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The title says it all: this blog features physics videos found everywhere on the web: animations, demonstrations, lectures, documentaries.
Please go here if you want to suggest other nice physics videos, and here if I mistakingly infringed your copyrights. If you understand French, you'll find a huge selection of physics videos in French in my other blog Vidéos de Physique.
Showing posts with label Vectors. Show all posts
Showing posts with label Vectors. Show all posts

Friday, 7 September 2012

Hewitt-Drew-it! 11. Velocity Vectors

Paul extends a televised classroom lecture on vectors to explain the resultant velocities of airplanes in wind.

Other Hewitt-Drew-it! videos

Sunday, 5 August 2012

Hewitt-Drew-it! 6. Force Vector Diagrams

Paul extends Jim Court diagrams, identifying forces on a suspended, then falling ball.

Other Hewitt-Drew-it! videos

Saturday, 21 July 2012

Hewitt-Drew-it! 4: Nellie's Rope Tensions

Paul Hewitt explains how vectors are used to figure out forces and equilibrium. Paul uses a parallelogram rule to find resultant tensions.

Other Hewitt-Drew-it! videos

 

Thursday, 19 July 2012

Hewitt-Drew-it! 3:Net Force & Vectors

Paul Hewitt explains how vectors are used to figure out forces and equilibrium.

Other Hewitt-Drew-it! videos

 

Thursday, 10 November 2011

Vectors - Sixty Symbols

Rulers, hammers and a piece of string - what could possibly go wrong in this film about vectors?

Other Sixty Symbols videos

Wednesday, 13 April 2011

IBPH Episode #2 - Working with Vectors

The topics covered in this second episode are: displacement, vector addition, vector subtraction, products of vectors, components of a vector.

Source:  Horatiu Pop

Other videos by Horatiu Pop



IBPH Episode #2 - Working with Vectors from Horatiu Pop on Vimeo.

Saturday, 22 January 2011

MIT 8.01 Classical Mechanics Lecture 3

MIT Physics Course
Professor Walter Lewin
8.01 Physics  I: Classical Mechanics, Fall 1999

This third lecture is mostly about vectors:  vector addition, dot product, cross product.  In the last 15 minutes:  3-D kinematics:  3-D motion can be described with 3 indenpendant components.  Motion of a projectile and, at the 46th minute, experiment showing that horizontal and vertical motion are independant.

See other videos in this series.



Friday, 7 January 2011