Oxygen, H – Hydrogen, C – Carbon, N – Nitrogen, Fe – Iron, Cu – Copper, Na – Sodium, Cl – Chlorine, Mg – Magnesium, Ca – Calcium O – 氧,H – 氢,C – 碳,N – 氮,Fe – 铁,Cu – 铜,Na – 钠,Cl – 氯,Mg – 镁,Ca – 钙
State symbols 状态符号
(s) – solid, (l) – liquid, (g) – gas, (aq) – aqueous (dissolved in water) (s) – 固态, (l) – 液态, (g) – 气态, (aq) – 水溶液

Use these symbols to write formula equations, e.g.: 2Mg(s) + O₂(g) → 2MgO(s).

使用这些符号可以书写化学方程式,例如:2Mg(s) + O₂(g) → 2MgO(s)。

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