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  2. Soma cube - Wikipedia

    en.wikipedia.org/wiki/Soma_cube

    Similar to Soma cube is the 3D pentomino puzzle, which can fill boxes of 2×3×10, 2×5×6 and 3×4×5 units. The Bedlam cube is a 4×4×4 sided cube puzzle consisting of twelve pentacubes and one tetracube. The Diabolical cube is a puzzle of six polycubes that can be assembled together to form a single 3×3×3 cube.

  3. Gear Cube - Wikipedia

    en.wikipedia.org/wiki/Gear_Cube

    Solving the Gear Cube is based more on the observations the solver makes. There are only two algorithms needed to solve the cube, so finding the patterns is a key skill. However, using the algorithms is simple once the patterns are located. Phase 1: Solve the corners: (This step is intuitive; there are no algorithms to complete this step.)

  4. Combination puzzle - Wikipedia

    en.wikipedia.org/wiki/Combination_puzzle

    A traditional sliding piece puzzle. There are now endless variations of this original puzzle implemented as computer games. Geranium Piece configuration: 5 intersecting circular rotational groups of oddly shaped pieces. A rotating piece puzzle. Some rank its difficulty very high compared to complex 3D puzzles. [16]

  5. n-dimensional sequential move puzzle - Wikipedia

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

    Piece. A single moveable part of the puzzle having the same dimensionality as the whole puzzle. Cubie. In the solving community this is the term generally used for a 'piece'. Sticker. The coloured labels on the puzzle which identify the state of the puzzle. For instance, the corner cubies of a Rubik's cube are a single piece but each has three ...

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

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

    For the standard cube the marked cube value needs to be divided by (4!) 6 /2 (the 2 divisor must also be applied here). That gives an overall S value for the size 4 cube of 24!/(4!) 6 . All states for 24-centre-cubie orbits for standard Rubik’s family cubes are reachable (if required, even parity is always achievable by swapping the positions ...

  7. 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.

  8. Disentanglement puzzle - Wikipedia

    en.wikipedia.org/wiki/Disentanglement_puzzle

    Most puzzle solvers try to solve such puzzles by mechanical manipulation, but some branches of mathematics can be used to create a model of disentanglement puzzles. Applying a configuration space with a topological framework is an analytical method to gain insight into the properties and solution of some disentanglement puzzles. However, some ...

  9. Pyraminx Duo - Wikipedia

    en.wikipedia.org/wiki/Pyraminx_Duo

    The Pyraminx Duo is a puzzle in the shape of a tetrahedron, divided into 4 corner pieces and 4 face centre pieces. Each corner piece has three colours, while the centre pieces each have a single colour. Each face of the puzzle contains one face centre piece and three corner pieces.