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H J Hartmann

Showing results (51-60 of 69) with videos related to

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Applied Optics|November 12, 2010
Digital recording and numerical reconstruction of holograms: a new method for displaying light in flightJ Pomarico, U Schnars, H J Hartmann, et al.
FEBS Letters|April 5, 1982
Tetrahedral copper-sulphur coordination in yeast Cu-thionein. An EXAFS studyJ Bordas, M H Koch, H J Hartmann, et al.
Microbial Ecology|April 4, 2007
Seasonal variations in planktonic community structure and production in an Atlantic coastal pond: the importance of nanoflagellatesC Dupuy, M Ryckaert, S Le Gall, et al.
Biochimica Et Biophysica Acta|August 23, 1977
Homologous copper(I)-(thiolate)2-chromophores in yeast copper thioneinU Weser, H J Hartmann, A Fretzdorff, et al.
Inflammation|August 1, 1990
Reactivity of active center analogs of Cu2Zn2 superoxide dismutase on activated polymorphonuclear leukocytesR Miesel, H J Hartmann, Y J Li, et al.
Hoppe-Seyler'S Zeitschrift Fur Physiologische Chemie|July 1, 1972
An enzymic study on bovine erythrocupreinU Weser, W Bohnenkamp, R Cammack, et al.
The Biochemical Journal|May 1, 1983
Yeast copper-thionein can reconstitute the Japanese-lacquer-tree (Rhus vernicifera) laccase from the Type 2-copper-depleted enzyme via a direct copper(I)-transfer mechanismL Morpurgo, H J Hartmann, A Desideri, et al.
FEBS Letters|February 7, 1983
Reconstitution of stellacyanin as a case of direct Cu(I) transfer between yeast copper thionein and 'blue' copper apoproteinH J Hartmann, L Morpurgo, A Desideri, et al.
Hoppe-Seyler'S Zeitschrift Fur Physiologische Chemie|March 1, 1973
[The binding of copper, zinc and cobalt in cuprein (superoxide dismutase)--an application of x-ray photoelectron spectroscopy (author's transl)]G Jung, M Ottnad, W Bremser, et al.
Microbial Ecology|December 6, 2005
Dynamic of virioplankton abundance and its environmental control in the Charente estuary (France)J C Auguet, H Montanié, D Delmas, et al.
Pageof 7

Showing results (51-60 of 69) with videos related to

Sort By:
Pageof 7
Applied Optics|November 12, 2010
Digital recording and numerical reconstruction of holograms: a new method for displaying light in flightJ Pomarico, U Schnars, H J Hartmann, et al.
FEBS Letters|April 5, 1982
Tetrahedral copper-sulphur coordination in yeast Cu-thionein. An EXAFS studyJ Bordas, M H Koch, H J Hartmann, et al.
Microbial Ecology|April 4, 2007
Seasonal variations in planktonic community structure and production in an Atlantic coastal pond: the importance of nanoflagellatesC Dupuy, M Ryckaert, S Le Gall, et al.
Biochimica Et Biophysica Acta|August 23, 1977
Homologous copper(I)-(thiolate)2-chromophores in yeast copper thioneinU Weser, H J Hartmann, A Fretzdorff, et al.
Inflammation|August 1, 1990
Reactivity of active center analogs of Cu2Zn2 superoxide dismutase on activated polymorphonuclear leukocytesR Miesel, H J Hartmann, Y J Li, et al.
Hoppe-Seyler'S Zeitschrift Fur Physiologische Chemie|July 1, 1972
An enzymic study on bovine erythrocupreinU Weser, W Bohnenkamp, R Cammack, et al.
The Biochemical Journal|May 1, 1983
Yeast copper-thionein can reconstitute the Japanese-lacquer-tree (Rhus vernicifera) laccase from the Type 2-copper-depleted enzyme via a direct copper(I)-transfer mechanismL Morpurgo, H J Hartmann, A Desideri, et al.
FEBS Letters|February 7, 1983
Reconstitution of stellacyanin as a case of direct Cu(I) transfer between yeast copper thionein and 'blue' copper apoproteinH J Hartmann, L Morpurgo, A Desideri, et al.
Hoppe-Seyler'S Zeitschrift Fur Physiologische Chemie|March 1, 1973
[The binding of copper, zinc and cobalt in cuprein (superoxide dismutase)--an application of x-ray photoelectron spectroscopy (author's transl)]G Jung, M Ottnad, W Bremser, et al.
Microbial Ecology|December 6, 2005
Dynamic of virioplankton abundance and its environmental control in the Charente estuary (France)J C Auguet, H Montanié, D Delmas, et al.
Pageof 7