Just testing latex
\[\int xp xᄅ \]
\[\iiiint\]
\[x^ǝ\]
\[\color{red}{\int}\color{blue}{\int}\color{green}{\int}\]
nice, fun triple integral
\[\huge\looparrowright\]
Coloured math sounds like fun. Maybe I'll use colour's in my answers from now on.
\[\frac{ǝɥʇ}{ʇɐɥʍ} \]
ɹǝʍsuɐ uʍop ǝpısdn ǝsn 'ou
*colours
\[\bigoplus\]
A lot of the packages are missing...
yeah, especially cool graphical ones
They could at least do smileys...
frownies..
But you can get them in symbol
True...
If they could add some sort of vector graphics package, posting diagrams would be much less of a problem.
\[\mathbf{V}_1 \times \mathbf{V}_2 = \begin{vmatrix} \mathbf{i} & \mathbf{j} & \mathbf{k} \\ \frac{\partial X}{\partial u} & \frac{\partial Y}{\partial u} & 0 \\ \frac{\partial X}{\partial v} & \frac{\partial Y}{\partial v} & 0 \\ \end{vmatrix}\]
Although I guess attaching an image is good enough.
\[\color{red} {\frac{ǝɥʇ}{ʇɐɥʍ}} \]
whoa, that's neat
\[\begin{align} \nabla \times \vec{\mathbf{B}} -\, \frac1c\, \frac{\partial\vec{\mathbf{E}}}{\partial t} & = \frac{4\pi}{c}\vec{\mathbf{j}} \\ \nabla \cdot \vec{\mathbf{E}} & = 4 \pi \rho \\ \nabla \times \vec{\mathbf{E}}\, +\, \frac1c\, \frac{\partial\vec{\mathbf{B}}}{\partial t} & = \vec{\mathbf{0}} \\ \nabla \cdot \vec{\mathbf{B}} & = 0 \end{align}\]
now you are just showing off
:-)
\[\frac{1}{(\sqrt{\phi \sqrt{5}}-\phi) e^{\frac25 \pi}} = 1+\frac{e^{-2\pi}} {1+\frac{e^{-4\pi}} {1+\frac{e^{-6\pi}} {1+\frac{e^{-8\pi}} {1+\ldots} } } }\] From yesterday....
\begin{array}{rcccl} \; & \; & G &\; &\; \\ \; & \nearrow & \; & \nwarrow &\; \\ H & \; & \; & \; &\text{Stab}_G(\eta) \\ \; & \nwarrow & \; & \nearrow &\; \\ \; & \; & H_{_\rho} & \; &\; \\ \; & \; & \mid &\; &\; \\ \; & \; & K &\; &\; \end{array}
I can't put a big "check" mark, so tick, tick..:-)
\[\checkmark\]
Ah, checkmark works....
\[\huge \checkmark\]
I think what they have is amsmath plus basic set up...
\[\color{green} {\huge \checkmark} \]
\[\color{blue} {\huge \checkmark}\color{blue} {\huge \checkmark}\]
\[\huge \dagger\]
\[\newcommand{\cg}[6]{ \left< \begin{array}{cc|c} #1 & #3 & #5 \\ #2 & #4 & #6 \end{array} \right> } \cg{m_1}{j_1}{m_2}{j_2}{M}{J}\]
So u can define commands for repeated stuff...
imran where is mathjax running already ?
r u here
hi imraan
upside down wow!
??????????
Join our real-time social learning platform and learn together with your friends!