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What's Next?: The Mathematical Legacy of William P. Thurston (Ams-205)
Contributor(s): Thurston, Dylan (Editor)
ISBN: 0691167761     ISBN-13: 9780691167763
Publisher: Princeton University Press
OUR PRICE:   $182.16  
Product Type: Hardcover - Other Formats
Published: July 2020
Qty:
Temporarily out of stock - Will ship within 2 to 5 weeks
Additional Information
BISAC Categories:
- Mathematics | Topology - General
- Mathematics | Geometry - General
- Science | Mechanics - Dynamics
Dewey: 516
LCCN: 2020003222
Physical Information: 1.3" H x 7.2" W x 10.2" (2.40 lbs) 440 pages
 
Descriptions, Reviews, Etc.
Publisher Description:

William Thurston (1946-2012) was one of the great mathematicians of the twentieth century. He was a visionary whose extraordinary ideas revolutionized a broad range of areas of mathematics, from foliations, contact structures, and Teichm ller theory to automorphisms of surfaces, hyperbolic geometry, geometrization of 3-manifolds, geometric group theory, and rational maps. In addition, he discovered connections between disciplines that led to astonishing breakthroughs in mathematical understanding as well as the creation of entirely new fields. His far-reaching questions and conjectures led to enormous progress by other researchers. In What's Next?, many of today's leading mathematicians describe recent advances and future directions inspired by Thurston's transformative ideas.

This book brings together papers delivered by his colleagues and former students at What's Next? The Mathematical Legacy of Bill Thurston, a conference held in June 2014 at Cornell University. It discusses Thurston's fundamental contributions to topology, geometry, and dynamical systems and includes many deep and original contributions to the field. Incisive and wide-ranging, the book explores how he introduced new ways of thinking about and doing mathematics--innovations that have had a profound and lasting impact on the mathematical community as a whole--and also features two papers based on Thurston's unfinished work in dynamics.