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In this book, the general theory of submanifolds in a
multidimensional projective space is constructed. The topics dealt
with include osculating spaces and fundamental forms of different
orders, asymptotic and conjugate lines, submanifolds on the
Grassmannians, different aspects of the normalization problems for
submanifolds (with special emphasis given to a connection in the
normal bundle) and the problem of algebraizability for different
kinds of submanifolds, the geometry of hypersurfaces and
hyperbands, etc. A series of special types of submanifolds with
special projective structures are studied: submanifolds carrying a
net of conjugate lines (in particular, conjugate systems),
tangentially degenerate submanifolds, submanifolds with asymptotic
and conjugate distributions etc. The method of moving frames and
the apparatus of exterior differential forms are systematically
used in the book and the results presented can be applied to the
problems dealing with the linear subspaces or their
generalizations.
Graduate students majoring in differential geometry will find
this monograph of great interest, as will researchers in
differential and algebraic geometry, complex analysis and theory of
several complex variables.
Comprehensive coverage of the foundations, applications, recent
developments, and future of conformal differential geometry
Conformal Differential Geometry and Its Generalizations is the
first and only text that systematically presents the foundations
and manifestations of conformal differential geometry. It offers
the first unified presentation of the subject, which was
established more than a century ago. The text is divided into seven
chapters, each containing figures, formulas, and historical and
bibliographical notes, while numerous examples elucidate the
necessary theory.
Clear, focused, and expertly synthesized, Conformal Differential
Geometry and Its Generalizations
* Develops the theory of hypersurfaces and submanifolds of any
dimension of conformal and pseudoconformal spaces.
* Investigates conformal and pseudoconformal structures on a
manifold of arbitrary dimension, derives their structure equations,
and explores their tensor of conformal curvature.
* Analyzes the real theory of four-dimensional conformal
structures of all possible signatures.
* Considers the analytic and differential geometry of Grassmann
and almost Grassmann structures.
* Draws connections between almost Grassmann structures and web
theory.
Conformal differential geometry, a part of classical differential
geometry, was founded at the turn of the century and gave rise to
the study of conformal and almost Grassmann structures in later
years. Until now, no book has offered a systematic presentation of
the multidimensional conformal differential geometry and the
conformal and almost Grassmann structures.
After years of intense research at their respective
universitiesand at the Soviet School of Differential Geometry, Maks
A. Akivis and Vladislav V. Goldberg have written this
well-conceived, expertly executed volume to fill a void in the
literature. Dr. Akivis and Dr. Goldberg supply a deep foundation,
applications, numerous examples, and recent developments in the
field. Many of the findings that fill these pages are published
here for the first time, and previously published results are
reexamined in a unified context.
The geometry and theory of conformal and pseudoconformal spaces of
arbitrary dimension, as well as the theory of Grassmann and almost
Grassmann structures, are discussed and analyzed in detail. The
topics covered not only advance the subject itself, but pose
important questions for future investigations. This exhaustive,
groundbreaking text combines the classical results and recent
developments and findings.
This volume is intended for graduate students and researchers of
differential geometry. It can be especially useful to those
students and researchers who are interested in conformal and
Grassmann differential geometry and their applications to
theoretical physics.
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