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Titlebook: Representation Theory and Algebraic Geometry; A Conference Celebra Vladimir Baranovsky,Nicolas Guay,Travis Schedler Book 2022 Springer Natu

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书目名称Representation Theory and Algebraic Geometry
副标题A Conference Celebra
编辑Vladimir Baranovsky,Nicolas Guay,Travis Schedler
视频videohttp://file.papertrans.cn/828/827405/827405.mp4
概述Explores the influential work of Alexander Beilinson and Victor Ginzburg in algebraic geometry and representation theory.Contains cutting-edge research from leaders in the area, all of whom are deeply
丛书名称Trends in Mathematics
图书封面Titlebook: Representation Theory and Algebraic Geometry; A Conference Celebra Vladimir Baranovsky,Nicolas Guay,Travis Schedler Book 2022 Springer Natu
描述.The chapters in this volume explore the influence of the Russian school on the development of algebraic geometry and representation theory, particularly the pioneering work of two of its illustrious members, Alexander Beilinson and Victor Ginzburg, in celebration of their 60th birthdays. Based on the work of speakers and invited participants at the conference “Interactions Between Representation Theory and Algebraic Geometry”, held at the University of Chicago, August 21-25, 2017, this volume illustrates the impact of their research and how it has shaped the development of various branches of mathematics through the use of D-modules, the affine Grassmannian, symplectic algebraic geometry, and other topics. All authors have been deeply influenced by their ideas and present here cutting-edge developments on modern topics. Chapters are organized around three distinct themes:.Groups, algebras, categories, and representation theory.D-modules and perverse sheaves.Analogous varieties defined by quivers..Representation Theory and Algebraic Geometry. will be an ideal resource for researchers who work in the area, particularly those interested in exploring the impact of the Russian school.
出版日期Book 2022
关键词Algebraic geometry; Representation theory; Russian school algebraic geometry; Russian school representa
版次1
doihttps://doi.org/10.1007/978-3-030-82007-7
isbn_softcover978-3-030-82009-1
isbn_ebook978-3-030-82007-7Series ISSN 2297-0215 Series E-ISSN 2297-024X
issn_series 2297-0215
copyrightSpringer Nature Switzerland AG 2022
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Dennis Gaitsgoryus) or externally applied (exogenous) stimuli. Responsiveness to these stimuli can be bestowed with the inclusion of relevant stimulus-sensitive components and/or chemical bonds in the nanoparticulate structure. Stimulus-responsive nanocarriers can allow spatial and/or temporal control in the releas
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Roman Bezrukavnikov,Simon Richeus) or externally applied (exogenous) stimuli. Responsiveness to these stimuli can be bestowed with the inclusion of relevant stimulus-sensitive components and/or chemical bonds in the nanoparticulate structure. Stimulus-responsive nanocarriers can allow spatial and/or temporal control in the releas
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f pharmaceuticals and diagnostic agents. Materials’ properties residing at the nanoscale have been found to offer a number of pharmaceutical products advanced functionality, specifically the ability to control active pharmaceutical ingredient transport in vivo. Nanoparticles are fabricated from vari
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Dennis Gaitsgoryreducing environment, and/or hypoxia, as well as to externally applied stimuli that are based on different forms of energy, including thermal or acoustic energy, and electromagnetic radiation. Nanocarriers that respond to more than one stimulus, i.e. multi-stimuli-responsive systems, have also been
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Roman Bezrukavnikov,Simon Richereducing environment, and/or hypoxia, as well as to externally applied stimuli that are based on different forms of energy, including thermal or acoustic energy, and electromagnetic radiation. Nanocarriers that respond to more than one stimulus, i.e. multi-stimuli-responsive systems, have also been
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