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Determination of dynamics

The computer simulation of models for condensed matter systems has become an important investigative tool in both fundamental and engineering research [149-153] for reviews on MC studies of surface phenomena see Refs. 154, 155. For the reahstic modeling of real materials at low temperatures it is essential to take quantum degrees of freedom into account. Although much progress has been achieved on this topic [156-166], computer simulation of quantum systems still lags behind the development in the field of classical systems. This holds particularly for the determination of dynamical information, which was not possible until recently [167-176]. [Pg.84]

Ramaker, B.L., C.L. Smith and P.W. Murrill, "Determination of Dynamic Model Parameters Using Quasilinearization", Ind. Eng. Chem. Fundam., 9, 28 (1970). [Pg.399]

Global characterisation of the nucleus and determination of dynamic properties, surface morphology and composition. [Pg.189]

On-line Determination of Dynamic Surface Tension by the Bubble-pressure Method... [Pg.102]

Solid-state Determination of Dynamic studies on post mortem... [Pg.193]

ISO 6721, Parts 1-10, Plastics - Determination of dynamic mechanical properties, 1994-2001. [Pg.93]

ISO 3597-2 2003 Textile-glass-reinforced plastics - Determination of mechanical properties on rods made of roving-reinforced resin - Part 2 Determination of flexural strength ISO 5893 2002 Rubber and plastics test equipment - Tensile, flexural and compression types (constant rate of traverse) - Specification ISO 6721-3 1995 Plastics - Determination of dynamic mechanical properties - Part 3 Flexural vibration - Resonance-curve method... [Pg.172]

ISO 6721-8 1997 Plastics - Determination of dynamic mechanical properties - Part 8 Longitudinal and shear vibration - Wave-propagation method ISO 6721-10 1999 Plastics - Determination of dynamic mechanical properties - Part 10 Complex shear viscosity using a parallel-plate oscillatory rheometer ISO 9311-2 2002 Adhesives for thermoplastic piping systems - Part 2 Determination of shear strength... [Pg.173]

ISO 4663 1986 Rubber - Determination of dynamic behaviour of vulcanizates at low frequencies - Torsion pendulum method... [Pg.174]

ISO 3934 2002 Rubber, vulcanized and thermoplastic - Preformed gaskets used in buildings - Classification, specifications and test methods ISO 4649 2002 Rubber, vulcanized or thermoplastic - Determination of abrasion resistance using a rotating cylindrical drum device ISO 4664-1 2005 Rubber, vulcanized or thermoplastic - Determination of dynamic properties - Part 1 General guidance... [Pg.658]

The value of has not been attempted in the field to date. So, how do we determine Kl for field applications The determination of dynamic roughness, zo, has also been difficult for water surfaces. The primary method to measure Kl and Kq is to disturb the equilibrium of a chemical and measure the concentration as it returns toward either equilibrium or a steady state. Variations on this theme will be the topic of this chapter. [Pg.238]

Dekking, P. Determination of dynamic mechanical properties of high polymers. Doctoral thesis Leiden, 1961. Leiden Luctor et Emergo. [Pg.313]

Joos, P. and Rillaerts, E. 1981. Theory on the determination of dynamic surface tension with the drop volume and maximum bubble pressure method. J. Colloid Interface Sci. 79 96-100. [Pg.629]

Kloubek, J., Friml, K., and Krejci, F. 1976. Determination of dynamic surface tension with various stalagmometers by drop weighing method. Collect. Czech. Chem. Commun. 41 1845-1852. [Pg.646]

Read, B. E., Dean, G. D. The determination of dynamic properties of polymers and composites. Bristol A. Hilger 1978... [Pg.158]

BS 903 PA24 Guide to the determination of dynamic properties of rubbers DIN 53513 Determination of the viscoelastic properties of elastomers on exposure to forced vibration at nonresonant frequencies... [Pg.179]

Dynamic surface tension is the time trajectory of surface tension before equilibrium is reached. Dynamic surface tension tracks the changes during surface formation when surfactants are added. The bubble pressure method is the one most commonly used for the determination of dynamic surface tension. The details of this method are described in ASTM D3825-90 (2000) [ 19]. In this method a capillary tube is immersed in a sample liquid and a constant flow of gas is maintained through the tube forming bubbles in the sample liquids. The surface tension of the sample is calculated from the pressure difference inside and outside the bubble and the radius of the bubble. [Pg.32]

B. E. Read and G. D. Dean, The Determination of Dynamic Properties of Polymers and Composites Wiley New York, 1978. [Pg.48]

Because of the broad coverage of this article, we will limit ourselves to the study of stmctural and electronic properties of iron centers by Fe Mossbauer spectroscopy. If the reader is interested in the determination of dynamic properties both by conventional and synchrotron-based Mossbauer spectroscopy, we refer them to the articles by Parak, and Paulsen et as well as to the contribution of Scheidt and Sage in this volume see Nuclear Resonance Vibrational Spectroscopy (NR VS)). [Pg.2818]

BE Read, GD Dean, JC Duncan. Determination of dynamic moduli and loss factors. In DeBW Rossiter, RC Baetzold eds. Physical Methods of Chemistry, Vol. VII, Determination of Elastic and Mechanical Properties. New York Wiley, 1991. [Pg.304]

The inertial terms present in the equilibrium equations convert the problems into dynamic ones. The most studied dynamic viscoelastic boundary problems have been those referring to the unidirectional propagation of waves. In particular, forced oscillations have been widely used in the determination of dynamic moduli. [Pg.709]

A comparison between the results of FR and FTIR "spectroscopy" is presented on eight different H-zeoMtes. These are only the initial exploratory studies of the application of FR method on this novel and conq>licated field. A study of the fi equency re onses, temperature dependence of FR spectra and determination of dynamic parameters of various H-zeolites will be presented in later papers. [Pg.123]

ISO 4651-88 Cellular Rubbers and Plastics — Determination of Dynamic Cushioning Performance, 2nd Edition, 13 pp... [Pg.451]


See other pages where Determination of dynamics is mentioned: [Pg.175]    [Pg.40]    [Pg.62]    [Pg.198]    [Pg.356]    [Pg.322]    [Pg.179]    [Pg.112]    [Pg.354]    [Pg.271]    [Pg.387]    [Pg.89]    [Pg.161]   
See also in sourсe #XX -- [ Pg.214 ]




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