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The Global Theory of Minimal Surfaces in Flat Spaces: Lectures given at the 2nd Session of the Centro Internazionale Matematico Estivo (C.I.M.E.) held in Martina Franca, Italy July 7-14, 1999

The Global Theory of Minimal Surfaces in Flat Spaces: Lectures given at the 2nd Session of the Centro Internazionale Matematico Estivo (C.I.M.E.) held in Martina Franca, Italy July 7-14, 1999
Catalogue Information
Field name Details
Dewey Class 516.36
Title The Global Theory of Minimal Surfaces in Flat Spaces ([EBook]) : Lectures given at the 2nd Session of the Centro Internazionale Matematico Estivo (C.I.M.E.) held in Martina Franca, Italy July 7-14, 1999 / by William H. Meeks III, Antonio Ros, Harold Rosenberg.
Author Meeks, William H.
Added Personal Name Ros, Antonio. author.
Rosenberg, Harold. author.
Other name(s) SpringerLink (Online service)
Centro Internazionale Matematico Estivo
Publication Berlin, Heidelberg : Springer , 2002.
Physical Details XII, 124 pages : online resource.
Series Lecture Notes in Mathematics 0075-8434 ; ; 1775
ISBN 9783540456094
Summary Note In the second half of the twentieth century the global theory of minimal surface in flat space had an unexpected and rapid blossoming. Some of the classical problems were solved and new classes of minimal surfaces found. Minimal surfaces are now studied from several different viewpoints using methods and techniques from analysis (real and complex), topology and geometry. In this lecture course, Meeks, Ros and Rosenberg, three of the main architects of the modern edifice, present some of the more recent methods and developments of the theory. The topics include moduli, asymptotic geometry and surfaces of constant mean curvature in the hyperbolic space.:
Contents note William H. Meeks III: Minimal Surfaces in Flat Three Dimensional Spaces -- Joaquin Perez, Antonio Ros: Properly embedded minimal surfaces with finite total curvature -- Harold Rosenberg: Bryant Surfaces.
System details note Online access to this digital book is restricted to subscription institutions through IP address (only for SISSA internal users)
Internet Site http://dx.doi.org/10.1007/b83168
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