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50:27
Lec 27 | MIT 18.03 Differential Equations, Spring 2006
Lec 27 | MIT 18.03 Differential Equations, Spring 2006
Lec 27 | MIT 18.03 Differential Equations, Spring 2006
Sketching Solutions of 2x2 Homogeneous Linear System with Constant Coefficients View the complete course: http://ocw.mit.edu/18-03S06 License: Creative Commo...
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1:44
Nonlinear Differential Equations: Order and Chaos | BUx on edX | Course About Video
Nonlinear Differential Equations: Order and Chaos | BUx on edX | Course About Video
Nonlinear Differential Equations: Order and Chaos | BUx on edX | Course About Video
Take this course for free on edX: https://www.edx.org/course/nonlinear-differential-equations-order-bux-math226-3x
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About this course
Phenomena as diverse as the motion of the planets, the spread of a disease, and the oscillations of a suspension bridge are governed by differential equations. MATH226x is an introduction to the mathematical theory of ordinary differential equations. This course follows a modern dynamical systems approach to the subject. In particu
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6:41
Nonlinear Systems: 7 Dynamical Systems Introduction
Nonlinear Systems: 7 Dynamical Systems Introduction
Nonlinear Systems: 7 Dynamical Systems Introduction
Dynamical systems is a area of mathematics and science that studies how the state of systems change over time, in this module we will lay down the foundations to understanding dynamical systems as we talk about phase space and the simplest types of motion, transients and periodic motion, setting us up to approach the topic of nonlinear dynamical systems in the next module.
This video is part of our Nonlinear systems introduction course take the full course at: https://www.udemy.com/nonlinear-systems-introduction
Produced by Complexity lab: http://complexitylab.io
For Transcriptions and downloads see: http://complexitylab.io/downloads-courses
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2:35
Intro to Differential Equations | BUx on edX | Course About Video
Intro to Differential Equations | BUx on edX | Course About Video
Intro to Differential Equations | BUx on edX | Course About Video
Enroll in Introduction to Differential Equations from BUx at: https://www.edx.org/course/introduction-differential-equations-bux-math226-1x
Learn the mathematical theory of ordinary differential equations and its application to biological and physical systems.
About this Course
Phenomena as diverse as the motion of the planets, the spread of a disease, and the oscillations of a suspension bridge are governed by differential equations. MATH226x is an introduction to the mathematical theory of ordinary differential equations. This course follows a modern dynamical systems approach to the subject. In particular, equations are analyzed using qu
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101:13
Dynamical Systems
Dynamical Systems
Dynamical Systems
Mathematics of Complexity lecture 3 Class description: We've all heard the buzzwords - chaos, fractals, networks, power laws. What do these terms mean in a r...
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1:35
Linear Differential Equations | BUx on edX | About Video
Linear Differential Equations | BUx on edX | About Video
Linear Differential Equations | BUx on edX | About Video
Enroll in Linear Differential Equations from BUx at https://www.edx.org/course/linear-differential-equations-bux-math226-2x
Learn the mathematical theory of linear differential equations and their application to systems such as the mass-spring system and other linear oscillations.
About this Course
Phenomena as diverse as the motion of the planets, the spread of a disease, and the oscillations of a suspension bridge are governed by differential equations. This course is an introduction to the mathematical theory of ordinary differential equations and follows a modern dynamical systems approach. In particular, equations are analyzed using qua
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2:09
All About - Dynamical systems theory
All About - Dynamical systems theory
All About - Dynamical systems theory
What is Dynamical systems theory?
A report all about Dynamical systems theory for homework/assignment
Dynamical systems theory is an area of mathematics used to describe the behavior of complex dynamical systems, usually by employing differential equations or difference equations. When differential equations are employed, the theory is called continuous dynamical systems. When difference equations are employed, the theory is called discrete dynamical systems. When the time variable runs over a set that is discrete over some intervals and continuous over other intervals or is any arbitrary time-set such as a cantor set—one gets dynamic equ
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56:46
Multiagent Dynamical Systems
Multiagent Dynamical Systems
Multiagent Dynamical Systems
I will show how to model multiagent systems using dynamical systems theory by deriving a class of macroscopic differential equations that describe mutual ada...
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41:49
Mod-01 Lec-06 Existence uniqueness of solutions to differential equations
Mod-01 Lec-06 Existence uniqueness of solutions to differential equations
Mod-01 Lec-06 Existence uniqueness of solutions to differential equations
Nonlinear Dynamical Systems by Prof. Harish K. Pillai and Prof. Madhu N.Belur,Department of Electrical Engineering,IIT Bombay.For more details on NPTEL visit http://nptel.ac.in
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9:01
State Space Representation ( Dynamic Systems ) | Mechanical Engineering
State Space Representation ( Dynamic Systems ) | Mechanical Engineering
State Space Representation ( Dynamic Systems ) | Mechanical Engineering
State Space Representation Dynamic Systems.
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65:34
System Dynamics and Control: Module 3 - Mathematical Modeling Part I
System Dynamics and Control: Module 3 - Mathematical Modeling Part I
System Dynamics and Control: Module 3 - Mathematical Modeling Part I
Discussion of differential equations as a representation of dynamic systems. Introduction to the Laplace Transform as a tool for solving differential equations.
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53:31
Logical Analysis of Hybrid Systems
Logical Analysis of Hybrid Systems
Logical Analysis of Hybrid Systems
RI Seminar, February 18, 2011 Andre Platzer Assistant Professor, Computer Science Department, Carnegie Mellon University Hybrid systems model cyber-physical ...
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7:27
Linearizing non-linear dynamic equations
Linearizing non-linear dynamic equations
Linearizing non-linear dynamic equations
In this lecture, we go through the steps of linearizing non-linear differential equations about a given operating/equilibrium point. We will use the multi-va...
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48:25
Differential Equations: The Exponential Map Perspective - Lecture 1
Differential Equations: The Exponential Map Perspective - Lecture 1
Differential Equations: The Exponential Map Perspective - Lecture 1
The first in a series of lectures which will examine differential equations from the perspective of the exponential map. The first lecture starts by consider...
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53:18
Differential Equations, The Exponential Map Perspective - Lecture 3
Differential Equations, The Exponential Map Perspective - Lecture 3
Differential Equations, The Exponential Map Perspective - Lecture 3
The third in a series of lectures which will examine differential equations from the perspective of the exponential map. The third lecture develops the compl...
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38:20
Differential Equations: The Exponential Map Perspective - Lecture 6
Differential Equations: The Exponential Map Perspective - Lecture 6
Differential Equations: The Exponential Map Perspective - Lecture 6
The sixth in a series of lectures which will examine differential equations from the perspective of the exponential map. The sixth lecture introduces very ba...
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28:36
Differential Equations, The Exponential Map Perspective - Lecture 10
Differential Equations, The Exponential Map Perspective - Lecture 10
Differential Equations, The Exponential Map Perspective - Lecture 10
The tenth in a series of lectures which will examine differential equations from the perspective of the exponential map. The tenth lecture discusses coordina...
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41:31
Differential Equations, the Exponential Map Perspective - Lecture 11
Differential Equations, the Exponential Map Perspective - Lecture 11
Differential Equations, the Exponential Map Perspective - Lecture 11
The eleventh in a series of lectures which will examine differential equations from the perspective of the exponential map. In the eleventh lecture we comput...
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15:13
Solving First Order Differential Equations Using An Integrating Factor
Solving First Order Differential Equations Using An Integrating Factor
Solving First Order Differential Equations Using An Integrating Factor
Solving first order, linear, time-varying differential equations using integrating factors is explored. After a brief illustration of how an integrating factor is helpful, an example is worked where the integrating factor is assumed known. The process of deriving the integrating factor is next, followed by a revisiting of the example. The presentation is general, but the eventual motivation (in future videos) is for exploring linearity of dynamical systems control system analysis / design.
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37:52
Partial differential equation
Partial differential equation
Partial differential equation
In mathematics, a partial differential equation (PDE) is a differential equation that contains unknown multivariable functions and their partial derivatives....
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5:47
Interactive Exploration of a Dynamical System
Interactive Exploration of a Dynamical System
Interactive Exploration of a Dynamical System
Interactive Exploration of a Dynamical System Follow us on Twitter - https://twitter.com/ExcellentVideos Facebook - http://www.facebook.com/excellent.randomv...
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6:07
Equation of Tangent Plane to a Surface at a Point Example #1
Equation of Tangent Plane to a Surface at a Point Example #1
Equation of Tangent Plane to a Surface at a Point Example #1
I hope you found this video useful, please subscribe for daily videos! WBM Foundations: Mathematical logic Set theory Algebra: Number theory Group theory Lie...
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4:39
Find The Equation of a Tangent Line (Given a Point) Example #3
Find The Equation of a Tangent Line (Given a Point) Example #3
Find The Equation of a Tangent Line (Given a Point) Example #3
I hope you found this video useful, please subscribe for daily videos! WBM Foundations: Mathematical logic Set theory Algebra: Number theory Group theory Lie...