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Titlebook: Similitude and Approximation Theory; Stephen J. Kline Book 1986 Springer-Verlag New York Inc. 1986 calculus.controlling.correlation.develo

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书目名称Similitude and Approximation Theory
编辑Stephen J. Kline
视频video
图书封面Titlebook: Similitude and Approximation Theory;  Stephen J. Kline Book 1986 Springer-Verlag New York Inc. 1986 calculus.controlling.correlation.develo
描述There are a number of reasons for producing this edition of Simili­ tude and Approximation Theory. The methodologies developed remain important in many areas of technical work. No other equivalent work has appeared in the two decades since the publication of the first edition. The materials still provide an important increase in understanding for first-year graduate students in engineering and for workers in research and development at an equivalent level. In addition, consulting experiences in a number of industries indi­ cate that many technical workers in research and development lack knowledge of the methodologies given in this work. This lack makes the work of planning and controlling computations and experiments less efficient in many cases. It also implies that the coordinated grasp of the phenomena (which is so critical to effective research and develop­ ment work) will be less than it might be. The materials covered in this work focus on the relationship between mathematical models and the physical reality such models are intended v vi Preface to the Springer Edition to portray. Understanding these relationships remains a key factor in simplifying and generalizing correlat
出版日期Book 1986
关键词calculus; controlling; correlation; development; engine; material; materials; mathematics; model; physics; pla
版次1
doihttps://doi.org/10.1007/978-3-642-61638-9
isbn_softcover978-3-642-64894-6
isbn_ebook978-3-642-61638-9
copyrightSpringer-Verlag New York Inc. 1986
The information of publication is updating

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Introduction,cussion, a fractional analysis is any procedure for obtaining some information about the answer to a problem in the absence of methods or time for finding a complete solution. This fractional information may be based on anything from a list of a few of the pertinent parameters to an appropriate gove
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Method of Similitude and Introduction to Fractional Analysis of Overall Equations,f similarity combined with the formation of force ratios. During the twentieth century this method seems to have lost favor and has been replaced almost entirely by the use of the pi theorem except in the work of a few authors in fluid mechanics (see, for example, Vennard,. Chap. 7). In fact, the me
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Summary and Comparison of Methods, the method of similitude, and use of the governing equations. The last method can be divided into at least two parts: use of overall governing equations and use of detailed governing differential equations with boundary conditions. In both instances, either the complete equations or only part of th
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ant in many areas of technical work. No other equivalent work has appeared in the two decades since the publication of the first edition. The materials still provide an important increase in understanding for first-year graduate students in engineering and for workers in research and development at
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Book 1986han it might be. The materials covered in this work focus on the relationship between mathematical models and the physical reality such models are intended v vi Preface to the Springer Edition to portray. Understanding these relationships remains a key factor in simplifying and generalizing correlat
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