Twenty Interpenetrating, Rotating Equiangular Golden Hexagons

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Twenty Interpenetrating, Rotating Equiangular Golden Hexagons

Alternating sides of these hexagons have lengths in the Golden Ratio. I created this as a faceting of the rhombicosidodecahedron. It also has faces which are star pentagons and triangles, but those faces are hidden in this view.

(Created using software from www.software3d.com/stella.php)

Zome Icosahedron Encasing a Rhombic Enneacontahedron

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Zome Icosahedron Encasing a Rhombic Enneacontahedron

Zome is a three-dimensional ball-and-stick geometrical modeling system based on the Golden Ratio. I have a large collection, and have used it for years, both as a teaching tool, and for my own investigations. Zome is available for sale at www.zometool.com.

Here is a close-up shot, so you can better see the interior of this figure:

Photo02160907_1

Rotating Icosidodecahedral Shell

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Rotating Icosidodecahedral Shell

Website where you can try the software used to create this image: http://www.software3d.com/stella.php

I bought this program, Stella 4d, years ago, and have never regretted it. It is one of the most powerful tools available for doing work at the intersection of art and mathematics.

Icosidodecahedral Nulloid

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Icosidodecahedral Nulloid

Like all nulloids, this has zero volume. It may be seen as six intersecting, regular decagons. Some consider nulloids a subset of polyhedra; others do not.

I made this using Stella 4d, which you can find at http://www.software3d.com/stella.php.

Cuboctahedral Nulloid

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Cuboctahedral Nulloid

Like all nulloids, this has zero volume. It may be seen as four intersecting, regular hexagons. Some consider nulloids a subset of polyhedra; others do not.

I made this using Stella 4d, which you can find at http://www.software3d.com/stella.php.

Faceted Icosidodecahedron

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Faceted Icosidodecahedron

Check out http://www.software3d.com/stella.php to try the software used to make this image.

Triangles, and the Circles for Which Their Sides Are Diameters

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triangle diameter circles

As you can see, these circles intersect on the sides of the triangles. I did not expect that, nor have I proven it. I have moved the triangle around to check to see if this remained true, and it did pass this test. If I can figure out a proof for this, I’ll post it; if one exists already, please post a comment letting me know where to find it.

Later edit: I found out that these points of intersection are the altitude feet. Here’s a diagram showing the lines containing the altitudes, meeting at the orthocenter. These blue lines also contain the angle bisectors of the brown triangle defined by the altitude feet.

triangle diameter circles

Dodecahedral Cluster of Icosahedra

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Dodecahedral Cluster of Icosahedra

If you are interested in the history of this polyhedral cluster, please see the previous two posts. Also, here’s another color scheme for it:

Icosahedrally Augmented Tetrahedra 5

These images were produced using Stella 4d, software you can find at www.software3d.com/Stella.php.

Cluster of Octahedra

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Cluster of Octahedra

This cluster was formed by putting an octahedron of the same color on each face of the compound of five tetrahedra, seen in the previous post.

In the next post, each outermost face will be augmented with an icosahedron of the same color.

This image was produced using Stella 4d, software you can find at www.software3d.com/Stella.php.

The Compound of Five Tetrahedra

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The Compound of Five TetrahedraWhat would happen if each face in this compound were to be augmented by an octahedron of the same color? To find out, just see the next post!

I produced this image using Stella 4d, software you can find at www.software3d.com/Stella.php.