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Titlebook: Applying Multiple-Reaction Stoichiometry to Chemical Reactor Modelling; Guillermo Fernando Barreto,Carlos Daniel Luzi Book 2024 The Editor

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期刊全称Applying Multiple-Reaction Stoichiometry to Chemical Reactor Modelling
影响因子2023Guillermo Fernando Barreto,Carlos Daniel Luzi
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发行地址Explores multiple-reaction stoichiometry in Chemical Reaction Engineering.Introduces a simplified procedure to reduce linear algebra requirements.Applies multiple-reaction stoichiometry in ideal and a
学科分类Synthesis Lectures on Chemical Engineering and Biochemical Engineering
图书封面Titlebook: Applying Multiple-Reaction Stoichiometry to Chemical Reactor Modelling;  Guillermo Fernando Barreto,Carlos Daniel Luzi Book 2024 The Editor
影响因子.This book delves into the realm of Chemical Reaction Engineering (CRE) by showcasing the practical application of multiple-reaction stoichiometry. The authors critically assess various approaches commonly taught in undergraduate CRE courses to establish the relationships between changes in chemical species. In doing so, they propose an innovative conceptual alternative that is specifically tailored for undergraduate lectures. The book carefully selects composition measures that effectively harness the power of stoichiometric relationships in elementary reacting systems and models, which are typically covered in these courses. Going beyond the basics, it also offers a profound discussion on the value of chemical stoichiometry for tackling more intricate reaction systems and detailed models. Moreover, the book presents a simplified procedure that minimizes the reliance on complex linear algebra techniques, making the book accessible to a wider range of readers..
Pindex Book 2024
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Guillermo Fernando Barreto,Carlos Daniel LuziExplores multiple-reaction stoichiometry in Chemical Reaction Engineering.Introduces a simplified procedure to reduce linear algebra requirements.Applies multiple-reaction stoichiometry in ideal and a
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Synthesis Lectures on Chemical Engineering and Biochemical Engineeringhttp://image.papertrans.cn/b/image/160250.jpg
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W. V. Maresch,P. Blümel,W. Schreyerd, such relationships are not explicitly available, and their number and the corresponding stoichiometric coefficients should be worked out from the defined reaction set. Literature procedures to such an end are reviewed in this chapter and shown that they involve the use of a number of concepts fro
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