Godel, Escher, Bach
معرفی کتاب «Godel, Escher, Bach» نوشتهٔ Singiresu S Rao، Philip Griffin و Douglas Hofstadter، منتشرشده توسط نشر 1999 در سال 1999. این کتاب در فرمت azw3، زبان انگلیسی ارائه شده است.
For courses in vibration engineering. Building Knowledge: Concepts of Vibration in Engineering. Retaining the style of previous editions, this Sixth SI Edition of Mechanical Vibrations effectively presents theory, computational aspects, and applications of vibration, introducing undergraduate engineering students to the subject of vibration engineering in as simple a manner as possible. Emphasizing computer techniques of analysis, Mechanical Vibrations thoroughly explains the fundamentals of vibration analysis, building on the understanding achieved by students in previous undergraduate mechanics courses. Related concepts are discussed, and real-life applications, examples, problems, and illustrations related to vibration analysis enhance comprehension of all concepts and material. In the Sixth SI Edition, several additions and revisions have been made—including new examples, problems, and illustrations—with the goal of making coverage of concepts both more comprehensive and easier to follow. The full text downloaded to your computer With eBooks you can: search for key concepts, words and phrases make highlights and notes as you study share your notes with friends eBooks are downloaded to your computer and accessible either offline through the Bookshelf (available as a free download), available online and also via the iPad and Android apps. Upon purchase, you'll gain instant access to this eBook. Time limit The eBooks products do not have an expiry date. You will continue to access your digital ebook products whilst you have your Bookshelf installed. For courses in vibration engineering. Building Knowledge: Concepts of Vibration in Engineering Retaining the style of previous editions, this Sixth Edition of Mechanical Vibrations effectively presents theory, computational aspects, and applications of vibration, introducing undergraduate engineering students to the subject of vibration engineering in as simple a manner as possible. Emphasising computer techniques of analysis, Mechanical Vibrations thoroughly explains the fundamentals of vibration analysis, building on the understanding achieved by students in previous undergraduate mechanics courses. Related concepts are discussed, and real-life applications, examples, problems, and illustrations related to vibration analysis enhance comprehension of all concepts and material. In the Sixth Edition, several additions and revisions have been made—including new examples, problems, and illustrations—with the goal of making coverage of concepts both more comprehensive and easier to follow. Retaining the style of previous editions, this sixth SI edition of Mechanical Vibrations effectively presents theory, computational aspects, and applications of vibration, introducing undergraduate engineering students to the subject of vibration engineering in as simple a manner as possible. Emphasizing computer techniques of analysis, Mechanical Vibrations thoroughly explains the fundamentals of vibration analysis, building on the understanding achieved by students in previous undergraduate mechanics courses. Related concepts are discussed, and real-life applications, examples, problems, and illustrations related to vibration analysis enhance comprehension of all concepts and material. In the sixth SI edition, several additions and revisions have been made - including new examples, problems, and illustrations - with the goal of making coverage of concepts both more comprehensive and easier to follow 1. Fundamentals of Vibration 2. Free Vibration of Single-Degree-of-Freedom Systems 3. Harmonically Excited Vibration 4. Vibration Under General Forcing Conditions 5. Two-Degree-of-Freedom Systems 6. Multidegree-of-Freedom Systems 7. Determination of Natural Frequencies and Mode Shapes 8. Continuous Systems 9. Vibration Control 10. Vibration Measurement and Applications 11. Numerical Integration Methods in Vibration Analysis 12. Finite Element Method 13. Nonlinear Vibration 14. Random Vibration
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