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Applied Cartesian Tensors For Aerospace Simulations David M Henderson

  • SKU: BELL-4699554
Applied Cartesian Tensors For Aerospace Simulations David M Henderson
$ 31.00 $ 45.00 (-31%)

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Applied Cartesian Tensors For Aerospace Simulations David M Henderson instant download after payment.

Publisher: American Institute of Aeronautics and Astronautics
File Extension: PDF
File size: 9.03 MB
Pages: 229
Author: David M Henderson
ISBN: 9781563477935, 1563477939
Language: English
Year: 2006

Product desciption

Applied Cartesian Tensors For Aerospace Simulations David M Henderson by David M Henderson 9781563477935, 1563477939 instant download after payment.

Annotation This book presents a new approach to aerospace flight vehicle equations of motion based on a unifying tensor-based formulation. Covering the fundamental concepts of the geometry of space, applied mechanics, and aerospace engineering analysis, the author builds on these flight mechanics essentials to describe the motion of aircraft and space vehicles. Concepts are amplified by the presentation of aerospace applications in use today and that are tied directly to the material presented. The basic concepts of Cartesian analysis are developed along with the application of tensor notation to engineering analysis. Tensor notation (the Einstein summation convention) is introduced to give the reader exact component equations and to demonstrate its value in multi-variable analysis. By applying the summation notation in the analysis, the author believes that a more complete description of the dynamic problems of aerospace vehicle motion can be offered, and that this approach is already finding applications in aerospace engineering technologies
Abstract: Annotation This book presents a new approach to aerospace flight vehicle equations of motion based on a unifying tensor-based formulation. Covering the fundamental concepts of the geometry of space, applied mechanics, and aerospace engineering analysis, the author builds on these flight mechanics essentials to describe the motion of aircraft and space vehicles. Concepts are amplified by the presentation of aerospace applications in use today and that are tied directly to the material presented. The basic concepts of Cartesian analysis are developed along with the application of tensor notation to engineering analysis. Tensor notation (the Einstein summation convention) is introduced to give the reader exact component equations and to demonstrate its value in multi-variable analysis. By applying the summation notation in the analysis, the author believes that a more complete description of the dynamic problems of aerospace vehicle motion can be offered, and that this approach is already finding applications in aerospace engineering technologies

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