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  2. Tamatebako (origami) - Wikipedia

    en.wikipedia.org/wiki/Tamatebako_(origami)

    In 1993, Yasuo Koyanagi identified the cube as the Tamatebako, and the model was published in the book "Koten-ni-miri-origami" by Satoshi Tagaki. The popular origami historian, Masao Okamura then was able to reconstruct the model, and by comparison to other traditional works, verify the model's authenticity.

  3. Sonobe - Wikipedia

    en.wikipedia.org/wiki/Sonobe

    Two possible creators are Toshie Takahama and Mitsunobu Sonobe, who published several books together and were both members of Sōsaku Origami Gurūpu '67. The earliest appearance of a Sonobe module was in a cube attributed to Mitsunobu Sonobe in the Sōsaku Origami Gurūpu '67's magazine Origami in Issue 2 (1968). [3]

  4. Modular origami - Wikipedia

    en.wikipedia.org/wiki/Modular_origami

    Modular origami or unit origami is a multi-stage paper folding technique in which several, or sometimes many, sheets of paper are first folded into individual modules or units and then assembled into an integrated flat shape or three-dimensional structure, usually by inserting flaps into pockets created by the folding process. [3]

  5. Yoshizawa–Randlett system - Wikipedia

    en.wikipedia.org/wiki/Yoshizawa–Randlett_system

    The Yoshizawa–Randlett system is a diagramming system used to describe the folds of origami models. Many origami books begin with a description of basic origami techniques which are used to construct the models. There are also a number of standard bases which are commonly used as a first step in construction.

  6. Origami - Wikipedia

    en.wikipedia.org/wiki/Origami

    Origami tessellation is a branch that has grown in popularity after 2000. A tessellation is a collection of figures filling a plane with no gaps or overlaps. In origami tessellations, pleats are used to connect molecules such as twist folds together in a repeating fashion.

  7. Mathematics of paper folding - Wikipedia

    en.wikipedia.org/wiki/Mathematics_of_paper_folding

    Computational origami results either address origami design or origami foldability. [3] In origami design problems, the goal is to design an object that can be folded out of paper given a specific target configuration. In origami foldability problems, the goal is to fold something using the creases of an initial configuration.

  8. Paper fortune teller - Wikipedia

    en.wikipedia.org/wiki/Paper_fortune_teller

    Origami historian David Mitchell has found many 19th-century European sources mentioning a paper "salt cellar" or "pepper pot" (the latter often folded slightly differently). The first of these to unambiguously depict the paper fortune teller is an 1876 German book for children.

  9. Huzita–Hatori axioms - Wikipedia

    en.wikipedia.org/wiki/Huzita–Hatori_axioms

    Axioms 1 through 6 were rediscovered by Japanese-Italian mathematician Humiaki Huzita and reported at the First International Conference on Origami in Education and Therapy in 1991. Axioms 1 though 5 were rediscovered by Auckly and Cleveland in 1995. Axiom 7 was rediscovered by Koshiro Hatori in 2001; Robert J. Lang also found axiom 7.

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