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The folding process starts with a simple bicorne hat, then folds the two corners inward and the peak down to create a compact and stable box. The hat has slowly gone out of use by printers due to the cleaner work environment surrounding newspaper production. Additionally, paper sizes of newspapers have decreased from 15 inches wide to 12 inches ...
The history of paper toys can be traced back to the art of origami (or-i-GA-me).The word is based on the Japanese words Ori, which means to fold, and Kami, which means paper. However origami's roots are from China and it spread to Japan somewhere around the sixth century. The craft was for only the rich at first because the cost of paper was ...
This eliminates the need to place the hat on a surface, and also allows the performer to give the hat to an audience member for inspection. However, producing a rabbit from a hat using nothing but sleight of hand is a much more difficult trick. [2] This trick is also traditionally performed for children, since it is a basic trick with basic props.
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]
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]
Paper craft is a collection of crafts using paper or card as the primary artistic medium for the creation of two or three-dimensional objects. Paper and card stock lend themselves to a wide range of techniques and can be folded, curved, bent, cut, glued, molded, stitched, or layered. [1] Papermaking by hand is also a paper craft.
The Huzita–Justin axioms or Huzita–Hatori axioms are a set of rules related to the mathematical principles of origami, describing the operations that can be made when folding a piece of paper. The axioms assume that the operations are completed on a plane (i.e. a perfect piece of paper), and that all folds are linear.
Crease pattern for a Miura fold. The parallelograms of this example have 84° and 96° angles. The Miura fold is a rigid fold that has been used to pack large solar panel arrays for space satellites, which have to be folded before deployment. Robert J. Lang has applied rigid origami to the problem of folding a space telescope. [7]