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Titlebook: Analysis of Kinetic Data; E. S. Swinbourne Book 1971 E. S. Swinbourne 1971 experiment.information.kinetics.numerical method

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發(fā)表于 2025-3-21 16:31:36 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Analysis of Kinetic Data
影響因子2023E. S. Swinbourne
視頻videohttp://file.papertrans.cn/157/156385/156385.mp4
學(xué)科分類Studies in Modern Chemistry
圖書(shū)封面Titlebook: Analysis of Kinetic Data;  E. S. Swinbourne Book 1971 E. S. Swinbourne 1971 experiment.information.kinetics.numerical method
影響因子Data analysis is important from two points of view: first, it enables a large mass of information to be reduced to a reasonable compass, and second, it assists in the interpretation of experimental results against some framework of theory. The purpose of this text is to provide a practical introduction to numerical methods of data analysis which have applica- tion in the field of experimental chemical kinetics. Recognizing that kinetic data have many features in common with data derived from other sources, I have considered it appropriate to discuss a selection of general methods of data analysis in the early chapters of the text. It is the author‘s experience that an outline of these methods is not always easy to locate in summary form, and that their usefulness is often not sufficiently appreciated. Inclusion of these methods in the early chapters has been aimed at simplifying discussion in the later chapters which are more particularly concerned with kinetic systems. By the provision of a number of worked examples and problems, it is hoped that the reader will develop a feeling for the range of methods available and for their relative merits. Throughout the text, the mathematica
Pindex Book 1971
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978-1-4684-7687-3E. S. Swinbourne 1971
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Estimation of rate coefficients, procedures adopted for its study. Reliable results are usually the outcome of sensible planning of experiments, and, in this respect material balance graphs, such as those outlined in Chapter 3, can provide valuable guidance to methods which are likely to prove successful.
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https://doi.org/10.1007/978-1-4684-0952-9 of the variables in the system. Attempts to represent these associations quantitatively assist in the classification of the behavioural pattern of the system, and may lead to an interpretation of this behaviour in terms of a mathematical or physical model. In the case of a chemical kinetic system t
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Stewart Wolf,Beatrice Bishop Berletime. Of prime importance is the change in the chemical composition of the system with time, but, in a wider sense, other types of motion may also be involved, such as the flow of matter into or out of the system, or the flow of heat through the system. Chemical engineering practice frequently deman
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