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Cremer

Lindek St, Cremer Chr and Stelzer E H K 1996 Confocal theta fluorescence microscopy using two-photon absorption and annular apertures Optik 02 131-4... [Pg.1674]

J. Cremer, J. A. Larsson, E. Kraka, Theoretical Organic Chemutry C. Parkanyi, ed., 259, Elsevier, Amsterdam (1998). [Pg.97]

When first developed, potentiometry was restricted to redox equilibria at metallic electrodes, limiting its application to a few ions. In 1906, Cremer discovered that a potential difference exists between the two sides of a thin glass membrane when opposite sides of the membrane are in contact with solutions containing different concentrations of H3O+. This discovery led to the development of the glass pH electrode in 1909. Other types of membranes also yield useful potentials. Kolthoff and Sanders, for example, showed in 1937 that pellets made from AgCl could be used to determine the concentration of Ag+. Electrodes based on membrane potentials are called ion-selective electrodes, and their continued development has extended potentiometry to a diverse array of analytes. [Pg.465]

L. J. Radziemski and D. A. Cremers, eds., Easer-Induced Plasmas and Applications, Marcel Dekker, Inc., New York, 1989. [Pg.324]

G. A. Cremer and C. A. Bayens, "Shell GCC Sets New Standards For Clean Power From Coal," FUtemate Energy 1991, Scottsdale, Ari2., Apr. 1991. [Pg.278]

Cremer and Watldns (eds.). Chemical Engineeting Fractice, vol. 8 Chemical Kinetics, Butterworths, 1965. [Pg.683]

K. Henning, H. Meyer, G. Kraatz-Wadsaek and J. Cremer, Cnrr. Microbiol., 1992, 25, 129. [Pg.115]

B. Cremer-Lober, H. Butler, D. Naumann W. Tyrra, Z anorg. allg. Chem. 607, 34-40 (1992). [Pg.900]

G. Parravano and M. Boudart The Compensation Effect in Heterogeneous Catalysis E. Cremer... [Pg.423]


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