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Clark Field

Amara P and M J Field 1998. Combined Quantum Mechanical and Molecular Mechanical Potentials. In Schleyer, P v R, N L Allinger, T Clark, J Gasteiger, P A Kolhnan H F Schaefer HI and P R Schreiner (Editors). The Encyclopedia of Computational Chemistry. Chichester, John Wiley Sons. [Pg.648]

In the present time our organosilicon adsorbents found the practice application in such as fields such as, for example 1) the method of spectral-chemical determination of gold Clarke quantities in poor ores and rocks has been applied in analytic practice of geological establishments and research institutes 2) at the first time soi ption process was used in hydro-chemical analyze of fresh water. This method has been allowed to analyze of Baikal water 3) for purification metallurgical waters and waste solutions of chemical-metallurgical plants due to toxic elements 4) for creation the filters for extraction of rare elements, for example, uranium 5) for silver utilization from wasted of cinema-photo manufactory. This method has been applied to obtain the silver of high purity. [Pg.273]

AD MacKerell Jr. Protein force fields. In PvR Schleyer, NL Allmger, T Clark, I Gasteiger, PA Kollman, HP Schaefer III, PR Schreiner, eds. The Encyclopedia of Computational Chemistry, Vol 3. Chichester, UK, Wiley 1998, pp 2191-2200. [Pg.35]

Clark RD et al. (2004) Modelling in vitro hepatotoxicity using molecular interaction fields and SIMCA. J Mol Graph Model 22(6) 487-497... [Pg.98]

Experimentally measured dielectrophoretic augmentation factor DAF as a function of air speed and applied voltage for a glass-fiber filter (HP-100, Farr Co.). Cf Fielding, Thompson, Bogardus, and Clark, Dielectrophoretic Filtration of Solid and Liquid Aerosol Particulates, Prepr. 75-32.2, 68th ann. meet.. Air Pollut. Control Assoc., Boston, June 1975. [Pg.27]

Clarke R (2010) Electric field sensitive dyes. In Demchenko AP (ed) Advanced Fluorescence Reporters in Chemistry and Biology I. Springer Ser Fluoresc 8 331-344... [Pg.330]

Electrochemical biosensors are analytical devices in which an electrochemical device serves as a transduction element. They are of particular interest because of practical advantages, such as operation simplicity, low expense of fabrication, and suitability for real-time detection. Since the first proposal of the concept of an enzyme-based biosensor by Clark, Jr [1], significant progress in this field has been achieved with the inherited sensitivity and selectivity of enzymes for analytical purposes. [Pg.555]

Clark, D.R. Jr., A.S. Wenner, and J.F. Moore. 1986. Metal residues in bat colonies, Jackson County, Florida, 1981-1983. Florida Field Natural. 14 38-45. [Pg.71]

Clark R. Landis, Daniel M. Root, and Thomas Cleveland, Molecular Mechanics Force Fields for Modeling Inorganic and Organometallic Compounds. [Pg.442]

Wolohan P.R.N. Clark R.D. Predicting drug pharmacokinetic properties using molecular interaction fields and SIMCA. Journal of Computer-Aided Molecular Design, 2003, 17 (1), 65-76. [Pg.72]

The review chapters in this volume were the basis for a two-day short course on non-traditional stable isotopes held prior (May 15-16, 2004) to the spring AGU/CGU Meeting in Montreal, Canada. The editors (and conveners of the short course) Clark Johnson, Brian Beard and Francis Albarede and the other chapter authors/presenters have done an exceptional job of familiarizing us with the cutting edge of this exciting field of study. [Pg.458]

McLaughlin, MJ, Parker, D.R. and Clarke, J.M. (1999). Metals and micronutrients -food safety issues. Field Crops Res., 60, 143-163. [Pg.251]


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