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  2. 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.

  3. List of world records in speedcubing - Wikipedia

    en.wikipedia.org/wiki/List_of_world_records_in...

    The following are the current official speedcubing world records approved by the WCA. [4]Note: For averages of 5 solves, the best time and the worst time are dropped, and the mean of the remaining 3 solves is taken.

  4. Feliks Zemdegs - Wikipedia

    en.wikipedia.org/wiki/Feliks_Zemdegs

    Feliks Aleksanders Zemdegs [1] (/ ˈ f ɛ l ɪ k s ˈ z ɛ m d ɛ ɡ z /, Latvian: Fēlikss Zemdegs; born 20 December 1995) is an Australian Rubik's Cube speedsolver.He is widely regarded as one of the greatest speedcubers of all time.

  5. Kevin Hays (speedcuber) - Wikipedia

    en.wikipedia.org/wiki/Kevin_Hays_(speedcuber)

    In 2013, at the World Rubik's Cube Championship in Las Vegas, NV, Hays placed first in the 5x5, 6x6, and 7x7 events, becoming the first person to win all three events at one world championship. [9] At the 2015 World Championship in Sao Paulo, Brazil , he defended his 6x6 and 7x7 titles, and placed second in the 5x5 event behind Feliks Zemdegs ...

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

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

    And in 2014, Tomas Rokicki and Morley Davidson proved that the maximum number of quarter-turns needed to solve the cube is 26. [3] The face-turn and quarter-turn metrics differ in the nature of their antipodes. [3] An antipode is a scrambled cube that is maximally far from solved, one that requires the maximum number of moves to solve.

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

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

    For a given set of cube design features the complexity (difficulty) of solving a Rubik’s family cube increases if the number of reachable states increases. Three main properties affect that number: Cube size: The number of cubies to be placed is a quadratic (second order polynomial) function of cube size and therefore has a major influence on ...