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LaTeX?
12-13-2013, 02:42 AM (This post was last modified: 12-13-2013 02:45 AM by Dave Hicks.)
Post: #2
RE: LaTeX?
Maybe it does now - let's see:

\[\int_{a}^{b} f(x)dx = F(b)-F(a) \]

\[ \left( \sum_{k=1}^n a_k b_k \right)^2 \leq \left( \sum_{k=1}^n a_k^2 \right) \left( \sum_{k=1}^n b_k^2 \right) \]

\[\mathbf{V}_1 \times \mathbf{V}_2 = \begin{vmatrix} \mathbf{i} & \mathbf{j} & \mathbf{k} \\ \frac{\partial X}{\partial u} & \frac{\partial Y}{\partial u} & 0 \\ \frac{\partial X}{\partial v} & \frac{\partial Y}{\partial v} & 0 \end{vmatrix} \]

\[ \begin{aligned} \nabla \times \vec{\mathbf{B}} -\, \frac1c\, \frac{\partial\vec{\mathbf{E}}}{\partial t} & = \frac{4\pi}{c}\vec{\mathbf{j}} \\ \nabla \cdot \vec{\mathbf{E}} & = 4 \pi \rho \\ \nabla \times \vec{\mathbf{E}}\, +\, \frac1c\, \frac{\partial\vec{\mathbf{B}}}{\partial t} & = \vec{\mathbf{0}} \\ \nabla \cdot \vec{\mathbf{B}} & = 0 \end{aligned} \]
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Messages In This Thread
LaTeX? - Han - 12-13-2013, 01:02 AM
RE: LaTeX? - Dave Hicks - 12-13-2013 02:42 AM
RE: LaTeX? - Han - 12-13-2013, 02:44 AM
RE: LaTeX? - Dave Hicks - 12-13-2013, 02:46 AM
RE: LaTeX? - Han - 12-13-2013, 02:49 AM
RE: LaTeX? - Dave Hicks - 12-13-2013, 02:55 AM
RE: LaTeX? - Massimo Gnerucci - 12-13-2013, 11:32 AM
RE: LaTeX? - jebem - 04-01-2016, 03:22 PM
RE: LaTeX? - Han - 12-13-2013, 02:58 AM
RE: LaTeX? - Thomas Klemm - 12-13-2013, 07:29 AM
RE: LaTeX? - John R - 12-13-2013, 04:25 PM
RE: LaTeX? - Mark Hardman - 12-13-2013, 07:26 PM
RE: LaTeX? - ggauny@live.fr - 04-02-2016, 09:12 AM
RE: LaTeX? - jebem - 04-02-2016, 11:18 AM
RE: LaTeX? - Joe Horn - 04-02-2016, 02:30 PM
RE: LaTeX? - jebem - 04-05-2016, 03:15 PM
RE: LaTeX? - Tim Wessman - 04-07-2016, 01:08 PM
RE: LaTeX? - Massimo Gnerucci - 04-07-2016, 02:26 PM
RE: LaTeX? - jebem - 04-07-2016, 05:11 PM
RE: LaTeX? - vk6ti - 04-07-2016, 10:24 PM



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