Modern Physics Core Exam Points | 现代物理核心考点梳理

📚 Modern Physics Core Exam Points | 现代物理核心考点梳理

Modern physics is a major source of exam questions in A-level and equivalent syllabuses. This article condenses the key definitions, formulas, and common traps into a clear revision guide.

现代物理是 A-level 及同类国际课程考试中的高频考点。本文将核心定义、公式和易错点浓缩为一份清晰的复习指南。


1. Atomic Structure and the Nucleus | 原子结构与原子核

An atom consists of a small, dense nucleus containing protons and neutrons, surrounded by orbiting electrons. The nucleus is about 10⁻⁵ times the size of the atom.

原子由包含质子和中子的致密原子核以及绕核运动的电子构成。原子核的尺度约为原子的 10⁻⁵ 倍。

  • Proton number Z is the number of protons; nucleon number A is the total number of protons and neutrons.

    质子数 Z 表示质子数量;核子数 A 表示质子与中子的总数。

  • Isotopes are nuclei with the same Z but different A.

    同位素是质子数 Z 相同、核子数 A 不同的原子核。

  • The strong nuclear force holds the nucleus together, overcoming electrostatic repulsion between protons.

    强核力克服质子间的静电斥力,将原子核束缚在一起。


2. Radioactive Decay | 放射性衰变

Radioactive decay is a random and spontaneous process in which an unstable nucleus emits particles or radiation to become more stable.

放射性衰变是随机且自发的过程,不稳定的原子核通过释放粒子或辐射变得更稳定。

  • Alpha decay: the nucleus emits an α particle (²₄He), reducing A by 4 and Z by 2.

    α 衰变:原子核释放 α 粒子(²₄He),A 减少 4,Z 减少 2。

  • Beta-minus decay: a neutron converts into a proton, emitting an electron and an antineutrino; Z increases by 1, A unchanged.

    β⁻ 衰变:中子转变为质子,释放电子和反中微子;Z 增加 1,A 不变。

  • Beta-plus decay: a proton converts into a neutron, emitting a positron and a neutrino; Z decreases by 1.

    β⁺ 衰变:质子转变为中子,释放正电子和中微子;Z 减少 1。

  • Gamma radiation: high-energy electromagnetic waves emitted from excited nuclei, with no change in A or Z.

    γ 辐射:激发态原子核释放的高能电磁波,A 和 Z 均不变。


3. Half-Life and Decay Law | 半衰期与衰变规律

The half-life T½ is the time for half of the unstable nuclei in a sample to decay. It is independent of external conditions.

半衰期 T½ 是样品中一半不稳定原子核发生衰变所需的时间,与外部条件无关。

N = N₀ (½)^(t/T½)

A = A₀ e^(−λt), λ = ln 2 / T½

  • N is the remaining number, A is activity in becquerels (Bq), λ is the decay constant.

    N 为剩余核数,A 为活度(单位贝克勒尔 Bq),λ 为衰变常数。

  • The decay constant λ equals the probability of decay per unit time.

    衰变常数 λ 表示单位时间内每个核发生衰变的概率。

  • Half-life can be found from a decay graph: read the time for activity to drop to half its initial value.

    从衰变曲线求半衰期:读取活度降为初始值一半所需的时间。


4. Mass Defect and Binding Energy | 质量亏损与结合能

The mass of a nucleus is always less than the total mass of its separate nucleons. This difference is called the mass defect Δm.

原子核的质量总是小于其独立核子质量之和,这个差值称为质量亏损 Δm。

  • Binding energy is the energy released when a nucleus is formed from its individual nucleons.

    结合能是原子核由独立核子结合时释放的能量。

  • Use Einstein’s equation: E = Δmc², where c = 3.0 × 10⁸ m/s.

    利用爱因斯坦方程:E = Δmc²,其中 c = 3.0 × 10⁸ m/s。

  • Binding energy per nucleon measures nuclear stability; iron-56 has the highest value.

    比结合能(每个核子的结合能)衡量原子核的稳定性;铁-56 的比结合能最大。

Δm = Z·mₚ + N·mₙ − m_nucleus


5. Nuclear Fission and Fusion | 核裂变与核聚变

Both fission and fusion release energy because the products have higher binding energy per nucleon than the reactants.

裂变和聚变都会释放能量,因为产物的比结合能高于反应物。

  • Fission: a heavy nucleus (e.g., ²³⁵U) splits after absorbing a neutron, releasing energy and more neutrons.

    裂变:重核(如 ²³⁵U)吸收一个中子后分裂,释放能量和更多中子。

  • Fusion: light nuclei (e.g., hydrogen isotopes) combine to form a heavier nucleus; it powers stars.

    聚变:轻核(如氢同位素)结合成更重的核;恒星的能量来源。

  • Controlled fission is used in reactors; fusion requires extremely high temperatures and pressure.

    受控裂变用于核反应堆;聚变需要极高温度和压强。


6. The Photoelectric Effect | 光电效应

When light of sufficient frequency shines on a metal surface, electrons are emitted. This cannot be explained by wave theory alone.

当足够频率的光照射金属表面时,会发射电子。仅用波动理论无法解释该现象。

  • The photon energy is E = hf, where h is Planck’s constant (6.63 × 10⁻³⁴ J·s).

    光子能量为 E = hf,其中 h 为普朗克常量(6.63 × 10⁻³⁴ J·s)。

  • The work function φ is the minimum energy needed to free an electron from the metal surface.

    逸出功 φ 是使电子脱离金属表面所需的最小能量。

  • Einstein’s photoelectric equation: hf = φ + K_max.

    爱因斯坦光电效应方程:hf = φ + K_max。

  • No emission occurs if f < f₀, where f₀ = φ/h is the threshold frequency.

    若 f < f₀(f₀ = φ/h 为截止频率),则不发生发射。


7. Wave-Particle Duality | 波粒二象性

All matter exhibits both wave and particle properties. The wavelength of a moving particle is given by de Broglie’s relation.

所有物质都同时表现出波动性和粒子性。运动粒子的波长由德布罗意关系给出。

λ = h / p = h / (mv)

  • Electron diffraction through a crystal demonstrates the wave nature of electrons.

    电子通过晶体的衍射实验证明了电子的波动性。

  • Photoelectric effect demonstrates the particle nature of light.

    光电效应证明了光的粒子性。

  • For macroscopic objects, λ is extremely small, so wave behaviour is unobservable.

    对于宏观物体,λ 极小,波动行为不可观测。


8. Energy Levels and Atomic Spectra | 能级与原子光谱

Electrons in an atom can occupy only discrete energy levels. Transitioning between levels absorbs or emits a photon of specific energy.

原子中的电子只能占据分立的能级。能级之间的跃迁会吸收或发射特定能量的光子。

  • Photon energy equals the energy difference: hf = E₂ − E₁.

    光子能量等于能级差:hf = E₂ − E₁。

  • Emission spectra are produced when electrons move from higher to lower levels.

    当电子从高能级跃迁到低能级时产生发射光谱。

  • Absorption spectra show dark lines corresponding to the wavelengths absorbed by atoms.

    吸收光谱中的暗线对应原子吸收的特征波长。


9. Mass-Energy Equivalence and Applications | 质能等价与应用

The equivalence of mass and energy explains energy release in nuclear reactions. A small mass loss gives a huge energy output because c² is enormous.

质能等价解释了核反应中的能量释放。由于 c² 极大,微小的质量亏损就能产生巨大能量。

  • In particle accelerators, e⁺ and e⁻ annihilation converts all mass into energy.

    在粒子加速器中,e⁺ 与 e⁻ 湮灭将所有质量转化为能量。

  • In medical PET scans, positron annihilation produces two γ photons.

    在医学 PET 扫描中,正电子湮灭产生两个 γ 光子。

  • Sun’s energy comes from fusion of hydrogen into helium, with 0.7% of mass converted to energy.

    太阳的能量来自氢聚变为氦,其中约 0.7% 的质量转化为能量。


10. Standard Model and Fundamental Particles | 标准模型与基本粒子

The Standard Model classifies elementary particles into quarks, leptons, and gauge bosons.

标准模型将基本粒子分为夸克、轻子和规范玻色子。

  • Hadrons (e.g., protons, neutrons) are made of quarks.

    强子(如质子、中子)由夸克组成。

  • Leptons include electrons, muons, and neutrinos; they are fundamental and not made of smaller particles.

    轻子包括电子、μ 子和中微子;它们是基本粒子,不由更小粒子构成。

  • Exchange particles (photons, gluons, W⁺/W⁻, Z⁰) mediate the fundamental forces.

    交换粒子(光子、胶子、W⁺/W⁻、Z⁰)传递基本相互作用。

  • Baryons have three quarks; mesons have one quark and one antiquark.

    重子由三个夸克组成;介子由一个夸克和一个反夸克组成。


11. Quark Model and Conservation Laws | 夸克模型与守恒定律

Quarks carry fractional charges: up (+⅔e), down (−⅓e). Protons are uud; neutrons are udd.

夸克带分数电荷:上夸克 (+⅔e)、下夸克 (−⅓e)。质子为 uud,中子为 udd。

  • In β⁻ decay, a down quark changes to an up quark, emitting W⁻, which decays to e⁻ and antineutrino.

    在 β⁻ 衰变中,下夸克变为上夸克,释放 W⁻ 玻色子,W⁻ 衰变为 e⁻ 和反中微子。

  • In β⁺ decay, an up quark changes to a down quark, emitting W⁺, which decays to e⁺ and neutrino.

    在 β⁺ 衰变中,上夸克变为下夸克,释放 W⁺ 玻色子,W⁺ 衰变为 e⁺ 和中微子。

  • Charge, baryon number, and lepton number are always conserved in reactions.

    电荷、重子数和轻子数在反应中始终守恒。


12. Common Exam Traps and Tips | 常见易错点与提醒

Students often lose marks on definitions and sign conventions. Review these carefully.

学生常因定义不清和符号惯例而失分,请仔细复习以下内容。

  • Do not confuse mass number A with atomic number Z. In nuclear notation ᴬ_Z X, the top number is A.

    不要混淆质量数 A 和原子序数 Z。在核素符号 ᴬ_Z X 中,上方数字是 A。

  • The activity of a radioactive sample is a count rate, not the number of nuclei.

    放射源的活度是计数率,不是原子核个数。

  • Photoelectric current is proportional to intensity, not frequency; electron energy depends on frequency.

    光电流与光强成正比,与频率无关;电子能量取决于频率。

  • Binding energy is always positive; binding energy per nucleon is largest around Fe-56.

    结合能恒为正值;比结合能在铁-56 附近最大。

  • In calculations, convert mass from u to kg or use 1 u = 931.5 MeV/c².

    计算时,将质量从 u 转换为 kg,或使用 1 u = 931.5 MeV/c²。


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