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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] It does not reveal whether he invented the module or used an earlier design; the phrase "finished model by Mitsunobu Sonobe" is ambiguous.
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. [1] The four corners of the square are folded into the center, forming a shape known in origami terminology as a blintz base or cushion fold. [2]
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]
It could be made of paper, like an origami cube. You make it and blow into it, and then it pops open into a sphere, and then you just fold it in and fill it with popcorn. If I wasn't so busy with ...
The Tamatebako (玉手箱) is an origami model named after the tamatebako of Japanese folk tale. It is a modular cube design that can be opened from any side. If more than one face of the model is opened, the cube falls apart and cannot easily be reconstructed.
Mosely has also developed mathematical techniques for designing and analyzing curved origami models such as her "Orb," [11] "Bud," [12] and "Sails." [13] Sails is a tessellation piece created from a single sheet of white watercolor paper and made up of a repeating pattern of overlapping triangles that evokes billowing sails. [14]
Origami paper, often referred to as "kami" (Japanese for paper), is sold in prepackaged squares of various sizes ranging from 2.5 cm (1 in) to 25 cm (10 in) or more. It is commonly colored on one side and white on the other; however, dual coloured and patterned versions exist and can be used effectively for color-changed models.
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.
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