Cubicle Labs Magnetic Geometry Lesson #1, In reference to MoYu GTS 2 M  @HumphreyWittingtonsworthIV
Cubicle Labs Magnetic Geometry Lesson #1, In reference to MoYu GTS 2 M  @HumphreyWittingtonsworthIV
Humphrey Wittingtonsworth IV | Cubicle Labs Magnetic Geometry Lesson #1, In reference to MoYu GTS 2 M @HumphreyWittingtonsworthIV | Uploaded May 2017 | Updated October 2024, 21 hours ago.
I don't even care if you buy our products, because I make a wage and salary like your parents and other adults.
I don't make more money with more sales.

I feel like the mathematical, geometric reasons why the Cubicle Labs GTS 2 M was NOT advertised.

I explain the work I put into this cube, and the geometrical reason why our cube is superior.
Less weight, better angles of actuation, and less of an abrupt "click".

I also tell you about the future of magnets.
Thinner, stronger, wider, lighter magnets in the shape of crescents and rectangles are geometrically superior.
Once you achieve 40+ degrees of actuation, the magnetism has a backlash effect, so once you get 3-4 degrees past the perfect 90 degree turn, it will gently turn back into place, like how jelly moves back to it's original shape. This backlash effect is very gentle and subtle, and does NOT interfere with turning. This works because magnets are ONLY very strong when they are 100% face to face, and the force rapidly diminishes when they are not.
THIS IS THE FUTURE. WE NEED CUBES DESIGNED AROUND VERY THIN AND STRONG CRESCENT MAGNETS

Rectangles are hard to put into current cubes, you need to design around them.
Because of that, I chose the second best option-- a very wide, thin, strong circular magnet.

This is why the normal Cubicle Labs GTS 2 M uses that magnet, those angles of actuation are what sets this cube apart.
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Cubicle Labs Magnetic Geometry Lesson #1, In reference to MoYu GTS 2 M @HumphreyWittingtonsworthIV

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