This sample shows the usage of the CKEditor mathematical plugin that uses MathML. You can now use it to create or modify equations using TeX.
When insert one equation with this plugin it will be render using your browser MathML engine like the follow square root of 2: 2\sqrt{2}. Some metadata will be saved like the (La)TeX representation to enable a future edition.
The equations bellow was been copied from MathJax - MathML Samples:
The Quadratic Formula: x=-b±b2-4ac2ax = \frac{-b \pm \sqrt{b^2 - 4 a c}}{2 a}
Cauchy's Integral Formula: f(a)=12πi∮γf(z)z−adzf(a) = \frac{1}{2 \pi i} \oint_{\gamma} \frac{f(z)}{z - a} d z
Double angle formula for Cosines: cos(α+β)=cos(α)cos(β)-sin(α)sin(β)\cos(\alpha + \beta) = \cos(\alpha) \cos(\beta) - \sin(\alpha) \sin(\beta)
Gauss' Divergence Theorem: ∫D(∇⋅F)dV=∫∂D F⋅ndS\int_D (\nabla \cdot F) d V = \int_{\partial D} F \cdot n d S
Curl of a Vector Field: ∇→×F→=(∂Fz∂y−∂Fy∂z)i+(∂Fx∂z−∂Fz∂x)j+(∂Fy∂x−∂Fx∂y)k\vec{\nabla} \times \vec{F} = \left( \frac{\partial F_z}{\partial y} - \frac{\partial F_y}{\partial z} \right) \vec{i} + \left( \frac{\partial F_x}{\partial z} - \frac{\partial F_z}{\partial x} \right) \vec{j} + \left( \frac{\partial F_y}{\partial x} - \frac{\partial F_x}{\partial y} \right) \vec{k}
Standard Deviation: σ=1N∑i=1N(xi−μ)2.\sigma = \sqrt{\frac{1}{N} \sum_{i = 1}{N} (x_i - \mu)^2}
Definition of Christoffel Symbols: (∇XY)k=Xi(∇iY)k=Xi(∂Yk∂xi+ΓimkYm)(\nabla_X Y)^k = X^i (\nabla_i Y)^k = X^i \left( \frac{\partial Y^k}{\partial x^i} + \Tau_{i m}^k Y^m \right)