#hypercube

Michael Engelme_@sueden.social
2025-04-19
The Krononaut Moon Project 🌑KronoMoon@me.dm
2024-10-24

#4dToys: a #Box of #Four #Dimensional #Toys

We've shared this #video before, but it's one of our favorites on the problem of #visualizing or #conceptualizing higher #dimensional #geometries. The 4th dimension is not always #Time, but is perpendicular to the lower 3. Watch as these objects slip in & out of our #World, like #TimeTravelers!

🔗 youtube.com/watch?v=0t4aKJuKP0 02 Jun 2017
🔗 Wikipedia.org/wiki/Four-dimens

#Community #TimeTravel #Research #4d #vr #tesseract #hypercube #hypersphere #KrononautMoon

Alan McConchiealan@subdued.social
2024-01-25

"basemaps are a tesseract"

Not sure if I posted this before, but posting it again so I can find it by searching for "tesseract".

#Tesseract #Hypercube #GalaxyBrain #basemap #basemaps #cartography #maps #MapDesign

A seven-panel version of the "galaxy brain" meme, with a map design client talking with a cartographer.

Client: “l need a basemap” Cartographer: “OK, here’s your basemap”

“We actually need a light mode and a dark mode (and maybe grayscale too).”  “Basemaps are a continuum!”

“We need a version of each basemap in English, but also in the local language” “Basemaps are a two-dimensional matrix!”

“Each basemap needs to support five different data providers” 
“Basemaps are a three-dimensional cube!”

“Each one also needs a separate transit mode, a pedestrian navigation mode, and a cycling mode”
“Basemaps are a tesseract!” 

“And we need a different version for CarPlay, and for wearables.” 
"Basemaps are a 5D hypercube!"

“And in the UK motorways should be blue, and...”
[cartographer achieves enlightenment]

welcome to the #geometron #hypercube !

infinite free cubes made of trash!!

billions and billions of cubes!

The physical "hypercube" is the set of all cubes we make. Its image in philosophical space is the set of actions and symbols used in the Geometron language.

For more details, see the Book of Geometron at www.trashrobot.org.

a 3d model of a stack of cardboard cubes which all say "free cube" and have pentagrams on them.

Und meine Settings gibts natürlich auch wieder zum ansehen 😎

Also falls wer auch zufällig nen #HyperCube mit #BLTouch und PI daheimstehen hat.

github.com/Poeschl/P-Cube-Klip

The Kid Should See This 🌈🪐✨tksst@universeodon.com
2023-02-07

🔲👀 thekidshouldseethis.com/post/h

In 1978, #mathematics professor Thomas Banchoff and computer scientist Charles Strauss teamed up to create an animated #visualization of a 3-dimensional #cube rotating in four-dimensional space, also known as a #hypercube or #tesseract

#video #animation #1970s #math #4D #geometry

Successfully solved the white layer of a 4d rubiks cube! #cubing #hypercube

A white cube divided into 27 pieces is pictured. Surrounding it are 6 more cubes with scrambled pieces
2023-01-14

Received my #kickstarter #HyperCube nano today by #HyperSpaceLight. It's really cool and has lots of colorful animated LED sequences to play with and with sound activation it can move with the music. Similar to the art sculptures by #AnthonyJames

hyperspacelight.com/
youtube.com/watch?v=gf9ECmlTfK

Infinity cube with LEDs create a magical colorful space
Pustam | पुस्तम | পুস্তম🇳🇵pustam_egr@mathstodon.xyz
2022-12-26

#hypersphere #hypercube #higherdimensions
\[\dfrac{A_{\text{circle}}}{A_{\text{square}}}=\dfrac{\pi}{4}\ \ \text{for}\ \ n=2\]
\[\dfrac{V_{\text{sphere}}}{V_{\text{cube}}}=\dfrac{\pi}{6}\ \ \text{for}\ \ n=3\]
\[\dfrac{V_{\text{hypersphere}}}{V_{\text{hypercube}}}=\dfrac{\pi^{n/2}}{n2^{n-1}\Gamma(n/2)}\rightarrow0\ \ \text{as}\ \ n\rightarrow\infty\]

2022-12-21

#firstlayer #3dprinting Yeah...those first layers. ProTip: If your layers and offsets are right you won't need additives. I've been printing for a long time, and I haven't bothered with gluesticks or adhesives since my little 3D Freaks machine from craigslist. Wish I still had that little #pos #nogluestickgang #hypercube #e3d #btt #3dfuel

2022-11-17

#DifferentialPropositionalCalculus • 4.1
inquiryintoinquiry.com/2020/02

There are \(2^n\) elements in \(A,\) often pictured as the cells of a #VennDiagram or the nodes of a #HyperCube.

There are \(2^{2^n}\) functions from \(A\) to \(\mathbb{B},\) accordingly pictured as all the ways of painting the cells of a venn diagram or the nodes of a hypercube with a palette of two colors.

#Peirce #Semiotics
#Logic #PropositionalCalculus
#BooleanDomain #BooleanFunctions
#LogicalGraphs #DifferentialLogic

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