Mathematical Models of Physics Problems

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Title: Mathematical Models of Physics Problems
Description: This textbook is intended to provide a foundation for a one-semester introductory course on the advanced mathematical methods that form the cornerstones of the hard sciences and engineering. The work is suitable for first year graduate or advanced undergraduate students in the fields of Physics, Astronomy and Engineering. While none of the subject matter was originally developed by the authors, the organization and presentation are unique and condensed. The rationale for this approach derives from the realization that as research-intensive fields rapidly increase our knowledge base, the time available to linger on any given topic inevitably shrinks. This text therefore employs a condensed narrative sufficient to prepare graduate and advanced undergraduate students for the level of mathematics expected in more advanced graduate physics courses, without too much exposition on related, but non-essential material. In contrast to the two semesters traditionally devoted to mathematical methods for physicists, the material in this book has been quite distilled, making it a suitable guide for a one-semester course. The assumption is that the student, once versed in the fundamentals, can master more esoteric aspects of these topics on his or her own if and when the need arises during the course of conducting research. The book focuses on two core subjects: complex analysis and classical techniques for the solution of ordinary and partial differential equations. These topics are complemented with occasional terse reviews of other material, including linear algebra, to the extent required to ensure the book can be followed from end-to-end. This textbook is designed to provide a framework for a roughly 12 week course, with 3 weeks devoted to complex variables, a 1 week refresher on linear algebra, followed by 5 and 3 weeks devoted to ordinary and partial differential equations, respectively. This schedule leaves time for a couple of exams. The narrative is complemented with ample problem sets, including detailed guides to solving the problems.
Authors: Anchordoqui, Luis Alfredo, Paul, Thomas Cantzon
Resource Type: eBook.
Subjects: Mathematical physics--Textbooks, Physics--Mathematical models--Textbooks
Categories: SCIENCE / Physics / Mathematical & Computational
Database: eBook Collection (EBSCOhost)
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  – Type: ebook-pdf
Text:
  Availability: 0
Header DbId: nlebk
DbLabel: eBook Collection (EBSCOhost)
An: 610695
RelevancyScore: 1051
AccessLevel: 6
PubType: eBook
PubTypeId: ebook
PreciseRelevancyScore: 1050.81640625
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  Data: Mathematical Models of Physics Problems
– Name: Abstract
  Label: Description
  Group: Ab
  Data: This textbook is intended to provide a foundation for a one-semester introductory course on the advanced mathematical methods that form the cornerstones of the hard sciences and engineering. The work is suitable for first year graduate or advanced undergraduate students in the fields of Physics, Astronomy and Engineering. While none of the subject matter was originally developed by the authors, the organization and presentation are unique and condensed. The rationale for this approach derives from the realization that as research-intensive fields rapidly increase our knowledge base, the time available to linger on any given topic inevitably shrinks. This text therefore employs a condensed narrative sufficient to prepare graduate and advanced undergraduate students for the level of mathematics expected in more advanced graduate physics courses, without too much exposition on related, but non-essential material. In contrast to the two semesters traditionally devoted to mathematical methods for physicists, the material in this book has been quite distilled, making it a suitable guide for a one-semester course. The assumption is that the student, once versed in the fundamentals, can master more esoteric aspects of these topics on his or her own if and when the need arises during the course of conducting research. The book focuses on two core subjects: complex analysis and classical techniques for the solution of ordinary and partial differential equations. These topics are complemented with occasional terse reviews of other material, including linear algebra, to the extent required to ensure the book can be followed from end-to-end. This textbook is designed to provide a framework for a roughly 12 week course, with 3 weeks devoted to complex variables, a 1 week refresher on linear algebra, followed by 5 and 3 weeks devoted to ordinary and partial differential equations, respectively. This schedule leaves time for a couple of exams. The narrative is complemented with ample problem sets, including detailed guides to solving the problems.
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  Data: <searchLink fieldCode="AR" term="%22Anchordoqui%2C+Luis+Alfredo%22">Anchordoqui, Luis Alfredo</searchLink><br /><searchLink fieldCode="AR" term="%22Paul%2C+Thomas+Cantzon%22">Paul, Thomas Cantzon</searchLink>
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RecordInfo BibRecord:
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      – Code: 530.15
        Scheme: ddc
        Type: prePub
    Languages:
      – Code: eng
        Text: English
    Subjects:
      – SubjectFull: Mathematical physics--Textbooks
        Type: general
      – SubjectFull: Physics--Mathematical models--Textbooks
        Type: general
    Titles:
      – TitleFull: Mathematical Models of Physics Problems
        Type: main
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          Name:
            NameFull: Anchordoqui, Luis Alfredo
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            NameFull: Paul, Thomas Cantzon
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            NameFull: Anchordoqui, Luis Alfredo
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            NameFull: Paul, Thomas Cantzon
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          Dates:
            – D: 01
              M: 01
              Type: published
              Y: 2013
            – D: 04
              M: 02
              Type: profile
              Y: 2014
          Identifiers:
            – Type: isbn-print
              Value: 9781626186002
            – Type: isbn-electronic
              Value: 9781626187429
          Titles:
            – TitleFull: Mathematical Models of Physics Problems
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