21 results on '"Lubitz W."'
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2. Flow and temperature dynamics in an urban canyon under a comprehensive set of wind directions, wind speeds, and thermal stability conditions
3. Spectroscopic investigations of a semi-synthetic [FeFe] hydrogenase with propane di-selenol as bridging ligand in the binuclear subsite: comparison to the wild type and propane di-thiol variants
4. The Magic of Disaccharide Glass Matrices for Protein Function as Decoded by High-Field EPR and FTIR Spectroscopy
5. Bioconversion of crude glycerol by fungi
6. EPR, ENDOR, and Special TRIPLE measurements of P•+ in wild type and modified reaction centers from Rb. sphaeroides
7. A CW and pulse EPR spectrometer operating at 122 and 244 GHz using a quasi-optical bridge and a cryogen-free 12 T superconducting magnet
8. High-field EPR, ENDOR and ELDOR on bacterial photosynthetic reaction centers
9. Absolute signs of hyperfine coupling constants as determined by pulse ENDOR of polarized radical pairs
10. Pulse ENDOR studies on the radical pair P700+·A1·− and the photoaccumulated quinone acceptor A1·− of photosystem I
11. High-frequency EPR studies on cofactor radicals in photosystem I
12. Probing the surrounding of a cobalt(II) porphyrin and its superoxo complex by EPR techniques
13. Single crystal EPR studies of the oxidized active site of [NiFe] hydrogenase from Desulfovibrio vulgaris Miyazaki F
14. Orientation-selected ENDOR of the active center in Chromatium vinosum [NiFe] hydrogenase in the oxidized "ready" state
15. The primary and secondary acceptors in bacterial photosynthesis III. Characterization of the quinone radicals QA− ⋅ and QB− ⋅ by EPR and ENDOR
16. Influence of hydrogen bonds on the electronicg-tensor and13C-hyperfine tensors of13C-labeled ubiquinones — EPR and ENDOR study
17. The bacteriochlorophylla cation radical revisited. An ENDOR and TRIPLE resonance study
18. Transient and pulsed EPR spectroscopy on the radical pair state P865+.QA−. to study light-induced changes in bacterial reaction centers
19. Dynamics of PhiX174 protein E-mediated lysis of Escherichia coli
20. Lysis of Escherichia coli by induction of cloned ϕX174 genes
21. Stimulation of autolysis by adsorption of bacteriophage ØX174 to isolated cell walls
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