FORMULA LIBRARY

Physics Formula Library — Every Formula You Need

Every physics formula organized by topic — with the formula, name, definition, and SI units. Bookmark this page for quick exam reference.

Mechanics Formulas

Mechanics

F = ma

Newton 2nd Law

Net force = mass × acceleration. N.

v = u + at

SUVAT (1)

Final velocity with constant acceleration. m/s.

s = ut + ½at²

SUVAT (2)

Displacement with initial velocity. m.

KE = ½mv²

Kinetic Energy

Energy of motion. J.

PE = mgh

Potential Energy

Gravitational PE. J.

p = mv

Momentum

Mass × velocity (vector). kg·m/s.

W = Fs cosθ

Work Done

Force × displacement × cosθ. J.

P = W/t

Power

Work per unit time. W.

Waves

v = fλ

Wave Equation

Speed = frequency × wavelength. m/s.

f = 1/T

Frequency

Cycles per second. Hz.

T = 1/f

Period

Time for one cycle. s.

n1 sinθ1 = n2 sinθ2

Snell Law

Law of refraction. Dimensionless.

I = P/A

Wave Intensity

Power per unit area. W/m².

E = hf

Photon Energy

Planck constant × frequency. J.

Electricity

V = IR

Ohm Law

Voltage = current × resistance. V.

P = IV

Electrical Power

Voltage × current. W.

F = kq1q2/r²

Coulomb Law

Force between two point charges. N.

I = Q/t

Current

Charge flow per unit time. A.

E = F/q

Electric Field

Force per unit charge. N/C.

EMF = NΔΦ/Δt

Faraday Law

Induced EMF from changing flux. V.

Thermodynamics

Q = mcΔT

Specific Heat

Heat = mass × c × temp change. J.

PV = nRT

Ideal Gas Law

P (Pa), V (m3), n (mol), T (K). Pa·m3.

ΔU = Q − W

First Law

Internal energy change. J.

ΔS = Q/T

Entropy

Change in disorder. J/K.

η = W/Q_H

Efficiency

Work out / heat in. Fraction.

P1V1 = P2V2

Boyle Law

At constant temperature. Dimensionless.

Modern Physics

E = mc²

Mass-Energy

Energy from mass. J.

E = hf

Photon Energy

h = 6.63×10&sup-34; J·s. J.

λ = h/mv

de Broglie

Matter wavelength. m.

KE = hf − φ

Photoelectric

Max kinetic energy of ejected electron. J.

N = N0 e&sup-λt

Radioactive Decay

Nuclei remaining at time t. Count.

t = t0/√(1−v²/c²)

Time Dilation

Relativistic time. s.
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