Showing posts with label 3D Surfaces. Show all posts
Showing posts with label 3D Surfaces. Show all posts
Tuesday, December 7, 2010
Wednesday, May 26, 2010
Wednesday, April 14, 2010
The Tori Collection

The Collection is based on GH definition made by Prof. Ljiljana Petrusevski and Milana Dabic, within the Generic Explorations project, Faculty of Architecture, University of Belgrade.
Labels:
3D Surfaces,
Grasshopper,
knots
Tuesday, February 23, 2010
Wednesday, February 17, 2010
Labels:
3D Surfaces,
Grasshopper,
knots,
minimal surfaces
Tuesday, January 26, 2010
New wolfram Demonstrations by Milana Dabic
Labels:
3D Curves,
3D Surfaces,
Mathematica
Wednesday, May 13, 2009
Fun 3D with ISO Surfaces

New version of Fun 3D software available at http://code.google.com/p/fun3d
Detailed change log http://code.google.com/p/fun3d/wiki/VersionChanges
Labels:
3D Curves,
3D Surfaces,
Cellular Automata,
GE Tools,
ISO Surfaces,
L-systems
Tuesday, May 12, 2009
Labels:
3D Surfaces,
Grasshopper,
Teaching
Thursday, May 7, 2009
Monday, April 27, 2009

x=3+cos(u+v)+cos(v)+cos(u)+sin(u); y=3+cos(u+v)+cos(v)-cos(u)+sin(u); z=cos(1.5+u)*cos(v+u)+2; 3D Surface by student Jelena Ognjanovic, course Generic Explorations 04.
Labels:
3D Surfaces,
Teaching
Friday, April 24, 2009
Labels:
3D Surfaces,
Teaching
Wednesday, April 8, 2009
Labels:
3D Surfaces,
Teaching
Monday, April 6, 2009

Mathematics in Architecture 2, student Jelena Nikolov
3^(cos(x)+cos(y)+cos(z))+4*cos(x)*cos(y)*cos(z) x,y,z range from -3 to 3
-(exp(x) + exp(y) + exp(z)) + tan(5*x)+tan(5*y)+tan(5*z) -log(12.36) x,y,z range from -5 to 5
Labels:
3D Surfaces,
Implicit functions,
Teaching
Thursday, April 2, 2009
The Fun3D software has been added to the Link collection. Congratulations to the author Bojan Mitrovic...
Labels:
3D Curves,
3D Surfaces,
Cellular Automata,
L-systems,
Software
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