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Bindra

J. S. Bindra and R. Bindra, Creativity in Organic Synthesis (Academic Press, Inc., New York, 1975). [Pg.99]

For an informative discussion and a compilation of leading references, see Bindra, J. S. Bindra, R. Prostaglandin Synthesis, Academic Press New York, 1977, p. 7. [Pg.81]

P. Bindra and J. R. White, in Electroless Plating Fundamentals and Applications, Ed. by G. 0. Mallory and J. B. Hajdu, American Electroplaters and Surface Finishers Society, Orlando, FL, 1990, p. 289. [Pg.11]

Bindra P, Clouser SJ, Yeager E. 1979. Platinum dissolution in concentrated phosphoric-acid. J Electrochem Soc 126 1631-1632. [Pg.307]

Zagal J, Bindra P, Yeager E. 1980. A mechanistic study of O2 reduction on water soluble phtha-locyanines adsorbed on graphite electrodes. J Electrochem Soc 127 1506-1517. [Pg.374]

N. Anand, J. S. Bindra, and S. Ranganathan, Art in Organic Synthesis, 2nd Edition, Wiley-Interscience, New York, 1988. [Pg.1260]

B. J. Aungst, N. H. Nguyen, N. J. Taylor, D. S. Bindra. Formulation and food effects on the oral absorption of a poorly water soluble, highly permeable antiretroviral agent. J. Pharm. Sci. 2002, 91, 1390-1395. [Pg.214]

D. Bindra, Y. Zhang, G. Wilson, R. Sternberg, D.Trevenot, G. Reach, and D. Moatti, Design and in vitro studies of a needle-type glucose sensor for subcutaneous monitoring. Anal. Chem. 63, 1692-1696 (1991). [Pg.91]

The coevolution of H2 gas in electroless deposition processes is a phenomenon that needs to be understood not only to elucidate the mechanism of deposition, but also since it impacts the properties of deposits by H inclusion. Van den Meerakker [51] first proposed a correlation between simultaneous hydrogen evolution in electroless deposition and the heat of adsorption of hydrogen. In this useful endeavor, however, he has been criticized for erroneously calculating the heats of adsorption of H at Cu by Gottesfeld et al. [52], and Group I (or SP type) metals in general by Bindra and Tweedie [53]. [Pg.237]


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See also in sourсe #XX -- [ Pg.10 , Pg.14 ]




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