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Handbook of Research for Mechanical Engineering, Volume 1: Fluid Mechanics and Heat Transfer

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This book presents the performances of the computational method for system failure prediction by numerical analysis and nonlinear dynamic models. It includes the research of authors on the development of optimal mathematical models, and presents problems by means of theoretical and experimental research. The authors use modern computer technology and mathematical methods f This book presents the performances of the computational method for system failure prediction by numerical analysis and nonlinear dynamic models. It includes the research of authors on the development of optimal mathematical models, and presents problems by means of theoretical and experimental research. The authors use modern computer technology and mathematical methods for analysis of nonlinear dynamic processes. This book provides a wide coverage of those technologies applicable to both fluid mechanics and heat transfer problems. It also discusses methods and technologies that are a combination of physical, mechanical, and thermal techniques.


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This book presents the performances of the computational method for system failure prediction by numerical analysis and nonlinear dynamic models. It includes the research of authors on the development of optimal mathematical models, and presents problems by means of theoretical and experimental research. The authors use modern computer technology and mathematical methods f This book presents the performances of the computational method for system failure prediction by numerical analysis and nonlinear dynamic models. It includes the research of authors on the development of optimal mathematical models, and presents problems by means of theoretical and experimental research. The authors use modern computer technology and mathematical methods for analysis of nonlinear dynamic processes. This book provides a wide coverage of those technologies applicable to both fluid mechanics and heat transfer problems. It also discusses methods and technologies that are a combination of physical, mechanical, and thermal techniques.

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