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Titlebook: Elementary Mechanics Using Matlab; A Modern Course Comb Anders Malthe-S?renssen Textbook 2015 Springer Nature Switzerland AG 2015 Computati

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書(shū)目名稱(chēng)Elementary Mechanics Using Matlab
副標(biāo)題A Modern Course Comb
編輯Anders Malthe-S?renssen
視頻videohttp://file.papertrans.cn/308/307394/307394.mp4
概述Novel approach combining computational and analytical methods.Contains many figures and plots.Each chapter comes with exercises and solutions.Includes supplementary material:
叢書(shū)名稱(chēng)Undergraduate Lecture Notes in Physics
圖書(shū)封面Titlebook: Elementary Mechanics Using Matlab; A Modern Course Comb Anders Malthe-S?renssen Textbook 2015 Springer Nature Switzerland AG 2015 Computati
描述.This book – specifically developed as a novel textbook on elementary classical mechanics – shows how analytical and numerical methods can be seamlessly integrated to solve physics problems. This approach allows students to solve more advanced and applied problems at an earlier stage and equips them to deal with real-world examples well beyond the typical special cases treated in standard textbooks..Another advantage of this approach is that students are brought closer to the way physics is actually discovered and applied, as they are introduced right from the start to a more exploratory way of understanding phenomena and of developing their physical concepts..While not a requirement, it is advantageous for the reader to have some prior knowledge of scientific programming with a scripting-type language. This edition of the book uses Matlab, and a chapter devoted to the basics of scientific programming with Matlab is included. A parallel edition using Python instead of Matlab is also available..Last but not least, each chapter is accompanied by an extensive set of course-tested exercises and solutions..
出版日期Textbook 2015
關(guān)鍵詞Computational physics; Forces, momentum and motion; Introductory mechanics; Mechanics textbook; Newtonia
版次1
doihttps://doi.org/10.1007/978-3-319-19587-2
isbn_softcover978-3-319-38673-7
isbn_ebook978-3-319-19587-2Series ISSN 2192-4791 Series E-ISSN 2192-4805
issn_series 2192-4791
copyrightSpringer Nature Switzerland AG 2015
The information of publication is updating

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Motion in One Dimension,cluding aspects such as velocity and acceleration, is explained starting from a numerical example—Usain Bolt’s race in the Beijing Olympics in 2008. Then we introduce the basic methods to determine the motion of an object given its acceleration—through analytical integration, the solution of differe
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Forces in One Dimension,need to: (i) Find what forces are acting on an object; (ii) Introduce quantitative models for the forces—we need numbers for the forces in order to have numbers for the acceleration; (iii) Determine the acceleration from the forces using Newton’s second law of motion; (iv) “Solve” the motion from th
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Energy,e. Based on the examples, we introduce the concept of potential energy for a position-dependent force to complement the kinetic energy. For objects subject only to position-dependent forces, the sum of the potential and kinetic energy is constant. We can therefore interpret a motion as a transfer of
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