{ "cells": [ { "cell_type": "markdown", "id": "0", "metadata": {}, "source": [ "# Tutorial 5" ] }, { "cell_type": "code", "execution_count": null, "id": "1", "metadata": {}, "outputs": [], "source": [ "import numpy as np\n", "\n", "from maxplotlib import Canvas\n", "\n", "%load_ext autoreload\n", "%autoreload 2" ] }, { "cell_type": "code", "execution_count": null, "id": "2", "metadata": {}, "outputs": [], "source": [ "c = Canvas(width=\"17cm\", ratio=0.5)\n", "sp = c.add_subplot(grid=True, xlabel=\"x\", ylabel=\"y\")\n", "\n", "# node_a = sp.add_node(\n", "# 0, 0, \"A\", content=\"Node A\", shape=\"circle\", draw=\"black\", fill=\"blue!20\"\n", "# )\n", "# node_b = sp.add_node(\n", "# 1, 1, \"B\", content=\"Node B\", shape=\"circle\", draw=\"black\", fill=\"blue!20\"\n", "# )\n", "# sp.add_node(2, 2, 'B', content=\"$a^2 + b^2 = c^2$\", shape='rectangle', draw='red', fill='white', layer=1)\n", "# sp.add_node(2, 5, 'C', shape='rectangle', draw='red', fill='red')\n", "# last_node = sp.add_node(-1, 5, shape='rectangle', draw='red', fill='red', layer=-10)\n", "\n", "# Add a line between nodes\n", "# sp.add_path([\"A\", \"B\"], color=\"green\", style=\"solid\", line_width=\"2\", layer=-5)\n", "\n", "x = np.arange(0, 2 * np.pi, 0.01)\n", "y = np.sin(x)\n", "sp.add_line(x, y, label=r\"$\\sin(x)$\")\n", "\n", "c.show()" ] } ], "metadata": { "kernelspec": { "display_name": "env_maxplotlib", "language": "python", "name": "python3" }, "language_info": { "codemirror_mode": { "name": "ipython", "version": 3 }, "file_extension": ".py", "mimetype": "text/x-python", "name": "python", "nbconvert_exporter": "python", "pygments_lexer": "ipython3", "version": "3.12.3" } }, "nbformat": 4, "nbformat_minor": 5 }