Year 13 CIE Physics Formula and Theorem Quick Reference Handbook | Year 13 CIE 物理:公式定理速查手册

📚 Year 13 CIE Physics Formula and Theorem Quick Reference Handbook | Year 13 CIE 物理:公式定理速查手册

This quick reference handbook compiles essential formulas, theorems, and key relationships for CIE A Level Physics (Year 13). Each section presents core concepts with their mathematical expressions, ideal for last-minute revision.

本速查手册汇编了 CIE A Level 物理(Year 13)的核心公式、定理和关键关系。每一部分都给出了核心概念及其数学表达式,非常适合考前最后复习。


1. Circular Motion | 圆周运动

When an object moves in a circle at constant speed, its velocity direction changes continuously, resulting in a centripetal acceleration directed towards the centre.

当物体以恒定速率做圆周运动时,速度方向不断变化,产生指向圆心的向心加速度。

Angular velocity: ω = Δθ/Δt. Linear speed: v = rω.

角速度:ω = Δθ/Δt。线速度:v = rω

Centripetal acceleration: a = v²/r = rω².

向心加速度:a = v²/r = rω²

Centripetal force: F = mv²/r = mrω².

向心力:F = mv²/r = mrω²


2. Gravitational Fields | 引力场

Newton’s law of gravitation describes the attractive force between two point masses.

牛顿万有引力定律描述了两个质点之间的吸引力。

Gravitational force: F = G m₁ m₂ / r².

引力:F = G m₁ m₂ / r²

Gravitational field strength: g = F/m = GM/r².

引力场强度:g = F/m = GM/r²

Gravitational potential: V = -GM/r (zero at infinity).

引力势:V = -GM/r(无穷远处为零)。

Orbital speed for a satellite: v = √(GM/r); for near-surface orbit v = √(gR).

卫星的轨道速度:v = √(GM/r);近地轨道速度 v = √(gR)


3. Simple Harmonic Motion | 简谐运动

Simple harmonic motion (SHM) occurs when the restoring force is proportional to the displacement and directed towards equilibrium.

简谐运动发生在回复力与位移成正比且指向平衡位置时。

Defining equation: a = -ω²x.

定义方程:a = -ω²x

Displacement: x = x₀ sin(ωt) or x = x₀ cos(ωt).

位移:x = x₀ sin(ωt)x = x₀ cos(ωt)

Velocity: v = ±ω√(x₀² – x²); maximum speed v_max = ωx₀.

速度:v = ±ω√(x₀² – x²);最大速率 v_max = ωx₀

Period of mass-spring system: T = 2π√(m/k); simple pendulum: T = 2π√(l/g).

弹簧振子的周期:T = 2π√(m/k);单摆周期:T = 2π√(l/g)


4. Thermal Physics & Ideal Gases | 热物理与理想气体

The ideal gas equation and kinetic theory link macroscopic properties to microscopic behaviour.

理想气体状态方程和分子动理论将宏观性质与微观

Published by TutorHao | Year 13 Physics Revision Series | aleveler.com

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