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  2. n-dimensional sequential move puzzle - Wikipedia

    en.wikipedia.org/wiki/N-dimensional_sequential...

    The position of this cell is the extreme foreground of the 4th dimension beyond the position of the viewer's screen. 4-cube 3 4 virtual puzzle, rotated in the 4th dimension to show the colour of the hidden cell. 4-cube 3 4 virtual puzzle, rotated in normal 3D space. 4-cube 3 4 virtual puzzle, scrambled. 4-cube 2 4 virtual puzzle, one cubie is ...

  3. Rubik's family cubes of varying sizes - Wikipedia

    en.wikipedia.org/wiki/Rubik's_family_cubes_of...

    The big advantage of numbers is that they reduce the complexity of solving the last cube face when markings are in use (e.g. if the set-of-four sequence is 1-3-4-2 (even parity, needs two swaps to become the required 1-2-3-4) then the algorithm requirement is clear.

  4. Optimal solutions for the Rubik's Cube - Wikipedia

    en.wikipedia.org/wiki/Optimal_solutions_for_the...

    The maximal number of face turns needed to solve any instance of the Rubik's Cube is 20, [2] and the maximal number of quarter turns is 26. [3] These numbers are also the diameters of the corresponding Cayley graphs of the Rubik's Cube group. In STM (slice turn metric) the minimal number of turns is unknown, lower bound being 18 and upper bound ...

  5. Professor's Cube - Wikipedia

    en.wikipedia.org/wiki/Professor's_Cube

    The Professor's Cube (also known as the 5×5×5 Rubik's Cube and many other names, depending on manufacturer) is a 5×5×5 version of the original Rubik's Cube. It has qualities in common with both the 3×3×3 Rubik's Cube and the 4×4×4 Rubik's Revenge , and solution strategies for both can be applied.

  6. Rubik's 360 - Wikipedia

    en.wikipedia.org/wiki/Rubik's_360

    A solved Rubik's 360 puzzle. Rubik's 360 is a 3D mechanical puzzle released in 2009 by ErnÅ‘ Rubik, the inventor of Rubik's Cube and other puzzles. [1] Rubik's 360 was introduced on February 5, 2009 at the Nürnberg International Toy Fair [2] ahead of its worldwide release in August.

  7. 5-cube - Wikipedia

    en.wikipedia.org/wiki/5-cube

    The regular skew polyhedron {4,5| 4} can be realized within the 5-cube, with its 32 vertices, 80 edges, and 40 square faces, and the other 40 square faces of the 5-cube become square holes. This polytope is one of 31 uniform 5-polytopes generated from the regular 5-cube or 5-orthoplex .

  8. Impossiball - Wikipedia

    en.wikipedia.org/wiki/Impossiball

    The purpose of the puzzle is to scramble the colors, and then restore it to its original state of having one color per circle. This puzzle is equivalent to solving just the corners of a Megaminx or solving a Kilominx. The original Impossiball had the same colors as the Rubik's Cube: red, orange, yellow, green, blue, and white.

  9. Skewb - Wikipedia

    en.wikipedia.org/wiki/Skewb

    2.1 Top 5 solvers by single solve. 2.2 Top 5 solvers by Olympic average of 5 solves. ... Mèffert's original name for this puzzle was the Pyraminx Cube, ...