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Multibasic Weak Organic Acids in the Electrolyte and the Electrochemical Recovery Patterns Disotsiatsiisa

By He Voices, Helen

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Book Id: WPLBN0003841974
Format Type: PDF eBook :
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Reproduction Date: 2015

Title: Multibasic Weak Organic Acids in the Electrolyte and the Electrochemical Recovery Patterns Disotsiatsiisa  
Author: He Voices, Helen
Volume:
Language: Georgian
Subject: Georgian, Inorganic Chemistry, Chemistry & Allied Sciences
Collections: National Library of Georgia
Historic
Publication Date:
2005
Publisher: Library of Georgia

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Voices, H. H. (2005). Multibasic Weak Organic Acids in the Electrolyte and the Electrochemical Recovery Patterns Disotsiatsiisa. Retrieved from http://worldebooklibrary.com/


Table of Contents
TOC: Foreword - Chapter I. Review of the Literature - I.1. Electrochemical Behavior of Weak Organic Acids - I.1.1. Multibasic Weak Organic Acids - I.1.2. Weak Monobasic Acids - I.2. Weak Organic Acids Electrolytic Dissociation Characteristics - I.2.1. Multibasic Weak Organic Acids - I.2.2. Weak Monobasic Acids - I.3. Working in Organic Solvents Used in the Basic Physical and Chemical Properties - Chapter Ii. Research Methods - Chapter Iii. Weak Organic Acids Multibasic Regularities of Electrolytic Dissociation - Iii.1. Features of Electrolytic Dissociation of Weak Dibasic Organic Acids - Iii.2. Weak Organic Acids Metpudziani Three- and Electrolytic Dissociation Characteristics - Iii.3. General Equations For the Dissociation of Weak Organic Acids Multibasic - Iii.4. Dissociation Constants and thermodynamic Parameters Imaginative Comparison. the Degree of Dissociation, and Reconstitution of Weak Organic Acids Multibasic Case - Chapter Iv. Multibasic Weak Organic Acids Electrochemical Recovery - Iv.1. Electrochemical Hydrogenation of Unsaturated Dikarbonmzhavebis - Iv.1.1. Maleinis Acid Electrochemical Hydrogenation - Iv.1.2. Pumaris Acid Electrochemical Hydrogenation - Iv.1.3. Mezakonis Acid Electrochemical Hydrogenation - Iv.1.4. Itakonis Acid Electrochemical Hydrogenation - Iv.1.5. Atsetilendikarbonmzhavas Electrochemical Hydrogenation - Iv.1.6. Electrochemical Hydrogenation of Unsaturated Dikarbonmzhavebis Structural Peculiarities of the Impact of their Work - Iv.2. Saturated Dikarbonmzhavebis Electrochemical Behavior - Iv.3. Hidroksikarbonmzhavebis Electrochemical Behavior - Iv.4. Benzolpolikarbonmzhavebis Electrochemical Behavior - Chapter V. Dissociation Constants of Weak Acids Voltamperometruli Data Defining Some Points - V.1. Halogenacetic Electrochemical Behavior of Solid Electrodes - V.1.1. Klordzmarmzhavebis Electrochemical Behavior of Solid Electrodes - V.1.2. Brodzmarmzhavas Electrochemical Behavior of Solid Electrodes - V.1.3. Ioddzmarmzhavas Electrochemical Behavior of Solid Electrodes - V.1.4. Halogen Nature, Its Atomic Number, Nature and Environmental Impact Halogenacetic Elektrodisa Dehalogenirebis Process Speeds - V.2. Saturated Monokarbonmzhavebis Electrochemical Behavior - V.3. Electrochemical Behavior of Nitric Acid - V.4. Molibdenisa and Electrochemical Behavior of Tungsten Acid - V.5. Dissociation Constants of Weak Acids To Determine If the Data Voltamperometruli on Some Points - V.5.1. Aqueous Solution - V.5.2. Mixed Environment - Conclusions - Quoted in the Literature.

 

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