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  2. Yoshizawa–Randlett system - Wikipedia

    en.wikipedia.org/wiki/Yoshizawa–Randlett_system

    Make two radial folds from the open point, so that the open edges lie along the reference crease. Unfold these two radial folds. Make another fold across the top connecting the ends of the creases to create a triangle of creases. Unfold this fold as well. Fold one layer of the open point upward and flatten it using the existing creases.

  3. Miura fold - Wikipedia

    en.wikipedia.org/wiki/Miura_fold

    The Miura fold is related to the Kresling fold, the Yoshimura fold and the Hexagonal fold, and can be framed as a generalization of these folds. [ 3 ] The Miura fold is a form of rigid origami , meaning that the fold can be carried out by a continuous motion in which, at each step, each parallelogram is completely flat.

  4. Origami - Wikipedia

    en.wikipedia.org/wiki/Origami

    Strip folding is a combination of paper folding and paper weaving. [30] A common example of strip folding is called the Lucky Star, also called Chinese lucky star, dream star, wishing star, or simply origami star. Another common fold is the Moravian Star which is made by strip folding in 3-dimensional design to include 16 spikes. [30]

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  6. Paper fortune teller - Wikipedia

    en.wikipedia.org/wiki/Paper_fortune_teller

    A paper fortune teller may be constructed by the steps shown in the illustration below: [1] [2] The corners of a sheet of paper are folded up to meet the opposite sides and (if the paper is not already square) the top is cut off, making a square sheet with diagonal creases.

  7. Mathematics of paper folding - Wikipedia

    en.wikipedia.org/wiki/Mathematics_of_paper_folding

    The fold-and-cut problem asks what shapes can be obtained by folding a piece of paper flat, and making a single straight complete cut. The solution, known as the fold-and-cut theorem, states that any shape with straight sides can be obtained. A practical problem is how to fold a map so that it may be manipulated with minimal effort or movements.

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  9. Cool S - Wikipedia

    en.wikipedia.org/wiki/Cool_S

    The Cool S consists of 14 line segments, forming a stylized, pointed S-shape.It has also been compared to the infinity symbol. [4] The S appears to have depth, where the overlap in the center of the S and the appearance of a potential altitude change at the top and bottom of the S make it look like the S connects back to itself in the same way as the infinity symbol does. [5]

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