test 2-7-2019

just testing and experimenting with latex math typesetting, don’t read.

https://en.wikibooks.org/wiki/LaTeX/Mathematics

the basic syntax –
\alpha A \beta B \gamma \Gamma \pi \Pi \phi \varphi \mu \Phi

adding a size parameter –
\alpha A \beta B \gamma \Gamma \pi \Pi \phi \varphi \mu \Phi

**************************

size parameter 1 –
\alpha A \beta B \gamma \Gamma \pi \Pi \phi \varphi \mu \Phi

size parameter 2 –
\alpha A \beta B \gamma \Gamma \pi \Pi \phi \varphi \mu \Phi

size parameter 3 –
\alpha A \beta B \gamma \Gamma \pi \Pi \phi \varphi \mu \Phi

size parameter 4 –
\alpha A \beta B \gamma \Gamma \pi \Pi \phi \varphi \mu \Phi

size parameter 5 does not display.

***************************************

\leq  \subset  < >  \geq  =  \approx  \neq  \parallel  \in  \perp  \sphericalangle  \notin  \measuredangle

\pm \times \ast \div

***************************************************

 

+ – = ! / ( ) [ ] | ‘ : *

+ - = ! / ( ) [ ] | ' : *

*************************************************************

\sin \cos \tan \cot \sec \csc

\sin \cos \tan \cot \sec \csc

\cos (2\theta) = \cos^2 \theta - \sin^2 \theta

 

***************************************************************************

\lim\limits_{x \to \infty} \exp(-x) = 0

****************************************************************************

3\times{}^1/_2=1{}^1/_2

\tan \theta + 2= \frac {\sin \theta} {\cos \theta} + 2

***************************************************************************

\sqrt{\frac{a}{b}}

\sqrt[n]{1+x+x^2+x^3+\dots+x^n}

********************************

https://en.wikibooks.org/wiki/LaTeX/Mathematics

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