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-{
- "cells": [
- {
- "cell_type": "markdown",
- "metadata": {},
- "source": [
- "# Numerical Methods\n",
- "\n",
- "Engineering\n",
- "\n",
- "## What is a numerical method?\n",
- "\n",
- "Numerical methods are techniques that transform mathematical problems\n",
- "into forms that can be solved using arithmetic and logical operations.\n",
- "Because digital computers excel at these computations, numerical methods\n",
- "are often referred to as computer mathematics.\n",
- "\n",
- "## Numerical Differentiation\n",
- "\n",
- "Forwards difference Backwards difference\n",
- "\n",
- "[Read\n",
- "More](https://pythonnumericalmethods.studentorg.berkeley.edu/notebooks/chapter20.00-Numerical-Differentiation.html)\n",
- "\n",
- "## Roots and Optimization\n",
- "\n",
- "Incremental Search Bisection Modified Secant Newton-Raphson\n",
- "\n",
- "## Numerical Integration\n",
- "\n",
- "Trapezoidal\n",
- "\n",
- "Simpson’s Rule\n",
- "\n",
- "[Read\n",
- "More](https://pythonnumericalmethods.studentorg.berkeley.edu/notebooks/chapter21.00-Numerical-Integration.html)\n",
- "\n",
- "## Numerical Solutions of Ordinary Differential Equations\n",
- "\n",
- "Euler’s Method - Forward - Backwards\n",
- "\n",
- "Runge-Kutta Method\n",
- "\n",
- "[Read\n",
- "More](https://pythonnumericalmethods.studentorg.berkeley.edu/notebooks/chapter22.00-ODE-Initial-Value-Problems.html)"
- ],
- "id": "47b4ca7c-5bc4-4436-9ecd-ab541d2a2bcc"
- }
- ],
- "nbformat": 4,
- "nbformat_minor": 5,
- "metadata": {}
-}