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Titlebook: Mathematical Theory of Electrophoresis; V. G. Babskii,M. Yu. Zhukov,V. I. Yudovich Book 1989 Consultants Bureau, New York 1989 cells.class

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書目名稱Mathematical Theory of Electrophoresis
編輯V. G. Babskii,M. Yu. Zhukov,V. I. Yudovich
視頻videohttp://file.papertrans.cn/627/626645/626645.mp4
圖書封面Titlebook: Mathematical Theory of Electrophoresis;  V. G. Babskii,M. Yu. Zhukov,V. I. Yudovich Book 1989 Consultants Bureau, New York 1989 cells.class
描述The development of contemporary molecular biology with its growing tendency toward in-depth study of the mechanisms of biological processes, structure, function, and identification of biopolymers requires application of accurate physicochemical methods. Electrophoresis occupies a key position among such methods. A wide range of phenomena fall un- der the designation of electrophoresis in the literature at the present time. One common characteristic of all such phenomena is transport by an elec- tric field of a substance whose particles take on a net charge as a result of interaction with the solution. The most important mechanisms for charge generation are dissociation of the substance into ions in solution and for- mation of electrical double layers with uncompensated charges on particles of dispersed medium in the liquid. As applied to the problem of separation, purification, and analysis of cells, cell organelles, and biopolymers, there is a broad classification of electrophoretic methods primarily according to the methodological charac- teristics of the process, the types of supporting media, etc. An extensive literature describes the use of these methods for the investigation
出版日期Book 1989
關(guān)鍵詞cells; classification; entropy; mobility; polymer
版次1
doihttps://doi.org/10.1007/978-1-4613-0879-9
isbn_softcover978-1-4612-8225-9
isbn_ebook978-1-4613-0879-9
copyrightConsultants Bureau, New York 1989
The information of publication is updating

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Isoelectric Focusing in Infinite-Component Mixtures. Creation of a pH Gradient,This chapter is devoted to isoelectric focusing in natural pH gradients created using carrier ampholytes. The idea of natural pH gradients as an isoelectric focusing method itself is attributed to Svensson (Rilbe) (see Chapter III, and also [77, 91–93].
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Basic Equations,harges under the influence of the field. A great many such media are known, but the nature of the free charge carriers and physical mechanisms of formation are quite diverse. In metals, the electrical charge is transported by free electrons; in semiconductors, the free charge carriers are electrons,
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Electrophoresis Methods and Their Mathematical Models, or a specific form of electrophoretic chamber [33, 37, 46, 48, 57]. However, the existing nomenclature reflects preferentially the viewpoint of experimenters and instrumentation manufacturers. If we consider all types of electrophoresis from the standpoint of their physicomathematical nature and ad
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Isotachophoresis, or several common ions upon dissociation. A typical example is a solution of several salts of the same acid or the same base. Under certain conditions in an applied electric field the solution is divided into pure zones of individual ions, and the common ion (the so-called counterion) is present ev
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Model of Zone Electrophoresis, As has been indicated in Chapter III, various artificial density gradients, supporting media, etc., have been used with the goal of stabilizing the process relative to gravitational convection. Free liquid-zone electrophoresis in practice has not been applied in pure form [33, 57, 63]. Nevertheless
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