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Wave oscillations in colloid oxyhydrates /

The importance of coherent chemistry, that is, the chemistry of periodic oscillatory processes, is increasing at a rapid rate in specific chemical disciplines. While being perfectly understood and highly developed in the fields of physical chemistry, chemical physics and biological chemistry, the pe...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Sukharev, I͡U. I. (I͡Uriĭ Ivanovich) (Autor)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Stafa-Zuerich, Switzerland ; Enfield, New Hampshire : Trans Tech Publications, [2010]
Colección:Materials science foundations ; v. 70-71.
Temas:
Acceso en línea:Texto completo

MARC

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100 1 |a Sukharev, I͡U. I.  |q (I͡Uriĭ Ivanovich),  |e author.  |1 https://id.oclc.org/worldcat/entity/E39PCjHdWwtVcX79m3gRrkDRBq 
245 1 0 |a Wave oscillations in colloid oxyhydrates /  |c Yuri I. Sucharev. 
264 1 |a Stafa-Zuerich, Switzerland ;  |a Enfield, New Hampshire :  |b Trans Tech Publications,  |c [2010] 
264 4 |c ©2010 
300 |a 1 online resource (507 pages) :  |b illustrations 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
490 1 |a Materials science foundations,  |x 1422-3597 ;  |v volumes 70-71 
504 |a Includes bibliographical references (pages 491-497). 
588 0 |a Print version record. 
505 0 |a Wave Oscillations in Colloid Oxyhydrates; Preface; Table of Contents; Summary; Table of Contents; 1. Periodical Pulsation Ionic Flow Properties of Oxo-Olic Complexes of Zirconium and Silicium; 1.1 Polymerization of the Hydrated Particles of Zirconium Oxyhydrate; 1.2 Emission-Wave Duality of Behavior of the Periodical Processes in the D- and F-Elements' Oxyhydrates. 1.3 Periodicity of the Efficient Diffusion Coefficients; 1.4 Quantization of the Pacemakers' Radiuses in Oxyhydrate Gels; 1.5 Bifurcation of the Pacemakers' Radius Doubling in Gel Oxyhydrate Systems 
505 8 |a 1.6 Extensional Dilatancy and Dimensions of the Pacemakers1.7 The Periodical State Isotherm; Abstract 1.1; 1.8 other Forms and Types of Oscillatory Motions in Oxyhydrate Systems; Abstract 1.2. Instrumental Support; 2. Behavior of Zirconium Oxyhydrate Gels Affected by the Spontaneous Pulsating Electrical Currents; 2.1 Theory; 2.2 Synchronization of the Periodical Oxyhydrate Systems; 2.3 Mathematical Modeling Problem; 2.4 Connections between Certain Self-Organization Parameters; 2.5 Conclusions 
505 8 |a 3. Zirconium Oxyhydrate Gels with Specifically Repeated Pulsation Macromolecules' Organizations: the Experimental Aspect3.1 Some of the TGM's Experimental Results; 3.2 Oxyhydrate Clusters Structuring in Non-Equilibrium Conditions; 3.3 the Way the Ageing Time Affects the Sorption Properties of the Zirconium Oxyhydrate; 3.4 Conclusions; 4. Modeling of the Oxyhydrate Gels' Shaping in an Active Excitable Medium. the Phase Transition Operator in Gels' Oxyhydrates (the Liesegang Operator) 
505 8 |a 4.1 Modeling of Autowave Shaping Processes in D- and F- Elements' Oxyhydrate Gels. the Simplest Mathematical Model of the Reaction-Diffusion Type4.2 Studies of a Modeled Oxyhydrate System; 4.3 Modeling of the Gel Shaping in an Active Excitable Medium by Means of the Molecular Dynamics Methods and the Monte Carlo Method; 4.4 Coulomb Diffusion Model; 5. Liesegang Operator; 4.5 Conclusions; 5.1 Liesegang Operator as a Reflection of the Gel Polymer Systems' Oscillatory Properties. Introduction of the Liesegang Operator; 5.2 Studying a Highly Nonlinear Diffusion Equation; Abstract 5.1 Theorems 
505 8 |a Abstract 5.2 Gel's Formation Stationary Problem5.3 Simplified Notation for the Liesegang Operator; 5.4 Hydrodynamic Approach; 5.5 Liesegang Operator and some Experimental Data; 5.6 Conclusions; 6. Liesegang Operator as a Consequence of the Ionic Molecular Motion inside the Lenard-Jones Potential; 6.1 Single-Particle Problem. Cluster's Motion in the Field of the Lenard-Jones Potential; 6.2 Cluster Motion in the Lenard-Jones Potential; 6.3 Experimental Detection of the Current Surges' Periodical Toroid Conformations in the Gel Oxyhydrate Systems, the Structural Self-Organization Stages 
520 |a The importance of coherent chemistry, that is, the chemistry of periodic oscillatory processes, is increasing at a rapid rate in specific chemical disciplines. While being perfectly understood and highly developed in the fields of physical chemistry, chemical physics and biological chemistry, the periodic developmental paradigm of processes and phenomena still remains poorly developed and misunderstood in classical inorganic chemistry and related branches, such as colloid chemistry. The probability is that we miss subtle colloid chemical phenomena that could be of utmost importance if taken in. 
590 |a ProQuest Ebook Central  |b Ebook Central Academic Complete 
650 0 |a Colloids. 
650 0 |a Metallic oxides. 
650 0 |a Hydroxides. 
650 0 |a Oscillating chemical reactions. 
650 0 |a Oscillations. 
650 2 |a Hydroxides 
650 6 |a Oxydes métalliques. 
650 6 |a Hydroxydes. 
650 6 |a Réactions chimiques périodiques. 
650 6 |a Oscillations. 
650 7 |a oscillation.  |2 aat 
650 7 |a Colloids  |2 fast 
650 7 |a Hydroxides  |2 fast 
650 7 |a Metallic oxides  |2 fast 
650 7 |a Oscillating chemical reactions  |2 fast 
650 7 |a Oscillations  |2 fast 
776 0 8 |i Print version:  |a Sukharev, I͡U. I.  |t Wave oscillations in colloid oxyhydrates.  |d Stafa-Zuerich, Switzerland : Trans Tech Publications, [2010]  |h xiv, 497 pages ; 25 cm  |k Materials science foundations ; v. 70-71  |x 1422-3597  |z 9780878491582  |w (DLC) 10906069  |w (OCoLC)677915576 
830 0 |a Materials science foundations ;  |v v. 70-71. 
856 4 0 |u https://ebookcentral.uam.elogim.com/lib/uam-ebooks/detail.action?docID=1872504  |z Texto completo 
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