Référence de Formules
Consultez les formules mathématiques et scientifiques essentielles.
Formula Reference
40 formulas
Quadratic Formula
x = (-b ± √(b² - 4ac)) / 2a
Solves ax² + bx + c = 0
Pythagorean Theorem
a² + b² = c²
Relationship in a right triangle
Slope Formula
m = (y₂ - y₁) / (x₂ - x₁)
Slope between two points
Distance Formula
d = √((x₂ - x₁)² + (y₂ - y₁)²)
Distance between two points
Midpoint Formula
M = ((x₁ + x₂)/2, (y₁ + y₂)/2)
Midpoint between two points
Binomial Theorem
(a + b)ⁿ = Σₖ C(n,k) aⁿ⁻ᵏ bᵏ
Expansion of (a+b)ⁿ
Logarithm Properties
log_b(xy) = log_b(x) + log_b(y)
Product rule of logarithms
Area of Circle
A = πr²
Area of a circle with radius r
Circumference
C = 2πr
Circumference of a circle
Area of Triangle
A = ½bh
Area of a triangle
Volume of Sphere
V = ⁴⁄₃πr³
Volume of a sphere
Volume of Cylinder
V = πr²h
Volume of a cylinder
Volume of Cone
V = ⅓πr²h
Volume of a cone
Surface Area of Sphere
A = 4πr²
Surface area of a sphere
Law of Sines
sin(A)/a = sin(B)/b = sin(C)/c
Triangle side/angle relationship
Law of Cosines
c² = a² + b² - 2ab cos(C)
Triangle side from angle
Power Rule
d/dx [xⁿ] = nxⁿ⁻¹
Derivative of power function
Product Rule
d/dx [fg] = f'g + fg'
Derivative of product
Chain Rule
d/dx [f(g(x))] = f'(g(x)) · g'(x)
Derivative of composition
Integration Power Rule
∫xⁿ dx = xⁿ⁺¹/(n+1) + C
Indefinite integral of power
Fundamental Theorem
∫ₐᵇ f(x) dx = F(b) - F(a)
Connects derivative and integral
Quotient Rule
d/dx [f/g] = (f'g - fg')/g²
Derivative of quotient
Limit Definition
f'(x) = lim h→0 (f(x+h)-f(x))/h
Definition of derivative
Newton's Second Law
F = ma
Force equals mass × acceleration
Kinetic Energy
Eₖ = ½mv²
Energy of motion
Potential Energy
Eₚ = mgh
Gravitational potential energy
Einstein's Equation
E = mc²
Mass-energy equivalence
Ohm's Law
V = IR
Voltage = Current × Resistance
Speed of Wave
v = fλ
Wave speed = frequency × wavelength
Gravitational Force
F = G(m₁m₂)/r²
Newton's law of gravitation
Pressure
P = F/A
Pressure = Force / Area
Work
W = Fd cos(θ)
Work done by a force
Power
P = W/t
Power = Work / time
Ideal Gas Law
PV = nRT
Pressure × Volume = moles × R × Temperature
Molarity
M = n/V
Concentration = moles / volume (L)
pH Formula
pH = -log₁₀[H⁺]
Measure of acidity
Density
ρ = m/V
Density = mass / volume
Boyle's Law
P₁V₁ = P₂V₂
Pressure-volume relationship (constant T)
Heat Energy
q = mcΔT
Heat = mass × specific heat × temp change
Avogadro's Number
1 mol = 6.022×10²³ particles
Number of particles per mole