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Elliptic functions
Authors: ---
ISBN: 0521780780 9780521780780 0521785634 9780521785631 9780511617867 9780511242304 0511242301 0511240430 9780511240430 0511240953 9780511240959 051124147X 9780511241475 0511617860 1107158486 1107263972 1280568011 9786610568017 0511331711 9781107158481 9781107263970 9781280568015 6610568014 9780511331718 Year: 2006 Volume: 67 Publisher: Cambridge : Cambridge University Press,

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Abstract

In its first six chapters this 2006 text seeks to present the basic ideas and properties of the Jacobi elliptic functions as an historical essay, an attempt to answer the fascinating question: 'what would the treatment of elliptic functions have been like if Abel had developed the ideas, rather than Jacobi?' Accordingly, it is based on the idea of inverting integrals which arise in the theory of differential equations and, in particular, the differential equation that describes the motion of a simple pendulum. The later chapters present a more conventional approach to the Weierstrass functions and to elliptic integrals, and then the reader is introduced to the richly varied applications of the elliptic and related functions. Applications spanning arithmetic (solution of the general quintic, the functional equation of the Riemann zeta function), dynamics (orbits, Euler's equations, Green's functions), and also probability and statistics, are discussed.

Journées arithmétiques 1980
Authors: --- ---
ISBN: 1139884026 1107366038 1107370760 1107361125 1107368324 1299403832 1107363578 0511662025 9781107361126 0521285135 9780521285131 9780511662027 Year: 1982 Publisher: Cambridge : Cambridge University Press,

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Abstract

For a number of years, French mathematicians have run regular number theory conferences to which they have invited number theorists from many countries. To repay their hospitality, the London Mathematical Society arranged for the 1980 'Journees Arithmeiques' to be held in Exeter. The papers published here are either based on the main invited lectures or on selected research talks given at the conference. They cover all branches of the subject: combinatorial and elementary methods; analytic number theory; transcendence theory; Galois module theory and algebraic number theory in general; elliptic curves and modular functions; local fields; additive number theory; Diophantine geometry, and uniform distribution. It will be necessary reading for all those undertaking research in number theory.

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