Lucy Liang edited figures/Johnson_Noise/caption.tex  over 8 years ago

Commit id: 9913e06689354cb54e9bb595cb14690d42428269

deletions | additions      

       

\label{fig:JohnsonGraph}  Johnson Noise for two different resistances: $1\textrm{K}\Omega$ and $10\textrm{K}\Omega$. The slopes are the Boltmann Constant $K$. For the $1\textrm{K}\Omega$ resistor, $K=1.46 \cdot 10^{-23} \textrm{ m}^2 \textrm{ kg} \textrm{ s}^{-2} \textrm{K}^{-1} \textrm{ m}^2 \textrm{ kg} \textrm{ s}^{-2} \textrm{  K}^{-1}$ and for the $10\textrm{K}\Omega$ resistor, $K=1.46 \cdot 10^{-23} \textrm{ m}^2 \textrm{ kg} \textrm{ s}^{-2} \textrm{K}^{-1} \textrm{ m}^2 \textrm{ kg} \textrm{ s}^{-2} \textrm{  K}^{-1}$.