Book Details
Format
Paperback
Pages
246
Language
English
Published
Nov 30, 2011
Publisher
Cambridge University Press
ISBN-10
1108410898
ISBN-13
9781108410892
Description
This work explores the intricate world of geometric and topological inference, shedding light on the methods used to extract meaningful information from complex shapes and structures. The authors, Boissonnat, Chazal, and Yvinec, delve into the mathematical frameworks that underpin the study of geometry and topology, illustrating how these concepts can be applied to analyze and understand various geometric objects.
With a blend of theory and practical applications, the book serves as a valuable resource for both researchers and students in mathematics and computer science. It provides insights into how geometric data is collected, processed, and interpreted, paving the way for advancements in fields like data analysis, machine learning, and computational geometry.
Readers will appreciate the clear explanations and thorough examination of the techniques involved in geometric inference, along with the implications of topology in real-world scenarios. This comprehensive guide encourages a deeper comprehension of how geometry and topology intersect, enriching the knowledge of those who engage with its content.
With a blend of theory and practical applications, the book serves as a valuable resource for both researchers and students in mathematics and computer science. It provides insights into how geometric data is collected, processed, and interpreted, paving the way for advancements in fields like data analysis, machine learning, and computational geometry.
Readers will appreciate the clear explanations and thorough examination of the techniques involved in geometric inference, along with the implications of topology in real-world scenarios. This comprehensive guide encourages a deeper comprehension of how geometry and topology intersect, enriching the knowledge of those who engage with its content.
Genres
Science & Technology