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The name alludes to traditional origami, which is the Japanese art of folding flat materials, generally paper, into figures resembling various objects. Other examples of moneygami include folding bills into clothing-like bits, such as dollar bills becoming bowties .
The origami crane diagram, using the 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.
Florence Maria Temko (October 20, 1921 – November 12, 2009), a pioneer in spreading origami in the United States, was perhaps the most prolific author on this subject.. With fifty-five books to her credit on paper arts and folk crafts, she was a strong influence on interested beginners in the art of paperfol
This type of modular folding is often done with Chinese paper money. Triangles are folded from multiple pieces of 1:2 aspect ratio paper, and connected by inserting a flap of one triangle into a pocket on the next. Popular subjects include pineapples, swans, and ships. This form of modular origami is commonly referred to as "3D origami".
Lillian Vorhaus Oppenheimer (née Lillian Rose Vorhaus, formerly Lillian Vorhaus Kruskal; October 24, 1898 – July 24, 1992) was an origami pioneer from New York City. Becoming a leading figure in the art form in her later years, Oppenheimer is credited with popularizing it in the United States.
John Montroll was born in Washington, D.C. [1] He is the son of Elliott Waters Montroll, an American scientist and mathematician.He has a Bachelor of Arts degree in Mathematics from the University of Rochester, a Master of Arts in Electrical Engineering from the University of Michigan, and a Master of Arts in applied mathematics from the University of Maryland.
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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.