How to fold it : the mathematics of linkages, origami, and polyhedra / / Joseph O'Rourke.

"What do proteins and pop-up cards have in common? How is opening a grocery bag different from opening a gift box? How can you cut out the letters for a whole word all at once with one straight scissors cut? How many ways are there to flatten a cube? With the help of 200 colour figures, author...

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Year of Publication:2011
Language:English
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Physical Description:xii, 177 p. :; ill. (chiefly col.)
Notes:Includes index.
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record_format marc
spelling O'Rourke, Joseph.
How to fold it [electronic resource] : the mathematics of linkages, origami, and polyhedra / Joseph O'Rourke.
Cambridge ; New York : Cambridge University Press, 2011.
xii, 177 p. : ill. (chiefly col.)
Includes index.
Machine generated contents note: Part I. Linkages: 1. Robot arms; 2. Straight-line linkages and the pantograph; 3. Protein folding and pop-up cards; Part II. Origami: 4. Flat vertex folds; 5. Fold and one-cut; 6. The shopping bag theorem; Part III. Polyhedra: 7. Durer's problem: edge unfolding; 8. Unfolding orthogonal polyhedra; 9. Folding polygons to convex polyhedra; 10. Further reading; 11. Glossary; 12. Answers to exercises; 13. Permissions and acknowledgments.
"What do proteins and pop-up cards have in common? How is opening a grocery bag different from opening a gift box? How can you cut out the letters for a whole word all at once with one straight scissors cut? How many ways are there to flatten a cube? With the help of 200 colour figures, author Joseph O'Rourke explains these fascinating folding problems starting from high school algebra and geometry and introducing more advanced concepts in tangible contexts as they arise. He shows how variations on these basic problems lead directly to the frontiers of current mathematical research and offers ten accessible unsolved problems for the enterprising reader. Before tackling these, you can test your skills on fifty exercises with complete solutions. The book's website, http://www.howtofoldit.org, has dynamic animations of many of the foldings and downloadable templates for readers to fold or cut out"--Provided by publisher.
Electronic reproduction. Ann Arbor, MI : ProQuest, 2015. Available via World Wide Web. Access may be limited to ProQuest affiliated libraries.
Liaison theory (Mathematics)
Origami Mathematics.
Polyhedra.
Protein folding.
Electronic books.
ProQuest (Firm)
https://ebookcentral.proquest.com/lib/oeawat/detail.action?docID=775112 Click to View
language English
format Electronic
eBook
author O'Rourke, Joseph.
spellingShingle O'Rourke, Joseph.
How to fold it the mathematics of linkages, origami, and polyhedra /
Machine generated contents note: Part I. Linkages: 1. Robot arms; 2. Straight-line linkages and the pantograph; 3. Protein folding and pop-up cards; Part II. Origami: 4. Flat vertex folds; 5. Fold and one-cut; 6. The shopping bag theorem; Part III. Polyhedra: 7. Durer's problem: edge unfolding; 8. Unfolding orthogonal polyhedra; 9. Folding polygons to convex polyhedra; 10. Further reading; 11. Glossary; 12. Answers to exercises; 13. Permissions and acknowledgments.
author_facet O'Rourke, Joseph.
ProQuest (Firm)
ProQuest (Firm)
author_variant j o jo
author2 ProQuest (Firm)
author2_role TeilnehmendeR
author_corporate ProQuest (Firm)
author_sort O'Rourke, Joseph.
title How to fold it the mathematics of linkages, origami, and polyhedra /
title_sub the mathematics of linkages, origami, and polyhedra /
title_full How to fold it [electronic resource] : the mathematics of linkages, origami, and polyhedra / Joseph O'Rourke.
title_fullStr How to fold it [electronic resource] : the mathematics of linkages, origami, and polyhedra / Joseph O'Rourke.
title_full_unstemmed How to fold it [electronic resource] : the mathematics of linkages, origami, and polyhedra / Joseph O'Rourke.
title_auth How to fold it the mathematics of linkages, origami, and polyhedra /
title_new How to fold it
title_sort how to fold it the mathematics of linkages, origami, and polyhedra /
publisher Cambridge University Press,
publishDate 2011
physical xii, 177 p. : ill. (chiefly col.)
contents Machine generated contents note: Part I. Linkages: 1. Robot arms; 2. Straight-line linkages and the pantograph; 3. Protein folding and pop-up cards; Part II. Origami: 4. Flat vertex folds; 5. Fold and one-cut; 6. The shopping bag theorem; Part III. Polyhedra: 7. Durer's problem: edge unfolding; 8. Unfolding orthogonal polyhedra; 9. Folding polygons to convex polyhedra; 10. Further reading; 11. Glossary; 12. Answers to exercises; 13. Permissions and acknowledgments.
isbn 9781139115049 (electronic bk.)
callnumber-first Q - Science
callnumber-subject QA - Mathematics
callnumber-label QA564
callnumber-sort QA 3564 O76 42011
genre Electronic books.
genre_facet Electronic books.
url https://ebookcentral.proquest.com/lib/oeawat/detail.action?docID=775112
illustrated Illustrated
dewey-hundreds 500 - Science
dewey-tens 510 - Mathematics
dewey-ones 516 - Geometry
dewey-full 516.3/5
dewey-sort 3516.3 15
dewey-raw 516.3/5
dewey-search 516.3/5
oclc_num 769341819
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is_hierarchy_title How to fold it the mathematics of linkages, origami, and polyhedra /
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