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author | Eugeniy Mikhailov <evgmik@gmail.com> | 2014-09-03 08:37:55 -0400 |
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committer | Eugeniy Mikhailov <evgmik@gmail.com> | 2014-09-03 08:37:55 -0400 |
commit | b448611aae93de17a8d98f4d78070de6f641390d (patch) | |
tree | 1b36a489e4e6673d981570658df80f0927566272 /interferometry.tex | |
parent | f6cc99e2be1068ffa8c995892263606c2257d906 (diff) | |
download | manual_for_Experimental_Atomic_Physics-b448611aae93de17a8d98f4d78070de6f641390d.tar.gz manual_for_Experimental_Atomic_Physics-b448611aae93de17a8d98f4d78070de6f641390d.zip |
typo: thanks to Jordan
Diffstat (limited to 'interferometry.tex')
-rw-r--r-- | interferometry.tex | 2 |
1 files changed, 1 insertions, 1 deletions
diff --git a/interferometry.tex b/interferometry.tex index ea239e6..a4fff68 100644 --- a/interferometry.tex +++ b/interferometry.tex @@ -118,7 +118,7 @@ Once the interferometer is aligned, insert a convex lens ($f=\unit[18]{mm}$ work \begin{figure}[h] \centering \includegraphics[width=0.7\columnwidth]{./pdf_figs/fig3} -\caption{\label{fig3mich.fig}Micrometer readings. The course division equals to 100~$\mu$m, and smallest division on the rotary dial is 1~$\mu$m (same as 1 micron). The final measurements is the sum of two. } +\caption{\label{fig3mich.fig}Micrometer readings. The coarse division equals to 100~$\mu$m, and smallest division on the rotary dial is 1~$\mu$m (same as 1 micron). The final measurements is the sum of two. } \end{figure} \section*{Wavelength measurements using Michelson interferometer} |