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Titlebook: Bioelectrochemistry I; Biological Redox Rea G. Milazzo,Martin Blank Book 1983 Springer Science+Business Media New York 1983 biophysics.chem

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發(fā)表于 2025-3-21 18:54:32 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Bioelectrochemistry I
期刊簡(jiǎn)稱Biological Redox Rea
影響因子2023G. Milazzo,Martin Blank
視頻videohttp://file.papertrans.cn/187/186886/186886.mp4
學(xué)科分類Studies in Public Choice
圖書封面Titlebook: Bioelectrochemistry I; Biological Redox Rea G. Milazzo,Martin Blank Book 1983 Springer Science+Business Media New York 1983 biophysics.chem
影響因子This is the first course devoted to bioelectrochemistry held within the frame- work of the International School of Biophysics. Although this branch of scientific research is already about two centuries old, as a truly independent one it has been in a stage of lively development since only a few decades ago and this is why a first course at the E. Majorana Center was devoted to it. Since bioelectrochemistry consists of many sub-fields, it is impossible to include, even superficially, all of them in a short course lasting just a week, and therefore the chapter of redox-reactions was chosen for this first course as being most general in character. But even restricting the course to redox-reactions, only a few subjects could be included and therefore the choice among them was made considering the most general guidelines that could serve as a basis for the further study of individual problems. In this way we hope to give a sound basis to the study of and to stimulate further interest in this branch of both biological and physical chemistry. This dual interdisciplinary approach is, on the other hand, unavoidable if a more rigorous and logical attack on biological problems in living bodie
Pindex Book 1983
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書目名稱Bioelectrochemistry I影響因子(影響力)




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Energetics of Biological Redox Reactions,d various coenzyme molecules, must interact with each other in a ordered and controlled fashion, in such a way to maintain the overall velocity of metabolism in steady state conditions. In a single phase situation, as is the case for soluble redox enzymes in the cytoplasm, the redox coupling between
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發(fā)表于 2025-3-22 01:15:00 | 只看該作者
Applications of Advanced Voltammetric Methods in Bioelectrochemistry,y. The applications of voltammetry include the analysis and physicochemical characterization of biologically significant organic substances and biopolymers, studies on the fate and metabolism of drugs, on the interactions and effects that enzymes, mutagenic chemicals, ionizing radiation and toxic me
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Transmembrane Potential and Redox Reactions from a Physiological Point of View,he unique point of view of physiology is the emphasis on biological ., and the goal of physiologists is to explain processes (., transport across membranes and excitation) in terms of the laws of physics and chemistry. The information that is obtained by the other disciplines about morphology or che
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The Mitochondrial Respiratory Chain,hniques which have been utilized in studying the mitochondrial respiratory chain and our current ideas concerning the electrochemical behavior of oxidative phosphorylation. There are several important thermodynamic parameters which the experimentalyst needs to measure in order to attempt to describe
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Electrochemical Methodologies in Biomedical Applications,osis and therapy. The bioenergetics and energy requirements of living organisms have been treated thoroughly and impressively in other lectures of this course. Hence, it is evident that the metabolic equilibrium is maintained by a complex variety of biological oxidation and reduction reactions contr
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The Mitochondrial Respiratory Chain,hniques which have been utilized in studying the mitochondrial respiratory chain and our current ideas concerning the electrochemical behavior of oxidative phosphorylation. There are several important thermodynamic parameters which the experimentalyst needs to measure in order to attempt to describe an oxidation-reduction system.
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Besucherorientiertes MuseumsmarketingThe physicochemical explanation of any kind of reaction occurring in aqueous media and the prevision of the conditions determining this occurrence must always be developed in three successive steps:
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