
ISBN: 9789811394959
This volume contains the notes originally made by Kenkichi Iwasawa in his own handwriting for his lecture course at Princeton University in 1964. These notes give a beautiful and completely detailed account of the adelic approach to Heckeâ??s L-functions attached to any number field, including the proof of analytic continuation, the functional equation of these L-functions, and the class number formula arising from the Dedekind zeta function for a general number field. This adelic approach was discovered independently by Iwasawa and Tate around 1950 and marked the beginning of the whole modern adelic approach to automorphic forms and L-series. While Tateâ??s thesis at Princeton in 1950 was finally published in 1967 in the volume Algebraic Number Theory, edited by Cassels and Frohlich, no detailed account of Iwasawaâ??s work has been published until now, and this volume is intended to fill the gap in the literature of one of the key areas of modern number theory. In the final chapter, Iwasawa elegantly explains some important classical results, such as the distribution of prime ideals and the class number formulae for cyclotomic fields. Books > Mathematics eBook, Springer Shop
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2019, ISBN: 9789811394959
Spring, 1964, eBooks, eBook Download (PDF), 1st ed. 2019, [PU: Springer Singapore], Seiten: 93, Springer Singapore, 2019
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2019, ISBN: 9789811394959
Spring, 1964, eBooks, eBook Download (PDF), 1st ed. 2019, [PU: Springer Singapore], Springer Singapore, 2019
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2019, ISBN: 9789811394959
Spring, 1964, eBooks, eBook Download (PDF), Auflage, [PU: Springer-Verlag], Seiten: 93, Springer-Verlag, 2019
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2019, ISBN: 9789811394959
Spring, 1964, 1st ed. 2019, eBook Download (PDF), eBooks, [PU: Springer Singapore]
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ISBN: 9789811394959
This volume contains the notes originally made by Kenkichi Iwasawa in his own handwriting for his lecture course at Princeton University in 1964. These notes give a beautiful and complete… More...
2019, ISBN: 9789811394959
Spring, 1964, eBooks, eBook Download (PDF), 1st ed. 2019, [PU: Springer Singapore], Seiten: 93, Springer Singapore, 2019
2019
ISBN: 9789811394959
Spring, 1964, eBooks, eBook Download (PDF), 1st ed. 2019, [PU: Springer Singapore], Springer Singapore, 2019
2019, ISBN: 9789811394959
Spring, 1964, eBooks, eBook Download (PDF), Auflage, [PU: Springer-Verlag], Seiten: 93, Springer-Verlag, 2019
2019, ISBN: 9789811394959
Spring, 1964, 1st ed. 2019, eBook Download (PDF), eBooks, [PU: Springer Singapore]
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Details of the book - Hecke's L-functions
EAN (ISBN-13): 9789811394959
Publishing year: 2019
Publisher: Springer-Verlag
Book in our database since 2019-09-13T19:28:36+01:00 (London)
Detail page last modified on 2022-07-12T20:45:47+01:00 (London)
ISBN/EAN: 9789811394959
ISBN - alternate spelling:
978-981-13-9495-9
Information from Publisher
Author: Kenkichi Iwasawa
Title: SpringerBriefs in Mathematics; Hecke’s L-functions - Spring, 1964
Publisher: Springer; Springer Singapore
93 Pages
Publishing year: 2019-09-03
Singapore; SG
Language: English
58,84 € (DE)
65,00 CHF (CH)
Available
XI, 93 p. 17 illus.
EA; E107; eBook; Nonbooks, PBS / Mathematik/Wahrscheinlichkeitstheorie, Stochastik, Mathematische Statistik; Zahlentheorie; Verstehen; Kenkichi Iwasawa's lecture notes; adelic approach to L-functions; analytic continuation of L-functions; functional equations of L-functions; class number formula for a general number field; C; Number Theory; Functions of a Complex Variable; Field Theory and Polynomials; Number Theory; Functions of a Complex Variable; Field Theory and Polynomials; Mathematics and Statistics; Komplexe Analysis, komplexe Variablen, Funktionentheorie; Algebra; BC
L L L Algebraic Number TheoryWas typeset from lecture notes originally handwritten by Kenkichi Iwasawa for his course at Princeton University in 1964?
Provides the details of Iwasawa's original method, unpublished until now, of the adelic approach to Hecke's L-functions
Is an excellent textbook for studying to learn the analytic continuation and functional equation of Hecke's L-functions and the class number formula of Dedekind zeta functions
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