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An Invitation to Quantum Cohomology - Kontsevich's Formula for Rational Plane Curves (Hardcover, and and): Joachim Kock,... An Invitation to Quantum Cohomology - Kontsevich's Formula for Rational Plane Curves (Hardcover, and and)
Joachim Kock, Israel Vainsencher
R2,553 Discovery Miles 25 530 Ships in 10 - 15 working days

Elementary introduction to stable maps and quantum cohomology presents the problem of counting rational plane curves

Viewpoint is mostly that of enumerative geometry

Emphasis is on examples, heuristic discussions, and simple applications to best convey the intuition behind the subject

Ideal for self-study, for a mini-course in quantum cohomology, or as a special topics text in a standard course in intersection theory

Extended Abstracts Fall 2013 - Geometrical Analysis; Type Theory, Homotopy Theory and Univalent Foundations (Paperback, 1st ed.... Extended Abstracts Fall 2013 - Geometrical Analysis; Type Theory, Homotopy Theory and Univalent Foundations (Paperback, 1st ed. 2015)
Maria del Mar Gonzalez, Paul C. Yang, Nicola Gambino, Joachim Kock
R2,993 Discovery Miles 29 930 Ships in 10 - 15 working days

The two parts of the present volume contain extended conference abstracts corresponding to selected talks given by participants at the "Conference on Geometric Analysis" (thirteen abstracts) and at the "Conference on Type Theory, Homotopy Theory and Univalent Foundations" (seven abstracts), both held at the Centre de Recerca Matematica (CRM) in Barcelona from July 1st to 5th, 2013, and from September 23th to 27th, 2013, respectively. Most of them are brief articles, containing preliminary presentations of new results not yet published in regular research journals. The articles are the result of a direct collaboration between active researchers in the area after working in a dynamic and productive atmosphere. The first part is about Geometric Analysis and Conformal Geometry; this modern field lies at the intersection of many branches of mathematics (Riemannian, Conformal, Complex or Algebraic Geometry, Calculus of Variations, PDE's, etc) and relates directly to the physical world, since many natural phenomena posses an intrinsic geometric content. The second part is about Type Theory, Homotopy Theory and Univalent Foundations. The book is intended for established researchers, as well as for PhD and postdoctoral students who want to learn more about the latest advances in these highly active areas of research.

Frobenius Algebras and 2-D Topological Quantum Field Theories (Hardcover, New): Joachim Kock Frobenius Algebras and 2-D Topological Quantum Field Theories (Hardcover, New)
Joachim Kock
R5,083 Discovery Miles 50 830 Ships in 10 - 15 working days

This 2003 book describes a striking connection between topology and algebra, namely that 2D topological quantum field theories are equivalent to commutative Frobenius algebras. The precise formulation of the theorem and its proof is given in terms of monoidal categories, and the main purpose of the book is to develop these concepts from an elementary level, and more generally serve as an introduction to categorical viewpoints in mathematics. Rather than just proving the theorem, it is shown how the result fits into a more general pattern concerning universal monoidal categories for algebraic structures. Throughout, the emphasis is on the interplay between algebra and topology, with graphical interpretation of algebraic operations, and topological structures described algebraically in terms of generators and relations. The book will prove valuable to students or researchers entering this field who will learn a host of modern techniques that will prove useful for future work.

Frobenius Algebras and 2-D Topological Quantum Field Theories (Paperback): Joachim Kock Frobenius Algebras and 2-D Topological Quantum Field Theories (Paperback)
Joachim Kock
R2,062 Discovery Miles 20 620 Ships in 10 - 15 working days

This book describes a striking connection between topology and algebra, namely that 2D topological quantum field theories are equivalent to Frobenius algebras. The precise formulation of the theorem and its proof is given in terms of monoidal categories, and the main purpose of the book is to develop these concepts from an elementary level, and more generally serve as an introduction to categorical viewpoints in mathematics. Rather than just proving the theorem, it is shown how the result fits into a more general pattern concerning universal monoidal categories for algebraic structures. Throughout, the emphasis is on the interplay between algebra and topology, with graphical interpretation of algebraic operations, and topological structures described algebraically in terms of generators and relations. The book will prove valuable to students or researchers entering this field who will learn a host of modern techniques that will prove useful for future work.

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