AP Physics 1 Equation Sheet (2026 Update)

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AP Physics 1 Equation Sheet (2026 Update)

This sheet includes the new Unit 8: Fluids equations. The exam permits a scientific or graphing calculator and this reference sheet.

Table 1: Constants & Conversion Factors
QuantitySymbolApproximate Value
Proton Massm_p1.67 \times 10^{-27} kg
Neutron Massm_n1.67 \times 10^{-27} kg
Electron Massm_e9.11 \times 10^{-31} kg
Speed of Lightc3.00 \times 10^{8} m/s
Electron Charge Magnitudee1.60 \times 10^{-19} C
Universal Gravitational ConstantG6.67 \times 10^{-11} \, \text{m}^3/\text{kg}\cdot\text{s}^2
Acceleration due to Gravity (Earth)g9.8 \, \text{m/s}^2
I. Mechanics

    \[v_x = v_{x0} + a_xt\]

    \[x = x_0 + v_{x0}t + \frac{1}{2}a_xt^2\]

    \[v_x^2 = v_{x0}^2 + 2a_x(x - x_0)\]

Linear Kinematics (Constant Acceleration only)

    \[\vec{a} = \frac{\Sigma \vec{F}}{m} = \frac{\vec{F}_{net}}{m}\]

    \[|\vec{F}_f| \le \mu |\vec{F}_n|\]

    \[|\vec{F}_s| = k|\vec{x}|\]

Newton’s Laws, Friction, Hooke’s Law

    \[K = \frac{1}{2}mv^2\]

    \[\Delta E = W = F_{\parallel}d = Fd\cos\theta\]

    \[P = \frac{\Delta E}{\Delta t}\]

Kinetic Energy, Work, Power

    \[\Delta U_g = mg\Delta y\]

    \[U_s = \frac{1}{2}kx^2\]

Gravitational & Elastic Potential Energy

    \[\vec{p} = m\vec{v}\]

    \[\Delta \vec{p} = \vec{F}\Delta t\]

Momentum & Impulse

    \[a_c = \frac{v^2}{r}\]

    \[\vec{F}_g = G\frac{m_1m_2}{r^2}\]

Centripetal Acceleration & Universal Gravity

    \[T_s = 2\pi\sqrt{\frac{m}{k}}\]

    \[T_p = 2\pi\sqrt{\frac{\ell}{g}}\]

Period of Spring & Pendulum
II. Fluids (Unit 8)

    \[\rho = \frac{m}{V}\]

    \[P = \frac{F}{A}\]

Density & Pressure Definition

    \[P = P_0 + \rho gh\]

    \[F_b = \rho V g\]

Hydrostatic Pressure & Buoyancy

    \[A_1 v_1 = A_2 v_2\]

    \[P_1 + \rho g y_1 + \frac{1}{2}\rho v_1^2 = \text{const}\]

Continuity & Bernoulli’s Equation
III. Geometry & Trigonometry

    \[A_{rect} = bh \quad A_{tri} = \frac{1}{2}bh\]

    \[A_{circle} = \pi r^2 \quad C = 2\pi r\]

    \[V_{box} = lwh \quad V_{cyl} = \pi r^2 h\]

Area & Volume

    \[a^2 + b^2 = c^2\]

    \[\sin\theta = \frac{opp}{hyp} \quad \cos\theta = \frac{adj}{hyp} \quad \tan\theta = \frac{opp}{adj}\]

Right Triangle Rules