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author | Eugeniy Mikhailov <evgmik@gmail.com> | 2013-10-09 14:00:25 -0400 |
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committer | Eugeniy Mikhailov <evgmik@gmail.com> | 2013-10-09 17:27:17 -0400 |
commit | 0d295e79d55d6c3133f10b3cb57230a5b766eda4 (patch) | |
tree | c535bb0974963cd8e8562c3c6b8cf36b37c52c71 /blackbody.tex | |
parent | 5af90088a03602bea852bf76617ddd82adfbf297 (diff) | |
download | manual_for_Experimental_Atomic_Physics-0d295e79d55d6c3133f10b3cb57230a5b766eda4.tar.gz manual_for_Experimental_Atomic_Physics-0d295e79d55d6c3133f10b3cb57230a5b766eda4.zip |
replaced ugly scans with a better ones for black body radiation
Diffstat (limited to 'blackbody.tex')
-rw-r--r-- | blackbody.tex | 9 |
1 files changed, 5 insertions, 4 deletions
diff --git a/blackbody.tex b/blackbody.tex index aad3dd8..cf4bf56 100644 --- a/blackbody.tex +++ b/blackbody.tex @@ -91,7 +91,7 @@ Imagine a metal wire connected to a cold reservoir at one end and a hot reservoi \end{boxedminipage} -\begin{figure} +\begin{figure}[h] \includegraphics[height=2.5in]{./pdf_figs/bbx} \caption{\label{bbx}Thermal Radiation Setup} \end{figure} @@ -209,12 +209,13 @@ Lamp, Power supply. % \item Turn on the lamp power supply. Set the voltage, $V$, in steps of one volt from 1-12 volts. At each $V$, record the ammeter (current) reading from the lamp and the voltage from the radiation sensor. Calculate the resistance of the lamp using Ohm's Law and determine the temperature $T$ of the lamp from the table shown in Fig. \ref{w_res:fig}. -\begin{figure} -\includegraphics[height=2.5in]{./pdf_figs/w_res} +\end{enumerate} + +\begin{figure}[h] +\includegraphics[width=\columnwidth]{./pdf_figs/w_res} \caption{\label{w_res:fig}Table of Tungsten's Resistance as a function of temperature.} \end{figure} -\end{enumerate} Sample table for experimental data recording: |