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    93567
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      This is a test here is an

      \[ E= \dfrac{q_1q_2}{(4\pi\epsilon_0) r} \; \; \; \; \; \; \; \;  F= \dfrac{q_1q_2}{(4\pi\epsilon_0) r^2}  \]

      Followed by the second identical equation.  In a minute, I will annotate the second

      \[ E= \dfrac{q_1q_2}{(4\pi\epsilon_0) r} \; \; \; \; \; \; \; \;  F= \dfrac{q_1q_2}{(4\pi\epsilon_0) r^2}  \]

      The last time I did this, I had to go into the source code, and found some stuff from h. that I had to remove, to get the equation to work again.

       

      \ Pasting text here

      \[\left ( 56.4Tbytes \right )\left ( \frac{10^{12}bytes}{1Tbytes} \right )\left ( \frac{1Mbytes}{10^{6}bytes} \right )= 56.4x10^{\left ( 12-6 \right )}Mbytes= 56.4x10^{6}Mbytes= 5.64x10^{7}Mbytes\]

       

      Cleaning up text here

       

      \[\left ( 56.4Tbytes \right )\left ( \frac{10^{12}bytes}{1Tbytes} \right)\left ( \frac{1Mbytes}{10^{6}bytes} \right )= 56.4x10^{\left ( 12-6 \right )}Mbytes= 56.4x10^{6}Mbytes= 5.64x10^{7}Mbytes\]