\begin{juliacode} using PyPlot x = linspace(0, 2π, 200) plot(x, sin(x)) \end{juliacode} \begin{juliaout} 1-element Array{Any,1}: PyObject \end{juliaout} \begin{figure}[ht] \center \includegraphics[width=\linewidth]{figures/pyplot_formats_sin_fun_1.pdf} \caption{sin(x) function.} \label{fig:sin_fun} \end{figure} \begin{juliaout} 1-element Array{Any,1}: PyObject \end{juliaout} \begin{figure}[htpb] \center \includegraphics[width=\linewidth]{figures/pyplot_formats_2_1.pdf} \caption{cos(x) function.} \end{figure} \begin{juliaout} 1-element Array{Any,1}: PyObject \end{juliaout} \includegraphics[width=\linewidth]{figures/pyplot_formats_cos2_fun_1.pdf} \begin{juliaterm} julia> x = linspace(0, 2π, 200) linspace(0.0,6.283185307179586,200) julia> plot(x, sin(x)) 1-element Array{Any,1}: PyObject julia> y = 20 20 julia> plot(x, cos(x)) 1-element Array{Any,1}: PyObject \end{juliaterm} \includegraphics[width=\linewidth]{figures/pyplot_formats_4_1.pdf} \begin{juliacode} x = randn(100, 100) contourf(x) \end{juliacode} \begin{juliaout} PyObject \end{juliaout} \includegraphics[width=15cm]{figures/pyplot_formats_5_1.pdf}