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Titlebook: Integration of Fundamental Polymer Science and Technology; L. A. Kleintjens,P. J. Lemstra Book 1986 Elsevier Applied Science Publishers Lt

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書目名稱Integration of Fundamental Polymer Science and Technology
編輯L. A. Kleintjens,P. J. Lemstra
視頻videohttp://file.papertrans.cn/469/468847/468847.mp4
圖書封面Titlebook: Integration of Fundamental Polymer Science and Technology;  L. A. Kleintjens,P. J. Lemstra Book 1986 Elsevier Applied Science Publishers Lt
描述‘Integration of Fundamental Polymer Science and Technology‘ is a theme that admits of countless variations. It is admirably exemplified by the scientific work of R. Koningsveld and C. G. Vonk, in whose honour this meeting was organized. The interplay between ‘pure‘ and ‘a(chǎn)pplied‘ is of course not confined to any particular subdiscipline of chemistry or physics (witness the name IUPAC and IUPAP) but is perhaps rarely so intimate and inevitable as in the macromolecular area. The historical sequence may vary: when the first synthetic dye was prepared by Perkin, considerable knowledge of the molecular structure was also at hand; but polymeric materials, both natural and synthetic, had achieved a fair practical technology long before their macromolecular character was appreciated or established. Such historical records have sometimes led to differences of opinion as to whether the pure or the applied arm should deserve the first place of honour. The Harvard physiologist Henderson, as quoted in Walter Moore‘s Physical Chemistry, averred that ‘Science owes more to the steam engine than the steam engine owes to Science‘. On the other hand, few would dispute the proposition that nuclear powe
出版日期Book 1986
關(guān)鍵詞diagram; elasticity; energy; interaction; modeling; network; organization; statistics; technology
版次1
doihttps://doi.org/10.1007/978-94-009-4185-4
isbn_softcover978-94-010-8359-1
isbn_ebook978-94-009-4185-4
copyrightElsevier Applied Science Publishers Ltd 1986
The information of publication is updating

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Statistics of Surface Contact Distributionsisticated treatment of Guggenheim is not applicable to solutions of folded macromolecules with intramolecular contacts. In this paper a complete and consistent treatment is proposed, based upon Guggenheim’ equations on one hand and on a model of molecules with intramolecular contacts proposed by the
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Application of the Mean-Field Lattice-Gas Model to Partially-Miscible Polymer Systemsea. The model further introduces free volume in the polymer and thus can deal with upper- and lower critical demixing and with volume and pressure variations of the system..Expressions for the Helmholtz free energy of mixing, equation of state, spinodal and critical condition were derived and do not
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Liquid-Liquid Phase Separation in Mixtures of Statistical Copolymers, in order to investigate liquid-liquid phase separation in mixtures containing statistical copolymers. Limits of thermodynamic stability (spinodals) and critical points have been calculated and the results prove to agree in a qualitative manner with the scarce experimental data available. The Pulse
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Flow Birefringence of Associations of Polymers in Solutione to one associations of 2 macromolecules according to the mass action law, the extinction angle, the birefringence and the average extension ratio of flexible macromolecules in solution have been calculated as a function of the concentration and the shear rate. It is shown that the associations dis
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A Photon Correlation Spectroscopy Investigation of Precipitation Polymerization in Liquid Vinyl Chlorecipitating from liquid vinyl chloride during the early stages of bulk polymerization. The magnitude of the interparticle forces are estimated, and their nature and role in colloidal stability are discussed.
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