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Grimme

R. Grimm, T. Kaftal - Isotopen-Technik Dr. Sauerwein, Germany. [Pg.423]

H. Witte, R. Grimm, G. Isenhardt, C. Sauerwein, U. Ewert DGZfP Jahrestagung, Aachen (1995)... [Pg.428]

Baumeister W, Grimm R and Walz T 1999 Eleotron tomography of moleoules and oells Trends Cell Biol. 9 81-5... [Pg.1653]

Koster A J, Grimm R, Typke D, Flegerl R, Stosohek A, Walz J and Baumeister W 1997 Perspeotives of moleoular and oellular eleotron tomography J. Struct. Biol. 120 276-308... [Pg.1653]

Selective reduction of a benzene ring (W. Grimme, 1970) or a C C double bond (J.E. Cole, 1962) in the presence of protected carbonyl groups (acetals or enol ethers) has been achieved by Birch reduction. Selective reduction of the C—C double bond of an a,ft-unsaturated ketone in the presence of a benzene ring is also possible in aprotic solution, because the benzene ring is redueed only very slowly in the absence of a proton donor (D. Caine, 1976). [Pg.104]

Grimm, "Large-Scale Purification of Carbide Acetylene with Special Regard to the Production of Acetaldehyde and Ethylene," OTS Report, PB 35209, U.S. Department of Commerce, 1944. [Pg.382]

W. A. Wilson and D. C. Grimm, Molecular Structures from Polymerisation and Vulcanisation, Southern Rubber Group, Knoxville, Term., 1994. [Pg.501]

Besides the conventional Grimm-type dc source, which has dominated the GD-OES scene for approximately 30 years, other discharge sources are well known. Among those are various boosted sources which use either an additional electrode to achieve a secondary discharge, or a magnetic field or microwave power to enhance the efficiency of excitation, and thus analytical capability none of these sources has, however, yet been applied to surface or depth-profile analysis. [Pg.223]


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See also in sourсe #XX -- [ Pg.60 ]




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Grimm-type discharge

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OES using a Grimm-type glow discharg

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