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569742431 |
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100325s1980 ne a ob 001 0 eng d |
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|a Szűcs, Ervin.
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|a Hasonlóság és modell.
|l English.
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|a Similitude and modelling /
|c by Ervin Szűcs ; [translated by B. Balkay].
|
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|a Amsterdam ;
|a New York :
|b Elsevier Scientific Pub. Co. ;
|a New York :
|b Distribution for the U.S.A. and Canada, Elsevier/North-Holland,
|c 1980.
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|a 1 online resource (335 pages) :
|b illustrations.
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|a text
|b txt
|2 rdacontent.
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|a computer
|b c
|2 rdamedia.
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|a online resource
|b cr
|2 rdacarrier.
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|a Fundamental studies in engineering ;
|v v. 2.
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504 |
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|a Includes bibliographical references (pages 328-331) and index.
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|3 Use copy
|f Restrictions unspecified
|2 star
|5 MiAaHDL.
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|a Electronic reproduction.
|b [S.l.] :
|c HathiTrust Digital Library,
|d 2010.
|5 MiAaHDL.
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|a 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.
|u http://purl.oclc.org/DLF/benchrepro0212
|5 MiAaHDL.
|
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1 |
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|a digitized
|c 2010
|h HathiTrust Digital Library
|l committed to preserve
|2 pda
|5 MiAaHDL.
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|a Print version record.
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|a Front Cover; Similitude and Modelling; Copyright Page; Table of Contents; PREFACE; A SIMPLE TECHNOLOGICAL PROBLEM; 1. Direct experiment; 2. Test run (the ""classical method""); 3. Experiment design; 4. Dimensional analysis; 5. Analytic solution; 6. Numerical solution; 7. Similitude modelling; 8. Analogy; Part I: THEORY; Chapter 1. The concept of similitude; Chapter 2. The similitude method; 2.1. Geometric similarity; 2.2. Similitude of phenomena; 2.3. Physical variables; 2.4. Dimensional homogeneity; 2.5. Criteria and invariants of similitude.
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|a Chapter 3. Physical fundamentals (transport theory)3.1. Extensities and intensities; 3.2. Balance equations (continuity equations); 3.3. A classification of technological processes; Chapter 4. Types of problems and their solution; 4.1. Types of problems; 4.2.Methods of solution; Chapter 5. Dimensional analysis; 5.1.The purpose of dimensional analysis; 5.2.The method of dimensional analysis; 5.3.Dimensional analysis and similitude; Chapter 6. Modelling; 6.1.The model concept; 6.2.The purpose of modelling; 6.3.Types of model; 6.4.Analogy.
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|a 6.5.""Degrees of freedom"" and the freedom of choosing model parametersChapter 7. Approximate and partial modelling; 7.1.Approximate similitude; 7.2.Two-dimensional approximation; 7.3.Partial modelling; 7.4.Conclusions; Chapter 8. Preparation and evaluation of experiments; 8.1.Preliminary analysis; 8.2.Measurement errors; 8.3.Design of experiments; Chapter 9. General types of similitude invariants; Part II: APPLICA TIONS; Chapter 10. Heat conduction and diffusion; 10.1. Fundamental equations; 10.2. Examples; Chapter 11. Fluid dynamics; 11.1. The fundamental equations; 11.2. Examples.
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|a Chapter 12. Elastic deformation12.1. The fundamental equations; 12.2. Examples; Chapter 13. Chemical reactions; 13.1. The fundamental equations; 13.2. Examples; In place of a postscript; Annotated bibliography; Author and subject index.
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|a Engineering models.
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|a Engineering models.
|2 fast.
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|a Technologie.
|2 gtt.
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1 |
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|a Wiskundige modellen.
|2 gtt.
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655 |
|
4 |
|a Electronic books.
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710 |
2 |
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|a ScienceDirect (Online service)
|
776 |
0 |
8 |
|i Print version:
|a Szűcs, Ervin.
|s Hasonlóság és modell. English.
|t Similitude and modelling.
|d Amsterdam ; New York : Elsevier Scientific Pub. Co. ; New York : Distribution for the U.S.A. and Canada, Elsevier/North-Holland, 1980
|w (DLC) 79010177
|w (OCoLC)4775754.
|
830 |
|
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|a Fundamental studies in engineering ;
|v 2.
|
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