$\oint _{low}^{high} \left ( \begin{matrix} cos(t) & cost \\ sin(t) & e^{3/2} \end{matrix} \right ) ~ dx + \lim_{x \to \infty} \frac{x^3 - ln(4)}{\sqrt{x^2 - 1}}$ Well, the dollar signs seem to be working. anyone having problems? -Dan
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No problems today for me ...
Originally Posted by topsquark $\oint _{low}^{high} \left ( \begin{matrix} cos(t) & cost \\ sin(t) & e^{3/2} \end{matrix} \right ) ~ dx + \lim_{x \to \infty} \frac{x^3 - ln(4)}{\sqrt{x^2 - 1}}$ Well, the dollar signs seem to be working. anyone having problems? -Dan you're not getting the vertical line at the end of each line of latex?
Originally Posted by topsquark $\displaystyle\oint _{low}^{high} \left ( \begin{matrix} \cos(t) & \cos t \\ \sin(t) & e^{3/2} \end{matrix} \right ) ~ dx + \lim_{x \to \infty} \frac{x^3 - \ln(4)}{\sqrt{x^2 - 1}}$ Well, the dollar signs seem to be working. anyone having problems? -Dan Using \displaystyle, \sin(t), \cos t. & \ln(x) helps.
are you all not seeing this line?
Nope. Is this happening with every code you are seeing? -Dan
yes, in chrome, windows 10 testing in IE $e^{i \pi} + 1 = 0$ ok, it's chrome, and probably something I did.
Last edited by romsek; Dec 6th 2015 at 08:47 PM.
testing again with math renderer set to SVG $e^{i \pi}+1 = 0$ ok this works.
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