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authorEugeniy E. Mikhailov <evgmik@gmail.com>2019-09-11 22:57:42 -0400
committerEugeniy E. Mikhailov <evgmik@gmail.com>2019-09-11 22:57:42 -0400
commitc12868d67f4e9dc450564eaf57c0352b9cc2989a (patch)
tree7b03b62632ac916e660ffa979efa60d60d9586ae
parent0da108bba469972a721430f30a7c947d2817c2cd (diff)
downloadmanual_for_Experimental_Atomic_Physics-c12868d67f4e9dc450564eaf57c0352b9cc2989a.tar.gz
manual_for_Experimental_Atomic_Physics-c12868d67f4e9dc450564eaf57c0352b9cc2989a.zip
change figure size to fit in a page
-rw-r--r--interferometry.tex4
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diff --git a/interferometry.tex b/interferometry.tex
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--- a/interferometry.tex
+++ b/interferometry.tex
@@ -210,7 +210,7 @@ In reality, the Na discharge lamp produces a doublet - two spectral lines that a
\begin{figure}
\centering
-\includegraphics[width=0.8\linewidth]{./pdf_figs/fpfig3} \caption{\label{fpfig3.fig}The Fabry-Perot Interferometer. \textbf{For initial alignment the laser and the convex lens are used instead of the Na lamp.}}
+\includegraphics[width=0.7\linewidth]{./pdf_figs/fpfig3} \caption{\label{fpfig3.fig}The Fabry-Perot Interferometer. \textbf{For initial alignment the laser and the convex lens are used instead of the Na lamp.}}
\end{figure}
Disassemble the Michelson Interferometer, and assemble the Fabry-Perot interferometer as shown in
Figure~\ref{fpfig3.fig}, initially using the laser for alignment instead of the sodium lamp. First, place the viewing screen behind the two partially-reflecting mirrors ($P1$ and $P2$), and adjust the mirrors such
@@ -284,7 +284,7 @@ Use this equation and your experimental measurements to calculate average value
\begin{figure}[h]
\centering
-\includegraphics[width=0.7\linewidth]{./pdf_figs/fpfig4}
+\includegraphics[width=0.60\linewidth]{./pdf_figs/fpfig4}
\\
\centering
\begin{subfigure}[t]{0.18\textwidth}