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Titlebook: Mathematical Challenges in a New Phase of Materials Science; Kyoto, Japan, August Yasumasa Nishiura,Motoko Kotani Conference proceedings 20

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書目名稱Mathematical Challenges in a New Phase of Materials Science
副標題Kyoto, Japan, August
編輯Yasumasa Nishiura,Motoko Kotani
視頻videohttp://file.papertrans.cn/627/626039/626039.mp4
概述Includes the latest studies of mathematical aspects in defect dynamics, negatively curved carbon crystal, topological analysis of di-block copolymers, persistence modules, and fracture dynamics.Presen
叢書名稱Springer Proceedings in Mathematics & Statistics
圖書封面Titlebook: Mathematical Challenges in a New Phase of Materials Science; Kyoto, Japan, August Yasumasa Nishiura,Motoko Kotani Conference proceedings 20
描述This volume comprises eight papers delivered at the RIMS International Conference "Mathematical Challenges in a New Phase of Materials Science", Kyoto, August 4–8, 2014. The contributions address subjects in defect dynamics, negatively curved carbon crystal, topological analysis of di-block copolymers, persistence modules, and fracture dynamics. These papers highlight the strong interaction between mathematics and materials science and also reflect the activity of WPI-AIMR at Tohoku University, in which collaborations between mathematicians and experimentalists are actively ongoing.
出版日期Conference proceedings 2016
關(guān)鍵詞Discrete geometry; Dynamical system theory; Hierarchical structures; Non-equilibrium dynamics; Self-orga
版次1
doihttps://doi.org/10.1007/978-4-431-56104-0
isbn_softcover978-4-431-56777-6
isbn_ebook978-4-431-56104-0Series ISSN 2194-1009 Series E-ISSN 2194-1017
issn_series 2194-1009
copyrightSpringer Japan KK, part of Springer Nature 2016
The information of publication is updating

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An Energy-Consistent Model of Dislocation Dynamics in an Elastic Body,e energy in the slip plane and an elastic energy in the elastic body. The obtained model becomes a 3D-2D bulk-surface system and naturally includes the Peach-Koehler force term and the notion of dislocation core. We also derive a 2D-1D bulk-surface system for a straight screw dislocation and give some numerical examples for it.
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Conference proceedings 2016rs, persistence modules, and fracture dynamics. These papers highlight the strong interaction between mathematics and materials science and also reflect the activity of WPI-AIMR at Tohoku University, in which collaborations between mathematicians and experimentalists are actively ongoing.
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Conference proceedings 2016, August 4–8, 2014. The contributions address subjects in defect dynamics, negatively curved carbon crystal, topological analysis of di-block copolymers, persistence modules, and fracture dynamics. These papers highlight the strong interaction between mathematics and materials science and also refle
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Persistence of Common Topological Structures by Commutative Triple Ladder Quiver,ecial type of persistence modules defined on the so-called commutative triple ladder for the sake of simplicity. We aim to explain the essence of Auslander-Reiten theory in connection with persistence modules.
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,Computer Assisted Verification of the Eigenvalue Problem for One-Dimensional Schr?dinger Operator,easurement, the rotation number of the orbit in the resulting one-dimensional projective space. Combining the interval arithmetic method for dynamical systems, we demonstrate a computer-assisted proof for the existence of isolated eigenvalues within the first spectral gap.
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2194-1009 ion between mathematics and materials science and also reflect the activity of WPI-AIMR at Tohoku University, in which collaborations between mathematicians and experimentalists are actively ongoing.978-4-431-56777-6978-4-431-56104-0Series ISSN 2194-1009 Series E-ISSN 2194-1017
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ontains a heterogeneous population of cholinergic and GABAergic neurons, while the amygdala displays neurons with a complex receptor subunit composition. Investigation of neurons with this type of molecular diversity benefits from techniques such as scRT-PCR for cell identification. We also illustra
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