Warez.Ge

This is a sample guest message. Register a free account today to become a member! Once signed in, you'll be able to participate on this site by adding your own topics and posts, as well as connect with other members through your own private inbox!

Pop-Up Geometry The Mathematics Behind Pop-Up Card

Farid

Active member
Pop-Up Geometry The Mathematics Behind Pop-Up Card

Pop-Up-Geometry-The-Mathematics-Behind-Pop-Up-Card.png
English | 2022 | ISBN: ‎ 1009098403 | 143 pages | PDF | 13.67 MB​

Anyone browsing at the stationery store will see an incredible array of pop-up cards available for any occasion. The workings of pop-up cards and pop-up books can be remarkably intricate. Behind such designs lies beautiful geometry involving the intersection of circles, cones, and spheres, the movements of linkages, and other constructions. The geometry can be modelled by algebraic equations, whose solutions explain the dynamics. For example, several pop-up motions rely on the intersection of three spheres, a computation made every second for GPS location. Connecting the motions of the card structures with the algebra and geometry reveals abstract mathematics performing tangible calculations. Beginning with the nephroid in the 19th-century, the mathematics of pop-up design is now at the frontiers of rigid origami and algorithmic computational complexity. All topics are accessible to those familiar with high-school mathematics; no calculus required. Explanations are supplemented by 140+ figures and 20 animations.

Anyone browsing at the stationery store will see an incredible array of pop-up cards available for any occasion. The workings of pop-up cards and pop-up books can be remarkably intricate. Behind such designs lies beautiful geometry involving the intersection of circles, cones, and spheres, the movements of linkages, and other constructions. The geometry can be modelled by algebraic equations, whose solutions explain the dynamics. For example, several pop-up motions rely on the intersection of three spheres, a computation made every second for GPS location. Connecting the motions of the card structures with the algebra and geometry reveals abstract mathematics performing tangible calculations. Beginning with the nephroid in the 19th-century, the mathematics of pop-up design is now at the frontiers of rigid origami and algorithmic computational complexity. All topics are accessible to those familiar with high-school mathematics; no calculus required. Explanations are supplemented by 140+ figures and 20 animations.

PnItkir.gif

Code:
https://rapidgator.net/file/ead9ceb2a5ea5b4b06a78b6fb734dc99/Pop-Up_Geometry_The_Mathematics_Behind_Pop-Up_Card.rar
Code:
https://nitro.download/view/6C94B5E2700FAAE/Pop-Up_Geometry_The_Mathematics_Behind_Pop-Up_Card.rar
Code:
https://uploadgig.com/file/download/06719b66De8a4e00/Pop-Up_Geometry_The_Mathematics_Behind_Pop-Up_Card.rar
 

Users who are viewing this thread

Top