Differential Transformation Method for Mechanical Engineering Problems

This book PDF is perfect for those who love Computers genre, written by Mohammad Hatami and published by Academic Press which was released on 17 November 2016 with total hardcover pages 422. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related Differential Transformation Method for Mechanical Engineering Problems books below.

Differential Transformation Method for Mechanical Engineering Problems
Author : Mohammad Hatami
File Size : 44,9 Mb
Publisher : Academic Press
Language : English
Release Date : 17 November 2016
ISBN : 9780128053409
Pages : 422 pages
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Differential Transformation Method for Mechanical Engineering Problems by Mohammad Hatami Book PDF Summary

Differential Transformation Method for Mechanical Engineering Problems focuses on applying DTM to a range of mechanical engineering applications. The authors modify traditional DTM to produce two additional methods, multi-step differential transformation method (Ms-DTM) and the hybrid differential transformation method and finite difference method (Hybrid DTM-FDM). It is then demonstrated how these can be a suitable series solution for engineering and physical problems, such as the motion of a spherical particle, nanofluid flow and heat transfer, and micropolar fluid flow and heat transfer. Presents the differential transformation method and why it holds an advantage over higher-order Taylor series methods Includes a full mathematical introduction to DTM, Ms-DTM, and Hybrid DTM Covers the use of these methods for solving a range of problems in areas such as nanofluid flow, heat transfer, and motion of a spherical particle in different conditions Provides numerous examples and exercises which will help the reader fully grasp the practical applications of these new methods

Differential Transformation Method for Mechanical Engineering Problems

Differential Transformation Method for Mechanical Engineering Problems focuses on applying DTM to a range of mechanical engineering applications. The authors modify traditional DTM to produce two additional methods, multi-step differential transformation method (Ms-DTM) and the hybrid differential transformation method and finite difference method (Hybrid DTM-FDM). It is then demonstrated how

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