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Oxford Diversity

Ellman (>2,000) Oxford Diversity (>100) Rhone-Pouienc Rorer (>9,000)... [Pg.97]

Electro-osmosis has been defined in the literature in many indirect ways, but the simplest definition comes from the Oxford English Dictionary, which defines it as the effect of an external electric held on a system undergoing osmosis or reverse osmosis. Electro-osmosis is not a well-understood phenomenon, and this especially apphes to polar non-ionic solutions. Recent hterature and many standard text and reference books present a rather confused picture, and some imply directly or indirectly that it cannot take place in uniform electric fields [31-35]. This assumption is perhaps based on the fact that the interaction of an external electric held on a polar molecule can produce only a net torque, but no net force. This therefore appears to be an ideal problem for molecular simulation to address, and we will describe here how molecular simulation has helped to understand this phenomenon [26]. Electro-osmosis has many important applications in both the hfe and physical sciences, including processes as diverse as water desahnation, soil purification, and drug delivery. [Pg.786]

Grime, J.P. (1987). Dominant and subordinate components of plant communities -implications for succession, stability and diversity. In Colonisation, Succession and Stability, ed. A. Gray, P. Edwards and M. Crawley, pp. 413-28. Oxford Blackwells. [Pg.44]

Martin AR, Reeves RR. 2002. Diversity and zoogeography. In Hoelzel, AR, editor. Marine mammal biology an evolutionary approach. Oxford, UK Blackwell Science Ltd. [Pg.180]

Figure 9.12 Oxygen and ozone concentrations in the Earth s atmosphere and the diversity of life forms. (Reproduced from Wayne, 2000, with permission from Oxford University Press)... Figure 9.12 Oxygen and ozone concentrations in the Earth s atmosphere and the diversity of life forms. (Reproduced from Wayne, 2000, with permission from Oxford University Press)...
M.C. Pirrung, Molecular Diversity and Combinatorial Chemistry Principles and Applications, Elsevier, Oxford, 2004. [Pg.68]

Rossotti, H. Diverse Atoms, Oxford University Press, Inc., New York. NY, 1998. Silverman, M.P. Probing the Atom, Princeton University Press, Princeton, NJ, 2000. [Pg.159]

TODD, SIR ALEXANDER R. (1907-1997). A British chemist who won the Nobel prize for chemistry in 19.57. His diverse research and accomplishments involved phosphorylation and mechanisms of biological reactions concerning phosphates. Many of his studies concerned the structure of nucleic acids, nucleotides, nucleotidic coenzynies, as well as vitamins Bj, B12, and E. Work in biological organic chemistry indicated diat hemp plant could be used for production of narcotics. T odd had degrees awarded from Oxford, Frankfurt, and Glasgow, among others. [Pg.1622]

In those days you had to eat to get a drink because of the licensing laws. (Some things never change, eh ) Flo s was this tiny place on the south side of Oxford Street. It was near. .. let me see. .. a block up from the Cool Room It was tiny but the crowd was quite diverse. All the drag queens used to come there. This was in the days when all the venue operators were dealers. Some of them still are, how old-fashioned. But maybe that s just my age, and Sydney. Anything that lasts seems old-fashioned. [Pg.85]

Westman J (2004) Speed and Efficiency in the Production of Diverse Structures Microwave-Assisted Multicomponent Reactions. In LidstrOm P, Tierney JP (eds) Microwave-Assisted Organic Synthesis. Blackwell, Oxford, p 102... [Pg.98]

Rossotti, H., Diverse Atoms Profiles of the Chemical Elements, 1998, Oxford University Press, Oxford, U.K. [Pg.124]

According to the Oxford English Dictionary the term first appears in 1656 in relation to the diversity of fashion. In the context of crystallography, the first use is generally credited to Mitscherlich (1822, 1823), who recognized different crystal structures of the same compound in a number of arsenate and phosphate salts. The historical development of polymorphism is discussed in Section 1.4. [Pg.2]

Daly, H.V, Doyen, J.T., Purcell, A.H., 1998. Introduction to insect biology and diversity. Oxford University Press, Oxford, 680pp. [Pg.440]

Reig, O. A. 1986. Diversity patterns and differentiation of high Andean rodents, in F. Vuilleumier and M. Monasterio (eds.) High Altitude Tropical Biogeography. Oxford University Press, New York, pp. 404-442. [Pg.978]

Thiry, M. (1999) Diversity of continental silicification features examples from the Cenozoic deposits in the Paris Basin and neighbouring basement. In Thiry, M. Simon-Coinyon, R. (Eds) Palaeoweathering, Palaeosurfaces and Related Continental Deposits. Special Publication 27, International Association of Sedimentolo-gists. Oxford Blackwell Science, pp. 87-127. [Pg.140]

Todeschini, R., Consonni, V. and Pavan, M. (2004d) Distance measure between models a tool for model similarity/diversity analysis, in Designing Drugs and Crop Protectants Processes, Problems and Solutions (eds M. Ford, D.J. Livingstone, J.C. Dearden and H. van de Waterbeemd), Blackwell, Oxford, UK, pp. 467-469. [Pg.1183]

Jung, G. (ed.). Combinatorial Peptide and Nonpeptide Libraries A Handbook. VCH, Weinheim New York, 1996 Bunin, B.A. (ed.). The Combinatorial Index. Academic Press, San Diego. 1998 Gordon, E.M., Kerwin, J.F.J., Combinatorial Chemistry and Molecular Diversity in Drug Discovery, John Wiley Sons, New York, 1998 Terretl, N.K., Combinatorial Chemistry. Oxford University Press, New York, 1998 Moos, W.H., Pavia, M.R., Kay, B.K., Ellington, A.D., Annual Reports in Combinatorial Chemistry and Molecular Diversity. ESCOM, Leiden, 1997. [Pg.255]

Biomimetics is a distinct and rapidly growing discipline that provides insight into the secrets of how Nature s biological pathways work, how they are manifest in diverse aspects of chemistry, physics and engineering, and in which way they can be emulated to provide materials and objects useful for biomedical applications. According to the Oxford Dictionary, the term biomimetics means relating to or denoting synthetic methods which mimic biochemical processes . [Pg.115]

D. G. Vassao K.-W. Kim L. B. Davin N. G. Lewis, Lignans (Neoiignans) and Aiiyi/Propenyi Phenois Biogenesis, Structurai Bioiogy, and Bioiogicai/Human Heaith Considerations, in Comprehensive Natural Products Chemistry II, Voi. 1 Structural Diversity I] C. Townsend, Y. Ebizuka, Eds. L. N. Mander, Fl.-W. Liu, Series Eds. Eisevier Oxford, UK, 2009 p 817-928. [Pg.595]


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See also in sourсe #XX -- [ Pg.195 ]




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