Personalized trophies for the seven members of the Odyssey of the Mind team I coached with Jeff Offutt. Each side is a wordle of lines from the scripts. The print consists of five pieces (four sides and a middle) attached with ABS slurry. Largest production item I've ever made.
Wednesday, June 3, 2015
Odyssey of the Mind Trophies
Personalized trophies for the seven members of the Odyssey of the Mind team I coached with Jeff Offutt. Each side is a wordle of lines from the scripts. The print consists of five pieces (four sides and a middle) attached with ABS slurry. Largest production item I've ever made.
Wednesday, May 27, 2015
Funghini
The function
is discontinuous at (x,y)=(0,0). The graph is a surface of fixed height along each line through the origin - a very hard concept to wrap the mind around. This creates the fold at the middle. Note in the print below that there are four fixed height lines on it in a different color to emphasize this strange fact. The title of this post reflects the fact that the graph looks very much like a specialty pasta, though I am not completely sure Funghini is the right term.
2 x y / (x^2+y^2)
Thursday, May 7, 2015
Calling it a Semester on Multivariable Calculus
This is it for the multivariable calculus 3D print labs. Some students got quite poetic on their final print with names like "Skating Rink," "Guitar Pick," "The Snowcone," and "The Abyss" (The Abyss is not depicted here). Students are mostly enthusiastic about being able to apply the math they are learning (hundreds of years old) to a technology which is less than five years old. The class prints will remain in the department's display case until it runs out of room.
Thursday, April 30, 2015
Mandatory DIY
The downside of 3D printers is that there aren't any repair shops. When it breaks, a mathematician does hardware.
Monday, April 13, 2015
Thursday, April 9, 2015
Mathematical 3D Printing talk
Today I gave a talk about my 3D printing:
Mathematical 3D Printing
The event was organized by the GMU AWM chapter. Here is a souvenir I made for it:
Mathematical 3D Printing
The event was organized by the GMU AWM chapter. Here is a souvenir I made for it:
Visitors and Polyhedra
Today I gave a talk for a few high school students and teachers visiting GMU from a local high school. I wanted to explain how every 3D model is stored as a polyhedron. For example, the simple heart
is stored as an object
is stored as an object
consisting of a large number of vertices
a large number of edges
and a large number of faces
In particular, even the simple heart has 7852 vertices and 15700 faces!
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