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Titlebook: Analytical Imaging Techniques for Soft Matter Characterization; Vikas Mittal,Nadejda B. Matsko Book 2012 Springer-Verlag Berlin Heidelberg

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期刊全稱Analytical Imaging Techniques for Soft Matter Characterization
影響因子2023Vikas Mittal,Nadejda B. Matsko
視頻videohttp://file.papertrans.cn/157/156606/156606.mp4
發(fā)行地址Non-conventional microscopy book, focusing on biological and polymer matters.Useful for different scientific communities from microscopists, to biologists.Presents new advances in microscopy technique
學科分類Engineering Materials
圖書封面Titlebook: Analytical Imaging Techniques for Soft Matter Characterization;  Vikas Mittal,Nadejda B. Matsko Book 2012 Springer-Verlag Berlin Heidelberg
影響因子The book aims to describe the microscopic characterization of the soft matter in the light of new advances acquired in the science of microscopy techniques like AFM; SEM; TEM etc. It does not focus on the traditional information on the microscopy methods as well as systems already present in different books, but intends to answer more fundamental questions associated with commercially important systems by using new advances in microscopy. Such questions are generally not answered by other techniques. The contents of the book also reflect this as the chapters are not based on describing only material systems, but are based on the answering the problems or questions arising in their characterization. Both qualitative as well as quantitative analysis using such microscopic techniques is discussed.? Moreover, efforts have been made to provide a broader reach as discussions on both polymers as well as biological matter have been included as different sections. Such a text with comprehensive overview of the various characterization possibilities using microscopy methods can serve as a valuable reference for microscopy experts as well as non-experts alike
Pindex Book 2012
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Macromolecular Distributions in Biological Organisms In Vivomic events in living cells by fluorescent light microscopy. However, the ultimate resolution of the optical microscopy is limited by a few hundred nanometres, which is by far not sufficient for the ultrastructural investigation at the level of individual macromolecule. Till now, TEM of ultrathin sec
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Cellular Dynamics (Protein Transport, Mineralization In vivo)ses take place at different length scales and are strongly influenced by each other. In order to circumvent the complexity and the dynamics of biological systems, so far many of the processes have been studied mostly . through the use of two-dimensional molecular assemblies as model systems. Such an
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Surface and Volume Characterizationtheir applications. The control on the morphology and its tuning according to the requirement is another characteristic which is generally optimized by microscopic characterizations. These analyses can lead to vital information like surface smoothness/hardness (which in turn affects the wetting and
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