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Titlebook: Engineering Mechanics 2; Mechanics of Materia Dietmar Gross,Werner Hauger,Javier Bonet Textbook Jun 20111st edition Springer-Verlag GmbH Ge

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書目名稱Engineering Mechanics 2
副標(biāo)題Mechanics of Materia
編輯Dietmar Gross,Werner Hauger,Javier Bonet
視頻videohttp://file.papertrans.cn/311/310859/310859.mp4
概述Bestseller in engineering mechanics education in German-speaking countries This bestselling German textbook, now available in English, presents undergraduates in mechanical and civil engineering with
圖書封面Titlebook: Engineering Mechanics 2; Mechanics of Materia Dietmar Gross,Werner Hauger,Javier Bonet Textbook Jun 20111st edition Springer-Verlag GmbH Ge
描述.Mechanics of Materials. is the second volume of a three-volume textbook on Engineering Mechanics. It was written with the intention of presenting to engineering students the basic concepts and principles of mechanics in as simple a form as the subject allows. A second objective of this book is to guide the students in their efforts to solve problems in mechanics in a systematic manner. The simple approach to the theory of mechanics allows for the different educational backgrounds of the students. Another aim of this book is to provide engineering students as well as practising engineers with a basis to help them bridge the gaps between undergraduate studies, advanced courses on mechanics and practical engineering problems.?.?The book contains numerous examples and their solutions. Emphasis is placed upon student participation in solving the problems. The contents of the book correspond to the topics normally covered in courses on basic engineering mechanics at universities and colleges..Volume 1 deals with Statics; Volume 3 contains Particle Dynamics and Rigid Body Dynamics..
出版日期Textbook Jun 20111st edition
關(guān)鍵詞Hooke‘s law; bending; buckling; compatibility conditions; deflection curve; elastic body; energy methods; k
版次1
doihttps://doi.org/10.1007/978-3-642-12886-8
copyrightSpringer-Verlag GmbH Germany, part of Springer Nature 2011
The information of publication is updating

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,Strain, Hooke’s Law,the plane and the spatial cases. For this purpose, we introduce the displacement vector and the ., the latter describing length and angle changes. In addition, we will extend the already known Hooke’s law from the uniaxial case to the two and three-dimensional cases. Finally, we will discuss the so-
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Energy Methods, this chapter. For example, it will be shown how the displacement of an arbitrary point of a structure can be calculated using energy methods. These methods also enable us to calculate redundant support reactions of statically indeterminate systems in a simple way. The students will learn how to app
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,Strain, Hooke’s Law,called strength hypotheses in order to assess the exertion of the material under multiaxial stress. The students shall learn how to calculate the stresses from the strains or displacements and vice versa.
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