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A quire of paper is a measure of paper quantity. The usual meaning is 25 sheets of the same size and quality: 1 ⁄ 20 of a ream of 500 sheets. Quires of 25 sheets are often used for machine-made paper, while quires of 24 sheets are often used for handmade or specialised paper of 480-sheet reams.
The fold-and-cut theorem states that any shape with straight sides can be cut from a single (idealized) sheet of paper by folding it flat and making a single straight complete cut. [1] Such shapes include polygons, which may be concave, shapes with holes, and collections of such shapes (i.e. the regions need not be connected).
If one accepts some trimming, the size is indeed one quarter of the old Imperial paper size known as Demy, 17 + 1 ⁄ 2 in × 22 + 1 ⁄ 2 in (444 mm × 572 mm). [29] Manufacturers of computer printers, however, recognize inch-based Quarto as 10 + 5 ⁄ 6 or 10.83 in (275 mm) long.
Papyromancy is a way of divination through folding paper. Some say a true papyromancer can crumple up any piece of paper, unfold it, and predict the future from the creased lines [1] reading the creased paper the way that a palm reader would read a person's palm. Another form of papyromancy is done by folding an illustrated piece of paper and ...
In the United States, the term kirigami was coined by Florence Temko from Japanese kiri, ' cut ', and kami, ' paper ', in the title of her 1962 book, Kirigami, the Creative Art of Paper cutting. The book achieved enough success that the word kirigami was accepted as the Western name for the art of paper cutting.
We'll cover exactly how to play Strands, hints for today's spangram and all of the answers for Strands #323 on Monday, January 20. Related: 16 Games Like Wordle To Give You Your Word Game Fix More ...
Rifle Paper Co just dropped its 2024 Holiday Collection and we can't get enough. Shop Nutcracker, Santa Claus, and holly tree-themed decor. ... The embroidered tree skirt is my favorite piece of ...
Given two points p 1 and p 2 and a line l 1, there is a fold that places p 1 onto l 1 and passes through p 2. This axiom is equivalent to finding the intersection of a line with a circle, so it may have 0, 1, or 2 solutions. The line is defined by l 1, and the circle has its center at p 2, and a radius equal to the distance from p 2 to p 1. If ...