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  2. n-dimensional sequential move puzzle - Wikipedia

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

    for the 3-cube is rotations of a 2-polytope (square) in 2-space = 4; for the 2-cube is rotations of a 1-polytope in 1-space = 1; In other words, the 2D puzzle cannot be scrambled at all if the same restrictions are placed on the moves as for the real 3D puzzle. The moves actually given to the 2D Magic Cube are the operations of reflection.

  3. Associative magic square - Wikipedia

    en.wikipedia.org/wiki/Associative_magic_square

    For instance, the Lo Shu Square – the unique 3 × 3 magic square – is associative, because each pair of opposite points form a line of the square together with the center point, so the sum of the two opposite points equals the sum of a line minus the value of the center point regardless of which two opposite points are chosen. [4]

  4. Immaculate Grid - Wikipedia

    en.wikipedia.org/wiki/Immaculate_Grid

    Since players get only one guess per square, each one must be correct for the result to be "immaculate". [ 2 ] [ 3 ] Correctly guessed players cannot be used elsewhere in the grid. [ 4 ] Originally, the player's score was simply the number of correct guesses, but a rarity score was later added to encourage players to think of lesser known answers.

  5. Latin square - Wikipedia

    en.wikipedia.org/wiki/Latin_square

    A Latin square is said to be reduced (also, normalized or in standard form) if both its first row and its first column are in their natural order. [4] For example, the Latin square above is not reduced because its first column is A, C, B rather than A, B, C. Any Latin square can be reduced by permuting (that is, reordering) the rows and columns ...

  6. Soma cube - Wikipedia

    en.wikipedia.org/wiki/Soma_cube

    The pieces of a Soma cube The same puzzle, assembled into a cube. The Soma cube is a solid dissection puzzle invented by Danish polymath Piet Hein in 1933 [1] during a lecture on quantum mechanics conducted by Werner Heisenberg.

  7. Geometric Shapes (Unicode block) - Wikipedia

    en.wikipedia.org/wiki/Geometric_Shapes_(Unicode...

    Geometric Shapes; Range: U+25A0..U+25FF (96 code points) Plane: BMP: Scripts: Common: Symbol sets: Control code graphics Geometric shapes: Assigned: 96 code points

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