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In Euclidean geometry, a parallelogram is a simple (non-self-intersecting) quadrilateral with two pairs of parallel sides. The opposite or facing sides of a parallelogram are of equal length and the opposite angles of a parallelogram are of equal measure.
In mathematics, the simplest form of the parallelogram law (also called the parallelogram identity) belongs to elementary geometry. It states that the sum of the squares of the lengths of the four sides of a parallelogram equals the sum of the squares of the lengths of the two diagonals. We use these notations for the sides: AB, BC, CD, DA.
Example grid for a cross-figure puzzle with some answers filled in. A cross-figure (also variously called cross number puzzle or figure logic) is a puzzle similar to a crossword in structure, but with entries that consist of numbers rather than words, where individual digits are entered in the blank cells.
CrossWire — A game in which items on one side must be matched to corresponding items on the opposite side. (20 Tickets per complete game, max about 41,000 Tickets) Dingbats — Players solve a puzzle and may guess letters, similar to Hangman. (3 Tickets per complete game, max 2,673 Tickets) Flexicon — A crossword-like game.
Like a parallelogram, an antiparallelogram has two opposite pairs of equal-length sides, but these pairs of sides are not in general parallel. Instead, each pair of sides is antiparallel with respect to the other, with sides in the longer pair crossing each other as in a scissors mechanism. Whereas a parallelogram's opposite angles are equal ...
The larger Sunday crossword, which appears in The New York Times Magazine, is an icon in American culture; it is typically intended to be as difficult as a Thursday puzzle. [38] Typically, the standard daily crossword is 15 by 15 squares, while the Sunday crossword measures 21 by 21 squares. [39] [40] Yes The Mini Crossword
Play Gin Rummy free on Games.com and meld strategy with fun. Create runs in sequence or groups and yell ?Gin? to win.
This problem has a graph-theoretic solution in which a graph with four vertices labeled B, G, R, W (for blue, green, red, and white) can be used to represent each cube; there is an edge between two vertices if the two colors are on the opposite sides of the cube, and a loop at a vertex if the opposite sides have the same color. Each individual ...
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