Computational methods in engineering boundary value problems /:
Computational methods in engineering boundary value problems.
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
New York :
Academic Press,
1979.
|
Schriftenreihe: | Mathematics in science and engineering ;
v. 145. |
Schlagworte: | |
Online-Zugang: | DE-862 DE-863 DE-862 DE-863 |
Zusammenfassung: | Computational methods in engineering boundary value problems. |
Beschreibung: | 1 online resource (x, 309 pages :) |
Format: | Master and use copy. Digital master created according to Benchmark for Faithful Digital Reproductions of Monographs and Serials, Version 1. Digital Library Federation, December 2002. |
Bibliographie: | Includes bibliographical references and index. |
ISBN: | 9780125126502 0125126506 9780080956534 008095653X 1282289039 9781282289031 |
Internformat
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490 | 1 | |a Mathematics in science and engineering ; |v v. 145 | |
504 | |a Includes bibliographical references and index. | ||
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588 | 0 | |a Print version record. | |
520 | |a Computational methods in engineering boundary value problems. | ||
505 | 0 | |a Front Cover; Computational Methods in Engineering Boundary Value Problems; Copyright Page; Contents; Preface; Chapter 1. Introduction; 1.1 Introduction; 1.2 Methods of Solution; 1.3 Numerical Integration of Initial Value Problems; 1.4 Concluding Remarks; References; Chapter 2. Method of Superposition; 2.1 Introduction; 2.2 Reduction of Linear Boundary Value Problems to Initial Value Problems; 2.3 Reduction of Third-Order Boundary Value Problems to Initial Value Problems; 2.4 Concluding Remarks; Problems; References; Chapter 3. Method of Chasing; 3.1 Introduction | |
505 | 8 | |a 3.2 Derivation of Equations of Chasing By Jones-Second-Order Differential Equations3.3 Application of the Method; 3.4 Third-Order Differential Equations; 3.5 Concluding Remarks; Problems; References; Chapter 4. The Adjoint Operator Method; 4.1 Introduction; 4.2 Second-Order Differential Equations; 4.3 Third-Order Differential Equations; 4.4 Concluding Remarks; Problems; References; Chapter 5. Iterative Methods-The Shooting Methods; 5.1 Introduction; 5.2 Newton's Method; 5.3 Parallel Shooting; 5.4 Quasi Linearization; 5.5 Concluding Remarks; Problems; References | |
505 | 8 | |a Chapter 6. Iterative Methods-The Finite-Difference Method6.1 Introduction; 6.2 Finite Differences; 6.3 Solution of Boundary Value Problems by Finite Difference; 6.4 Second-Order Differential Equations; 6.5 Third-Order Differential Equations; 6.6 First-Order System and Newton's Method; 6.7 Concluding Remarks; Problems; References; Chapter 7. Method of Transformation-Direct Transformation; 7.1 Introduction; 7.2 Transformation for a Given Group of Transformations; 7.3 Extension of the Transformation Method for a Given Group of Transformations; 7.4 Uniqueness of the Solution; Problems; References | |
505 | 8 | |a Chapter 8. Method of Transformation-Reduced Physical Parameters8.1 Introduction; 8.2 Reduced Physical Parameters; 8.3 Application to Simultaneous Differential Equations; 8.4 Application to an Eigenvalue Problem; 8.5 Concluding Remarks; Problems; References; Chapter 9. Method of Transformation-Invariance of Physical Parameters; 9.1 Introduction; 9.2 Boundary Value Problem with Two or More Parameters; 9.3 Systematic Search of Multiple Solutions; 9.4 Thin Struts with Large Elastic Displacement; Problems; References; Chapter 10. Method of Parameter Differentiation; 10.1 Introduction | |
505 | 8 | |a 10.2 Nonlinear Algebraic Equations10.3 Parameter Differentiation Applied to Differential Equations; 10.4 Application to Simultaneous Equations; 10.5 The General Parameter Mapping (GPM) of Kubicek and Hlavecek; 10.6 Method of Continuation of Roberts and Shipman; 10.7 Concluding Remarks; Problems; References; Chapter 11. Method of Invariant Imbedding; 11.1 Introduction; 11.2 Concept of Invariant Imbedding; 11.3 Isothermal Packed-Bed Chemical Reactor; 11.4 Radiation Fins; 11.5 Solution of Falkner-Skan Equation; 11.6 Concluding Remarks; Problems; References; Chapter 12. Integral Equation Method | |
650 | 0 | |a Boundary value problems |x Numerical solutions. |0 http://id.loc.gov/authorities/subjects/sh85016105 | |
650 | 6 | |a Problèmes aux limites |x Solutions numériques. | |
650 | 7 | |a MATHEMATICS |x Differential Equations |x General. |2 bisacsh | |
650 | 7 | |a Boundary value problems |x Numerical solutions |2 fast | |
650 | 7 | |a Problèmes aux limites |x Solutions numériques |x Informatique. |2 ram | |
650 | 7 | |a Mathématiques de l'ingénieur. |2 ram | |
758 | |i has work: |a Computational methods in engineering boundary value problems (Text) |1 https://id.oclc.org/worldcat/entity/E39PCH8kpQ7m3MWkKH699HR8Q3 |4 https://id.oclc.org/worldcat/ontology/hasWork | ||
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Datensatz im Suchindex
DE-BY-FWS_katkey | ZDB-4-EBA-ocn316549575 |
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adam_text | |
any_adam_object | |
author | Na, T. Y. |
author_GND | http://id.loc.gov/authorities/names/n79099127 |
author_facet | Na, T. Y. |
author_role | |
author_sort | Na, T. Y. |
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building | Verbundindex |
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callnumber-first | T - Technology |
callnumber-label | TA347 |
callnumber-raw | TA347.B69 N3 1979eb |
callnumber-search | TA347.B69 N3 1979eb |
callnumber-sort | TA 3347 B69 N3 41979EB |
callnumber-subject | TA - General and Civil Engineering |
collection | ZDB-4-EBA |
contents | Front Cover; Computational Methods in Engineering Boundary Value Problems; Copyright Page; Contents; Preface; Chapter 1. Introduction; 1.1 Introduction; 1.2 Methods of Solution; 1.3 Numerical Integration of Initial Value Problems; 1.4 Concluding Remarks; References; Chapter 2. Method of Superposition; 2.1 Introduction; 2.2 Reduction of Linear Boundary Value Problems to Initial Value Problems; 2.3 Reduction of Third-Order Boundary Value Problems to Initial Value Problems; 2.4 Concluding Remarks; Problems; References; Chapter 3. Method of Chasing; 3.1 Introduction 3.2 Derivation of Equations of Chasing By Jones-Second-Order Differential Equations3.3 Application of the Method; 3.4 Third-Order Differential Equations; 3.5 Concluding Remarks; Problems; References; Chapter 4. The Adjoint Operator Method; 4.1 Introduction; 4.2 Second-Order Differential Equations; 4.3 Third-Order Differential Equations; 4.4 Concluding Remarks; Problems; References; Chapter 5. Iterative Methods-The Shooting Methods; 5.1 Introduction; 5.2 Newton's Method; 5.3 Parallel Shooting; 5.4 Quasi Linearization; 5.5 Concluding Remarks; Problems; References Chapter 6. Iterative Methods-The Finite-Difference Method6.1 Introduction; 6.2 Finite Differences; 6.3 Solution of Boundary Value Problems by Finite Difference; 6.4 Second-Order Differential Equations; 6.5 Third-Order Differential Equations; 6.6 First-Order System and Newton's Method; 6.7 Concluding Remarks; Problems; References; Chapter 7. Method of Transformation-Direct Transformation; 7.1 Introduction; 7.2 Transformation for a Given Group of Transformations; 7.3 Extension of the Transformation Method for a Given Group of Transformations; 7.4 Uniqueness of the Solution; Problems; References Chapter 8. Method of Transformation-Reduced Physical Parameters8.1 Introduction; 8.2 Reduced Physical Parameters; 8.3 Application to Simultaneous Differential Equations; 8.4 Application to an Eigenvalue Problem; 8.5 Concluding Remarks; Problems; References; Chapter 9. Method of Transformation-Invariance of Physical Parameters; 9.1 Introduction; 9.2 Boundary Value Problem with Two or More Parameters; 9.3 Systematic Search of Multiple Solutions; 9.4 Thin Struts with Large Elastic Displacement; Problems; References; Chapter 10. Method of Parameter Differentiation; 10.1 Introduction 10.2 Nonlinear Algebraic Equations10.3 Parameter Differentiation Applied to Differential Equations; 10.4 Application to Simultaneous Equations; 10.5 The General Parameter Mapping (GPM) of Kubicek and Hlavecek; 10.6 Method of Continuation of Roberts and Shipman; 10.7 Concluding Remarks; Problems; References; Chapter 11. Method of Invariant Imbedding; 11.1 Introduction; 11.2 Concept of Invariant Imbedding; 11.3 Isothermal Packed-Bed Chemical Reactor; 11.4 Radiation Fins; 11.5 Solution of Falkner-Skan Equation; 11.6 Concluding Remarks; Problems; References; Chapter 12. Integral Equation Method |
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dewey-search | 515/.35 |
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discipline | Mathematik |
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illustrated | Illustrated |
indexdate | 2025-03-18T14:14:43Z |
institution | BVB |
isbn | 9780125126502 0125126506 9780080956534 008095653X 1282289039 9781282289031 |
language | English |
oclc_num | 316549575 |
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physical | 1 online resource (x, 309 pages :) |
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publishDate | 1979 |
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publisher | Academic Press, |
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series | Mathematics in science and engineering ; |
series2 | Mathematics in science and engineering ; |
spelling | Na, T. Y. http://id.loc.gov/authorities/names/n79099127 Computational methods in engineering boundary value problems / T.Y. Na. New York : Academic Press, 1979. 1 online resource (x, 309 pages :) text txt rdacontent computer c rdamedia online resource cr rdacarrier Mathematics in science and engineering ; v. 145 Includes bibliographical references and index. Use copy Restrictions unspecified star MiAaHDL Electronic reproduction. [Place of publication not identified] : HathiTrust Digital Library, 2010. MiAaHDL Master and use copy. Digital master created according to Benchmark for Faithful Digital Reproductions of Monographs and Serials, Version 1. Digital Library Federation, December 2002. http://purl.oclc.org/DLF/benchrepro0212 MiAaHDL digitized 2010 HathiTrust Digital Library committed to preserve pda MiAaHDL Print version record. Computational methods in engineering boundary value problems. Front Cover; Computational Methods in Engineering Boundary Value Problems; Copyright Page; Contents; Preface; Chapter 1. Introduction; 1.1 Introduction; 1.2 Methods of Solution; 1.3 Numerical Integration of Initial Value Problems; 1.4 Concluding Remarks; References; Chapter 2. Method of Superposition; 2.1 Introduction; 2.2 Reduction of Linear Boundary Value Problems to Initial Value Problems; 2.3 Reduction of Third-Order Boundary Value Problems to Initial Value Problems; 2.4 Concluding Remarks; Problems; References; Chapter 3. Method of Chasing; 3.1 Introduction 3.2 Derivation of Equations of Chasing By Jones-Second-Order Differential Equations3.3 Application of the Method; 3.4 Third-Order Differential Equations; 3.5 Concluding Remarks; Problems; References; Chapter 4. The Adjoint Operator Method; 4.1 Introduction; 4.2 Second-Order Differential Equations; 4.3 Third-Order Differential Equations; 4.4 Concluding Remarks; Problems; References; Chapter 5. Iterative Methods-The Shooting Methods; 5.1 Introduction; 5.2 Newton's Method; 5.3 Parallel Shooting; 5.4 Quasi Linearization; 5.5 Concluding Remarks; Problems; References Chapter 6. Iterative Methods-The Finite-Difference Method6.1 Introduction; 6.2 Finite Differences; 6.3 Solution of Boundary Value Problems by Finite Difference; 6.4 Second-Order Differential Equations; 6.5 Third-Order Differential Equations; 6.6 First-Order System and Newton's Method; 6.7 Concluding Remarks; Problems; References; Chapter 7. Method of Transformation-Direct Transformation; 7.1 Introduction; 7.2 Transformation for a Given Group of Transformations; 7.3 Extension of the Transformation Method for a Given Group of Transformations; 7.4 Uniqueness of the Solution; Problems; References Chapter 8. Method of Transformation-Reduced Physical Parameters8.1 Introduction; 8.2 Reduced Physical Parameters; 8.3 Application to Simultaneous Differential Equations; 8.4 Application to an Eigenvalue Problem; 8.5 Concluding Remarks; Problems; References; Chapter 9. Method of Transformation-Invariance of Physical Parameters; 9.1 Introduction; 9.2 Boundary Value Problem with Two or More Parameters; 9.3 Systematic Search of Multiple Solutions; 9.4 Thin Struts with Large Elastic Displacement; Problems; References; Chapter 10. Method of Parameter Differentiation; 10.1 Introduction 10.2 Nonlinear Algebraic Equations10.3 Parameter Differentiation Applied to Differential Equations; 10.4 Application to Simultaneous Equations; 10.5 The General Parameter Mapping (GPM) of Kubicek and Hlavecek; 10.6 Method of Continuation of Roberts and Shipman; 10.7 Concluding Remarks; Problems; References; Chapter 11. Method of Invariant Imbedding; 11.1 Introduction; 11.2 Concept of Invariant Imbedding; 11.3 Isothermal Packed-Bed Chemical Reactor; 11.4 Radiation Fins; 11.5 Solution of Falkner-Skan Equation; 11.6 Concluding Remarks; Problems; References; Chapter 12. Integral Equation Method Boundary value problems Numerical solutions. http://id.loc.gov/authorities/subjects/sh85016105 Problèmes aux limites Solutions numériques. MATHEMATICS Differential Equations General. bisacsh Boundary value problems Numerical solutions fast Problèmes aux limites Solutions numériques Informatique. ram Mathématiques de l'ingénieur. ram has work: Computational methods in engineering boundary value problems (Text) https://id.oclc.org/worldcat/entity/E39PCH8kpQ7m3MWkKH699HR8Q3 https://id.oclc.org/worldcat/ontology/hasWork Print version: Na, T.Y. Computational methods in engineering boundary value problems. New York : Academic Press, 1979 9780125126502 (DLC) 79051682 (OCoLC)5352793 Mathematics in science and engineering ; v. 145. http://id.loc.gov/authorities/names/n42015986 |
spellingShingle | Na, T. Y. Computational methods in engineering boundary value problems / Mathematics in science and engineering ; Front Cover; Computational Methods in Engineering Boundary Value Problems; Copyright Page; Contents; Preface; Chapter 1. Introduction; 1.1 Introduction; 1.2 Methods of Solution; 1.3 Numerical Integration of Initial Value Problems; 1.4 Concluding Remarks; References; Chapter 2. Method of Superposition; 2.1 Introduction; 2.2 Reduction of Linear Boundary Value Problems to Initial Value Problems; 2.3 Reduction of Third-Order Boundary Value Problems to Initial Value Problems; 2.4 Concluding Remarks; Problems; References; Chapter 3. Method of Chasing; 3.1 Introduction 3.2 Derivation of Equations of Chasing By Jones-Second-Order Differential Equations3.3 Application of the Method; 3.4 Third-Order Differential Equations; 3.5 Concluding Remarks; Problems; References; Chapter 4. The Adjoint Operator Method; 4.1 Introduction; 4.2 Second-Order Differential Equations; 4.3 Third-Order Differential Equations; 4.4 Concluding Remarks; Problems; References; Chapter 5. Iterative Methods-The Shooting Methods; 5.1 Introduction; 5.2 Newton's Method; 5.3 Parallel Shooting; 5.4 Quasi Linearization; 5.5 Concluding Remarks; Problems; References Chapter 6. Iterative Methods-The Finite-Difference Method6.1 Introduction; 6.2 Finite Differences; 6.3 Solution of Boundary Value Problems by Finite Difference; 6.4 Second-Order Differential Equations; 6.5 Third-Order Differential Equations; 6.6 First-Order System and Newton's Method; 6.7 Concluding Remarks; Problems; References; Chapter 7. Method of Transformation-Direct Transformation; 7.1 Introduction; 7.2 Transformation for a Given Group of Transformations; 7.3 Extension of the Transformation Method for a Given Group of Transformations; 7.4 Uniqueness of the Solution; Problems; References Chapter 8. Method of Transformation-Reduced Physical Parameters8.1 Introduction; 8.2 Reduced Physical Parameters; 8.3 Application to Simultaneous Differential Equations; 8.4 Application to an Eigenvalue Problem; 8.5 Concluding Remarks; Problems; References; Chapter 9. Method of Transformation-Invariance of Physical Parameters; 9.1 Introduction; 9.2 Boundary Value Problem with Two or More Parameters; 9.3 Systematic Search of Multiple Solutions; 9.4 Thin Struts with Large Elastic Displacement; Problems; References; Chapter 10. Method of Parameter Differentiation; 10.1 Introduction 10.2 Nonlinear Algebraic Equations10.3 Parameter Differentiation Applied to Differential Equations; 10.4 Application to Simultaneous Equations; 10.5 The General Parameter Mapping (GPM) of Kubicek and Hlavecek; 10.6 Method of Continuation of Roberts and Shipman; 10.7 Concluding Remarks; Problems; References; Chapter 11. Method of Invariant Imbedding; 11.1 Introduction; 11.2 Concept of Invariant Imbedding; 11.3 Isothermal Packed-Bed Chemical Reactor; 11.4 Radiation Fins; 11.5 Solution of Falkner-Skan Equation; 11.6 Concluding Remarks; Problems; References; Chapter 12. Integral Equation Method Boundary value problems Numerical solutions. http://id.loc.gov/authorities/subjects/sh85016105 Problèmes aux limites Solutions numériques. MATHEMATICS Differential Equations General. bisacsh Boundary value problems Numerical solutions fast Problèmes aux limites Solutions numériques Informatique. ram Mathématiques de l'ingénieur. ram |
subject_GND | http://id.loc.gov/authorities/subjects/sh85016105 |
title | Computational methods in engineering boundary value problems / |
title_auth | Computational methods in engineering boundary value problems / |
title_exact_search | Computational methods in engineering boundary value problems / |
title_full | Computational methods in engineering boundary value problems / T.Y. Na. |
title_fullStr | Computational methods in engineering boundary value problems / T.Y. Na. |
title_full_unstemmed | Computational methods in engineering boundary value problems / T.Y. Na. |
title_short | Computational methods in engineering boundary value problems / |
title_sort | computational methods in engineering boundary value problems |
topic | Boundary value problems Numerical solutions. http://id.loc.gov/authorities/subjects/sh85016105 Problèmes aux limites Solutions numériques. MATHEMATICS Differential Equations General. bisacsh Boundary value problems Numerical solutions fast Problèmes aux limites Solutions numériques Informatique. ram Mathématiques de l'ingénieur. ram |
topic_facet | Boundary value problems Numerical solutions. Problèmes aux limites Solutions numériques. MATHEMATICS Differential Equations General. Boundary value problems Numerical solutions Problèmes aux limites Solutions numériques Informatique. Mathématiques de l'ingénieur. |
work_keys_str_mv | AT naty computationalmethodsinengineeringboundaryvalueproblems |