#geometricart — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #geometricart, aggregated by home.social.
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Work in progress
A DULL FALL#blender #fediart #mastoart #pixelfed #geometricart #digitalart #3d #generativeart
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Nana no. 37 🟢 AVAILABLE
get this piece or check out my other work here -> https://jen.bigcartel.com/product/nana-37
#art #artforsale #supportartists #abstractart #geometricart #modernart #painting #design
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Nana no. 37 🟢 AVAILABLE
get this piece or check out my other work here -> https://jen.bigcartel.com/product/nana-37
#art #artforsale #supportartists #abstractart #geometricart #modernart #painting #design
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Nana no. 37 🟢 AVAILABLE
get this piece or check out my other work here -> https://jen.bigcartel.com/product/nana-37
#art #artforsale #supportartists #abstractart #geometricart #modernart #painting #design
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Nana no. 37 🟢 AVAILABLE
get this piece or check out my other work here -> https://jen.bigcartel.com/product/nana-37
#art #artforsale #supportartists #abstractart #geometricart #modernart #painting #design
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Nana no. 37 🟢 AVAILABLE
get this piece or check out my other work here -> https://jen.bigcartel.com/product/nana-37
#art #artforsale #supportartists #abstractart #geometricart #modernart #painting #design
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Twinkle Ball
Rainbowcore kaleidoscopic fractal art made in GIMP.
#Fractal #FractalArt #Geometric #GeometricArt #GIMP #Kaleidoscope #Kaleidoscopic #Abstract #AbstractArt #Digital #DigitalAbstract #Rainbow #Rainbowcore #Psychedelia #Psychedelic #Trippy #Colorful #Colourful #Iridescent #Iridescence #Art #Artwork #MastoArt #ArtistOnMastodon
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Twinkle Ball
Rainbowcore kaleidoscopic fractal art made in GIMP.
#Fractal #FractalArt #Geometric #GeometricArt #GIMP #Kaleidoscope #Kaleidoscopic #Abstract #AbstractArt #Digital #DigitalAbstract #Rainbow #Rainbowcore #Psychedelia #Psychedelic #Trippy #Colorful #Colourful #Iridescent #Iridescence #Art #Artwork #MastoArt #ArtistOnMastodon
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Twinkle Ball
Rainbowcore kaleidoscopic fractal art made in GIMP.
#Fractal #FractalArt #Geometric #GeometricArt #GIMP #Kaleidoscope #Kaleidoscopic #Abstract #AbstractArt #Digital #DigitalAbstract #Rainbow #Rainbowcore #Psychedelia #Psychedelic #Trippy #Colorful #Colourful #Iridescent #Iridescence #Art #Artwork #MastoArt #ArtistOnMastodon
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Twinkle Ball
Rainbowcore kaleidoscopic fractal art made in GIMP.
#Fractal #FractalArt #Geometric #GeometricArt #GIMP #Kaleidoscope #Kaleidoscopic #Abstract #AbstractArt #Digital #DigitalAbstract #Rainbow #Rainbowcore #Psychedelia #Psychedelic #Trippy #Colorful #Colourful #Iridescent #Iridescence #Art #Artwork #MastoArt #ArtistOnMastodon
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Twinkle Ball
Rainbowcore kaleidoscopic fractal art made in GIMP.
#Fractal #FractalArt #Geometric #GeometricArt #GIMP #Kaleidoscope #Kaleidoscopic #Abstract #AbstractArt #Digital #DigitalAbstract #Rainbow #Rainbowcore #Psychedelia #Psychedelic #Trippy #Colorful #Colourful #Iridescent #Iridescence #Art #Artwork #MastoArt #ArtistOnMastodon
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“Papaper Cuuts #10” by Thomas Typewriter – a new painting
"Papaper Cuuts #10" by Thomas Typewriter (mixed-media, 24"w x 36"h, colored printer paper digitally composited with vector graphics) If you like this, or any of my other art, please consider throwing some support my way through my Patreon (https://www.patreon.com/c/ThomasTypewriterTypes) or Ko-fi (https://ko-fi.com/thomastypewriter).https://thomastypewriter.art/2026/09/07/papaper-cuuts-10-by-thomas-typewriter-a-new-painting/
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Wallflower no. 29 🔴 SOLD
get one like it or check out my other work here -> https://jen.bigcartel.com/category/abstract-geometric-paintings
#art #sold #artshare #abstractart #geometricart #modernart #painting #design
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ART 137 | Felipe De Vicente ©
Listen on #Spotify
https://open.spotify.com/track/2S8YBekJTorfqizYrSsTDQ
#ElectronicMusic #Electronic #Music #Electronica #Techno #DeepHouse #Dub #Minimal #Ambient #Art #AbstractArt #GeometricArt #DigitalArt #Nowplaying #Listen #felipedevicente
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Wallflower no. 55 🟢 AVAILABLE
get this piece or check out my other work here -> https://jen.bigcartel.com/product/wallflower-55
#art #artforsale #supportartists #abstractart #geometricart #modernart #painting #design
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Holosquare
A reductive phractal - this one reducing the number of angles of symmetry from six to four.
#Fractal #Fractals #FractalArt #Abstract #AbstractArt #Digital #DigitalArt #GIMP #Psychedelic #Psychedelia #Geometric #GeometricArt #Kaleidoscope #Kaleidoscopic #Symmetry #Symmetric #MathArt #MathsArt #Colorful #Colourful #Minimal #Minimalist #Minimalism #Pixel #Pixels #PixelArt #Art #Artwork #MastoArt #ArtistOnMastodon
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Wallflower no. 16 🔴 SOLD
get one like it or check out my other work here -> https://jen.bigcartel.com/category/abstract-geometric-paintings
#art #sold #artshare #abstractart #geometricart #modernart #painting #design
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“Laby Rinses #014” by Thomas Typewriter – a new painting
"Laby Rinses #014" by Thomas Typewriter (mixed media, 36"w x 24"h, black pen, red pen, & sticky note digitally composited with vector graphics) If you like this, or any of my other art, please consider throwing some support my way through my Patreon (https://www.patreon.com/c/ThomasTypewriterTypes) or Ko-fi (https://ko-fi.com/thomastypewriter).https://thomastypewriter.art/2026/08/31/laby-rinses-014-by-thomas-typewriter-a-new-painting/
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Nana no. 24 🟢 AVAILABLE
get this piece or check out my other work here -> https://jen.bigcartel.com/product/nana-24
#art #artforsale #supportartists #abstractart #geometricart #modernart #painting #design
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Wallflower no. 35 🔴 SOLD
get one like it or check out my other work here -> https://jen.bigcartel.com/category/abstract-geometric-paintings
#art #sold #artshare #abstractart #geometricart #modernart #painting #design
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Cosmic Pulse
Made by generating a Mandelbrot set and then mapping it to a Julia set in GIMP.
#Fractal #Fractals #FractalArt #Abstract #AbstractArt #Math #Maths #MathArt #MathsArt #Geometry #Geometric #GeometricArt #Mandelbrot #Complexity #ASCII #ANSI #Space #GIMP #Digital #DigitalArt #Art #Artwork #MastoArt #ArtistOnMastodon
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Wallflower no. 61 🟢 AVAILABLE
get this piece or check out my other work here -> https://jen.bigcartel.com/product/wallflower-61
#art #artforsale #supportartists #abstractart #geometricart #modernart #painting #design
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ART 135 | Felipe De Vicente ©
Listen on #Spotify
https://open.spotify.com/track/6woaMOMEnLVx9bmOs5pL0q
#ElectronicMusic #Electronic #Music #House #Techno #DeepHouse #TechHouse #Electronica #Art #Abstractart #GeometricArt #Colors #Nowplaying #Listen #felipedevicente
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Paradoxal extrusion / faking DOF
#blender #geometrynodes #3d #geometricart #abstract #graphicdesign #pixelfed #mastoart #digitalArt
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ART 133 | Felipe De Vicente ©
Listen on #Spotify
https://open.spotify.com/track/2eUYswflPynpdtcvY0H56D
#ElectronicMusic #Electronic #Music #Electronica #DeepHouse #Downtempo #Ambient #Techno #Minimal #IDM #Art #Abstractart #GeometricArt #Nowplaying #Listen #felipedevicente
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Wallflower no. 32 🟢 AVAILABLE
get this piece or check out my other work here -> https://jen.bigcartel.com/product/wallflower-32
#art #artforsale #supportartists #abstractart #geometricart #modernart #painting #design
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Wallflower no. 3 🔴 SOLD
get one like it or check out my other work here -> https://jen.bigcartel.com/category/abstract-geometric-paintings
#art #sold #artshare #abstractart #geometricart #modernart #painting #design
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Echo 16th August 2026
For description & more:
www.facebook.com/GeometricEch...
#p5js #processing #trigonometry #geometry #geometricart #art #monochrome #blackandwhite #mathart #math #lines #generativeart #algorithm #echo #scifi #scifiart #algorithmicart #spirograph #moire -
Nana no. 30 🟢 AVAILABLE
get this piece or check out my other work here -> https://jen.bigcartel.com/product/nana-30
#art #artforsale #supportartists #abstractart #geometricart #modernart #painting #design #blueskynightmarket
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Digital Kaleidoscope done in Procreate on an iPad Air 4 with Apple Pencil 2.
©2024 WickedLizzie#WickedLizzie #Art #DisabledArtist #Procreate #DrawingTools
#digitalart #mandala #brightlycolored
#symmetrytool #geometricart #rainbow
#vibrantart #detailedart #pattern #flowerart -
With 2D Apollonian gaskets, it's easy to build arbitrary initial configurations. Simply picking 3 random points means you have to solve for 3 radii to make a kissing setup. Since there are exactly 3 distances between the points, this makes a basic linear system. But not so in 3D: you have 4 points and 4 radii, but 6 different distances, so a linear solution won't cut it. You could start with 3 kissing spheres using the 2D logic, but then you can't put the 4th point just anywhere.
I didn't bother with the messy quadratic system, because there's an easier way: take the symmetric tetrahedral config and deform it using an inversion. Yep, the same tool that's already the bread and butter of gasket-weaving. What's more, we can build the symmetric gasket first and then deform the whole thing. Inversion preserves spheres as spheres and maintains their kissing relations, it doesn't care how many there are.
In other words, the order doesn't matter with inversions. I've used this trick years ago in some 2D inversion demos to simplify things, and this 3D also benefits hugely from it. Besides the problem of initial config, 3D gaskets also have a speed issue due to deduplication (explained in an earlier post). The inversions are very fast as they can be parallelized, and this also applies to the deformations. So it's nice that we need not rebuild the gasket again for every config, we can just deform the same thing again.
#apollonianspheres #apolloniangasket #gasketweaving #iteratedfunctionsystem #inversion #sphereinversion #geometricart #3dgraphics #digitalsculpture #pythoncode #opengl #algorithmicart #algorist #mathart #laskutaide #ittaide #kuavataide #iterati
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With 2D Apollonian gaskets, it's easy to build arbitrary initial configurations. Simply picking 3 random points means you have to solve for 3 radii to make a kissing setup. Since there are exactly 3 distances between the points, this makes a basic linear system. But not so in 3D: you have 4 points and 4 radii, but 6 different distances, so a linear solution won't cut it. You could start with 3 kissing spheres using the 2D logic, but then you can't put the 4th point just anywhere.
I didn't bother with the messy quadratic system, because there's an easier way: take the symmetric tetrahedral config and deform it using an inversion. Yep, the same tool that's already the bread and butter of gasket-weaving. What's more, we can build the symmetric gasket first and then deform the whole thing. Inversion preserves spheres as spheres and maintains their kissing relations, it doesn't care how many there are.
In other words, the order doesn't matter with inversions. I've used this trick years ago in some 2D inversion demos to simplify things, and this 3D also benefits hugely from it. Besides the problem of initial config, 3D gaskets also have a speed issue due to deduplication (explained in an earlier post). The inversions are very fast as they can be parallelized, and this also applies to the deformations. So it's nice that we need not rebuild the gasket again for every config, we can just deform the same thing again.
#apollonianspheres #apolloniangasket #gasketweaving #iteratedfunctionsystem #inversion #sphereinversion #geometricart #3dgraphics #digitalsculpture #pythoncode #opengl #algorithmicart #algorist #mathart #laskutaide #ittaide #kuavataide #iterati
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With 2D Apollonian gaskets, it's easy to build arbitrary initial configurations. Simply picking 3 random points means you have to solve for 3 radii to make a kissing setup. Since there are exactly 3 distances between the points, this makes a basic linear system. But not so in 3D: you have 4 points and 4 radii, but 6 different distances, so a linear solution won't cut it. You could start with 3 kissing spheres using the 2D logic, but then you can't put the 4th point just anywhere.
I didn't bother with the messy quadratic system, because there's an easier way: take the symmetric tetrahedral config and deform it using an inversion. Yep, the same tool that's already the bread and butter of gasket-weaving. What's more, we can build the symmetric gasket first and then deform the whole thing. Inversion preserves spheres as spheres and maintains their kissing relations, it doesn't care how many there are.
In other words, the order doesn't matter with inversions. I've used this trick years ago in some 2D inversion demos to simplify things, and this 3D also benefits hugely from it. Besides the problem of initial config, 3D gaskets also have a speed issue due to deduplication (explained in an earlier post). The inversions are very fast as they can be parallelized, and this also applies to the deformations. So it's nice that we need not rebuild the gasket again for every config, we can just deform the same thing again.
#apollonianspheres #apolloniangasket #gasketweaving #iteratedfunctionsystem #inversion #sphereinversion #geometricart #3dgraphics #digitalsculpture #pythoncode #opengl #algorithmicart #algorist #mathart #laskutaide #ittaide #kuavataide #iterati
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With 2D Apollonian gaskets, it's easy to build arbitrary initial configurations. Simply picking 3 random points means you have to solve for 3 radii to make a kissing setup. Since there are exactly 3 distances between the points, this makes a basic linear system. But not so in 3D: you have 4 points and 4 radii, but 6 different distances, so a linear solution won't cut it. You could start with 3 kissing spheres using the 2D logic, but then you can't put the 4th point just anywhere.
I didn't bother with the messy quadratic system, because there's an easier way: take the symmetric tetrahedral config and deform it using an inversion. Yep, the same tool that's already the bread and butter of gasket-weaving. What's more, we can build the symmetric gasket first and then deform the whole thing. Inversion preserves spheres as spheres and maintains their kissing relations, it doesn't care how many there are.
In other words, the order doesn't matter with inversions. I've used this trick years ago in some 2D inversion demos to simplify things, and this 3D also benefits hugely from it. Besides the problem of initial config, 3D gaskets also have a speed issue due to deduplication (explained in an earlier post). The inversions are very fast as they can be parallelized, and this also applies to the deformations. So it's nice that we need not rebuild the gasket again for every config, we can just deform the same thing again.
#apollonianspheres #apolloniangasket #gasketweaving #iteratedfunctionsystem #inversion #sphereinversion #geometricart #3dgraphics #digitalsculpture #pythoncode #opengl #algorithmicart #algorist #mathart #laskutaide #ittaide #kuavataide #iterati
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With 2D Apollonian gaskets, it's easy to build arbitrary initial configurations. Simply picking 3 random points means you have to solve for 3 radii to make a kissing setup. Since there are exactly 3 distances between the points, this makes a basic linear system. But not so in 3D: you have 4 points and 4 radii, but 6 different distances, so a linear solution won't cut it. You could start with 3 kissing spheres using the 2D logic, but then you can't put the 4th point just anywhere.
I didn't bother with the messy quadratic system, because there's an easier way: take the symmetric tetrahedral config and deform it using an inversion. Yep, the same tool that's already the bread and butter of gasket-weaving. What's more, we can build the symmetric gasket first and then deform the whole thing. Inversion preserves spheres as spheres and maintains their kissing relations, it doesn't care how many there are.
In other words, the order doesn't matter with inversions. I've used this trick years ago in some 2D inversion demos to simplify things, and this 3D also benefits hugely from it. Besides the problem of initial config, 3D gaskets also have a speed issue due to deduplication (explained in an earlier post). The inversions are very fast as they can be parallelized, and this also applies to the deformations. So it's nice that we need not rebuild the gasket again for every config, we can just deform the same thing again.
#apollonianspheres #apolloniangasket #gasketweaving #iteratedfunctionsystem #inversion #sphereinversion #geometricart #3dgraphics #digitalsculpture #pythoncode #opengl #algorithmicart #algorist #mathart #laskutaide #ittaide #kuavataide #iterati
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Another look at Apollonian spheres, cutting out the top half and showing a few iteration steps.
#apollonianspheres #apolloniangasket #iteratedfunctionsystem #inversion #sphereinversion #geometricart #3dgraphics #digitalsculpture #pythoncode #opengl #algorithmicart #algorist #mathart #laskutaide #ittaide #kuavataide #iterati
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Another look at Apollonian spheres, cutting out the top half and showing a few iteration steps.
#apollonianspheres #apolloniangasket #iteratedfunctionsystem #inversion #sphereinversion #geometricart #3dgraphics #digitalsculpture #pythoncode #opengl #algorithmicart #algorist #mathart #laskutaide #ittaide #kuavataide #iterati
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Another look at Apollonian spheres, cutting out the top half and showing a few iteration steps.
#apollonianspheres #apolloniangasket #iteratedfunctionsystem #inversion #sphereinversion #geometricart #3dgraphics #digitalsculpture #pythoncode #opengl #algorithmicart #algorist #mathart #laskutaide #ittaide #kuavataide #iterati
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Another look at Apollonian spheres, cutting out the top half and showing a few iteration steps.
#apollonianspheres #apolloniangasket #iteratedfunctionsystem #inversion #sphereinversion #geometricart #3dgraphics #digitalsculpture #pythoncode #opengl #algorithmicart #algorist #mathart #laskutaide #ittaide #kuavataide #iterati
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Another look at Apollonian spheres, cutting out the top half and showing a few iteration steps.
#apollonianspheres #apolloniangasket #iteratedfunctionsystem #inversion #sphereinversion #geometricart #3dgraphics #digitalsculpture #pythoncode #opengl #algorithmicart #algorist #mathart #laskutaide #ittaide #kuavataide #iterati
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Taking my lastest Apollonian gasket code from 2D to 3D was quite straightforward in principle, though there were a few kinks in the road. A particular difference between 2D and 3D gaskets is that in 3D, the inversion spheres overlap, which can create duplicate spheres.
Viewing detailed 3D structures isn't trivial either. We can only really see in 2D, as one dimension is taken up by the ray of light. Looking from outside, I wouldn't guess this blob contains over 10k spheres, so I blew it up for this clip.
The sheer amount of balls is also heavy on the drawing side, so I used my low-poly "sprites" where each ball is drawn by a geometry shader from a single input point. The low-poly aspect is quite clear in the largest spheres, but I think it's OK for this math demo.
#apollonianspheres #apolloniangasket #iteratedfunctionsystem #inversion #sphereinversion #geometricart #3dgraphics #digitalsculpture #pythoncode #opengl #geometryshader #algorithmicart #algorist #mathart #laskutaide #ittaide #kuavataide #iterati
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Taking my lastest Apollonian gasket code from 2D to 3D was quite straightforward in principle, though there were a few kinks in the road. A particular difference between 2D and 3D gaskets is that in 3D, the inversion spheres overlap, which can create duplicate spheres.
Viewing detailed 3D structures isn't trivial either. We can only really see in 2D, as one dimension is taken up by the ray of light. Looking from outside, I wouldn't guess this blob contains over 10k spheres, so I blew it up for this clip.
The sheer amount of balls is also heavy on the drawing side, so I used my low-poly "sprites" where each ball is drawn by a geometry shader from a single input point. The low-poly aspect is quite clear in the largest spheres, but I think it's OK for this math demo.
#apollonianspheres #apolloniangasket #iteratedfunctionsystem #inversion #sphereinversion #geometricart #3dgraphics #digitalsculpture #pythoncode #opengl #geometryshader #algorithmicart #algorist #mathart #laskutaide #ittaide #kuavataide #iterati
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Taking my lastest Apollonian gasket code from 2D to 3D was quite straightforward in principle, though there were a few kinks in the road. A particular difference between 2D and 3D gaskets is that in 3D, the inversion spheres overlap, which can create duplicate spheres.
Viewing detailed 3D structures isn't trivial either. We can only really see in 2D, as one dimension is taken up by the ray of light. Looking from outside, I wouldn't guess this blob contains over 10k spheres, so I blew it up for this clip.
The sheer amount of balls is also heavy on the drawing side, so I used my low-poly "sprites" where each ball is drawn by a geometry shader from a single input point. The low-poly aspect is quite clear in the largest spheres, but I think it's OK for this math demo.
#apollonianspheres #apolloniangasket #iteratedfunctionsystem #inversion #sphereinversion #geometricart #3dgraphics #digitalsculpture #pythoncode #opengl #geometryshader #algorithmicart #algorist #mathart #laskutaide #ittaide #kuavataide #iterati
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Taking my lastest Apollonian gasket code from 2D to 3D was quite straightforward in principle, though there were a few kinks in the road. A particular difference between 2D and 3D gaskets is that in 3D, the inversion spheres overlap, which can create duplicate spheres.
Viewing detailed 3D structures isn't trivial either. We can only really see in 2D, as one dimension is taken up by the ray of light. Looking from outside, I wouldn't guess this blob contains over 10k spheres, so I blew it up for this clip.
The sheer amount of balls is also heavy on the drawing side, so I used my low-poly "sprites" where each ball is drawn by a geometry shader from a single input point. The low-poly aspect is quite clear in the largest spheres, but I think it's OK for this math demo.
#apollonianspheres #apolloniangasket #iteratedfunctionsystem #inversion #sphereinversion #geometricart #3dgraphics #digitalsculpture #pythoncode #opengl #geometryshader #algorithmicart #algorist #mathart #laskutaide #ittaide #kuavataide #iterati