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Generalizations of Thomae's Formula for Zn Curves (Paperback, 2011 ed.): Hershel M. Farkas, Shaul Zemel Generalizations of Thomae's Formula for Zn Curves (Paperback, 2011 ed.)
Hershel M. Farkas, Shaul Zemel
R2,982 Discovery Miles 29 820 Ships in 10 - 15 working days

Previous publications on the generalization of the Thomae formulae to "Zn" curves have emphasized the theory's implications in mathematical physics and depended heavily on applied mathematical techniques. This book redevelops these previous results demonstrating how they can be derived directly from the basic properties of theta functions as functions on compact Riemann surfaces.

"Generalizations of Thomae's Formulafor "Zn" Curves" includes several refocused proofs developed in a generalized context that is more accessible to researchers in related mathematical fields such as algebraic geometry, complex analysis, and number theory.

This book is intended for mathematicians with an interest in complex analysis, algebraic geometry or number theory as well as physicists studying conformal field theory."

Generalizations of Thomae's Formula for Zn Curves (Hardcover, 2011 ed.): Hershel M. Farkas, Shaul Zemel Generalizations of Thomae's Formula for Zn Curves (Hardcover, 2011 ed.)
Hershel M. Farkas, Shaul Zemel
R3,190 Discovery Miles 31 900 Ships in 10 - 15 working days

Previous publications on the generalization of the Thomae formulae to "Zn" curves have emphasized the theory's implications in mathematical physics and depended heavily on applied mathematical techniques. This book redevelops these previous results demonstrating how they can be derived directly from the basic properties of theta functions as functions on compact Riemann surfaces.

"Generalizations of Thomae's Formulafor "Zn" Curves" includes several refocused proofs developed in a generalized context that is more accessible to researchers in related mathematical fields such as algebraic geometry, complex analysis, and number theory.

This book is intended for mathematicians with an interest in complex analysis, algebraic geometry or number theory as well as physicists studying conformal field theory."

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