Just as a cube can be thought of as a plane copied into the third dimension. Only two of the squares that make up the cube are still square, the other four are now distorted. But drawing that three dimensional cube on to a 2D surface might look like this. When we project a higher dimension object on to a lower dimension, we get distortion. So if in 3D we have coordinates named x,y,z then in 4D we might have w,x,y,z Projection A fourth dimensions can be obtained by simply adding a coordinate. IF weird people do weird things, THEN weird things happen! - Logical? An ordinary mouse is the preferred controller for selecting which, if only one, of these reactive elements is driven at a time, because it is encoded in gray code, which counts in the order of a hamiltonian circuit, which again is the path to all the vertexes of a hypercube of any (in this case 4) dimensions.In our three dimensional world we think of three coordinates x,y,z. It is a typical "resonating tank" or "loopstick antenna", with a specific resonant frequency or band. This could be just another "scalar wave generator", which in my experience is useless, but ya never know. an imaginary resistance characteristic of inductors and capacitors which actually affects alternating currents. I don't really know, but ask a radio engineering guru, especially one who is familiar with fractal antennas, what he might expect of a "reactive" component consisting of the tesseract made entirely of THESE: (Picture of a primarily inductive, secondarily capacitive reactance element made of part of my tesseract.) Reactance is. Third:Typical "tesseract" looking view, a small cube appears inside. ? I'll see you again yesterday! Pictures: (All of the Same Object) First: One of the "emergent" (not made) cubes illuminated with EL wire. To do this you may have to stare at the completed tesseract until your imagination shows you clearly where all 8 of the regular cubes in the hypercube are, and when "illuminated" everyone else will see them too. If done well, any hyperdimensional magic (magnetic) should be detectable, but the lit-up-cubes will look like cubes and you will be able to prove at science fair that hypercube sides are 8 regular cubes. 4.Wire up the hypercube with lines of EL-wire (neon wire) and use a microcontroller to illuminate the 8 cubes in sequence. 3.Make the hypercube out of metal and see if it rings like a triangle, or has any other musical properties. 2.Wire the hamiltonian circuit and then hit it with a "quarter shrinker" and see if you get a black hole or something. Put a gimbaled or regular compass in the middle and see if anything weird happens. Ideas I haven't tried yet: 1.Wire a hamiltonian circuit around the hypercube and run small currents through it. A Hypercube is an object with 8 sides which are cubes. A Cube is an object with 6 sides which are squares. Who knows what an electric tesseract might do? This model was inspired by the 2D drawing of a hypercube (tesseract). Tesla had not much more than wire to use as electronic parts. That means a wire that goes to each corner only once, of a square object of any amount of dimensions. 4.It's about time I Make something new on here! A flux conductor or inductor would perhaps be a wire that follows a "hamiltonian circuit path" around the hypercube. 3.Wondering what would happen if I made the items in "why #2". 2.Imagining the possibilities of making (the frame of) a "flux conductor" or a "flux inductor". Not this one! And No, this is not an "impossible object" illusion! Why did I Make this? 1.A sculpture and to see how hard it was. Often tesseracts are illustrated as a small cube inside a big one. I call this a real tesseract because although it's stuck in 3D space, it has all it's edges of equal length, just like a real cube or a real square. It was hard so I don't recommend using popsicle sticks, maybe skewers and super balls. I did it for the first time using popsicle sticks. This is easy, like making a real 3D cube out of anything.
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