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## Euler's Numerical Method for y'=f(x,y) and its Generalizations

Euler's Numerical Method for y'=f(x,y) and its Generalizations

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Part of video series Differential Equations Course acquired through MIT OpenCourseWare

Arthur Mattuck, 18.03 Differential Equations, Spring 2006. (Massachusetts Institute of Technology: MIT OpenCourseWare), http://ocw.mit.edu (Accessed November 23, 2008). License: Creative Commons BY-NC-SA.

More info at: http://ocw.mit.edu/terms

More info at: http://ocw.mit.edu/terms

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Euler's Numerical Method for y'=f(x,y) and its Generalizations -- Lecture 2. How to find numerical solutions to differential equations.

- Lecture Notes - Lecture Notes
- Notes - Notes and exercises written by Prof. Mattuck
- Recitation Problems - Recitation Problems and classwork exercises
- Recitation Solutions - Recitation problem solutions
- Euler's Method Java Applet - Interactive Java Applet to learn and discover Euler's Method.

- How are differential equations solved in real life?
- What is Euler's numerical method for solving differential equations?
- How do you solve a differential equation numerically?
- What is an initial value problem?
- What is an IVP?
- What are Euler's Equations?
- What is the Runge-Kutta 4th order method?

This video does a great job of explaining Euler’s method for finding numerical solutions to differential equations. This is a very practical and useful way of solving differential equations.

Thanks for the help