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  2. Stowage plan for container ships - Wikipedia

    en.wikipedia.org/wiki/Stowage_plan_for_container...

    Visibility – The number of High cube containers shouldn't exceed a set number of High cube containers in each row/bay on-deck. If the number of high cube units exceeded the set number it will prevent the full/clear line of sight of the ship from the bridge or other vital vantage points. [22] [23] [24]

  3. CubeSmart - Wikipedia

    en.wikipedia.org/wiki/CubeSmart

    CubeSmart is a real estate investment trust that invests in self storage facilities in the United States. As of December 31, 2022, it owned 611 self storage properties in 24 states and the District of Columbia containing 44.1 million rentable square feet. [1] It is the 3rd largest self storage company in the United States.

  4. Cubical complex - Wikipedia

    en.wikipedia.org/wiki/Cubical_complex

    Equivalently, an elementary cube is any translate of a unit cube [,] embedded in Euclidean space (for some , {} with ). [3] A set X ⊆ R d {\displaystyle X\subseteq \mathbf {R} ^{d}} is a cubical complex (or cubical set ) if it can be written as a union of elementary cubes (or possibly, is homeomorphic to such a set).

  5. Packing problems - Wikipedia

    en.wikipedia.org/wiki/Packing_problems

    The hexagonal packing of circles on a 2-dimensional Euclidean plane. These problems are mathematically distinct from the ideas in the circle packing theorem.The related circle packing problem deals with packing circles, possibly of different sizes, on a surface, for instance the plane or a sphere.

  6. Pocket Cube - Wikipedia

    en.wikipedia.org/wiki/Pocket_Cube

    Pocket cube with one layer partially turned. The group theory of the 3×3×3 cube can be transferred to the 2×2×2 cube. [3] The elements of the group are typically the moves of that can be executed on the cube (both individual rotations of layers and composite moves from several rotations) and the group operator is a concatenation of the moves.

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

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

    A randomly scrambled Rubik's Cube will most likely be optimally solvable in 18 moves (~ 67.0%), 17 moves (~ 26.7%), 19 moves (~ 3.4%) or 16 moves (~ 2.6%) in HTM. [4] By the same token, it is estimated that there is only 1 configuration which needs 20 moves to be solved optimally in almost 90×10 9 , or 90 billion, random scrambles.

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