189 results on '"Nass, K"'
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2. Thaumatin, 9-11 fs FEL pulses as determined by XTCAV
3. Frequency and spatially chirped free-electron laser pulses
4. T.02.1 DELPHI INITIATIVE FOR EARLY-ONSET COLORECTAL CANCER (DIRECT): INTERNATIONAL MANAGEMENT GUIDELINES
5. Influence of pump laser fluence on ultrafast structural changes in myoglobin
6. Delphi initiative for early-onset colorectal cancer (DIRECt). International Management Guidelines
7. Structure of thaumatin determined at SwissFEL using native-SAD at 6.02 keV with photon energy bandwidth of 2.15% and XGANDALF
8. Structure of thaumatin determined at SwissFEL using native-SAD at 6.02 keV with photon energy bandwidth of 2.15% and pinkIndexer
9. Structure of thaumatin determined at SwissFEL using native-SAD at 6.02 keV with photon energy bandwidth of 2.15% and XGANDALF with 50000 indexed images
10. Structure of thaumatin determined at SwissFEL using native-SAD at 6.02 keV with photon energy bandwidth of 2.15% and pinkIndexer with 30000 indexed images
11. Structure of thaumatin determined at SwissFEL using native-SAD at 5.99 keV with photon energy bandwidth of 0.26%
12. NmHR light state structure at 55 ms (50 - 60 ms) after photoexcitation determined by serial millisecond crystallography
13. Anomalous bromide substructure of NmHR under dark state conditions determined at 13.7 keV with serial crystallography
14. Active YidC insertase crystal structure with the first transmembrane domain resolved
15. Die Arthrodese des Tarsometatarsal-I-Gelenks mit einer plantaren Zuggurtungsosteosynthese
16. Structural dynamics in proteins induced by and probed with X-ray free-electron laser pulses
17. Fractal morphology, imaging and mass spectrometry of single aerosol particles in flight
18. Structure of thaumatin determined at SwissFEL using native-SAD at 4.57 keV from 20,000 diffraction patterns
19. Structure of thaumatin determined at SwissFEL using native-SAD at 6.06 keV from 50,000 diffraction patterns.
20. Structure of thaumatin determined at SwissFEL using native-SAD at 6.06 keV from all available diffraction patterns
21. Structure of the A2A adenosine receptor determined at SwissFEL using native-SAD at 4.57 keV from all available diffraction patterns
22. Structure of thaumatin determined at SwissFEL using native-SAD at 4.57 keV from all available diffraction patterns
23. Structure of the A2A adenosine receptor determined at SwissFEL using native-SAD at 4.57 keV from 50,000 diffraction patterns
24. Femtosecond to millisecond structural changes in a light-driven sodium pump: 1ns+16ns structure of KR2 with extrapolated, light and dark datasets
25. Femtosecond to millisecond structural changes in a light-driven sodium pump: Dark structure in acidic conditions
26. Femtosecond to millisecond structural changes in a light-driven sodium pump: 30us+150us structure of KR2 with extrapolated, light and dark datasets
27. Femtosecond to millisecond structural changes in a light-driven sodium pump: 800fs+2ps structure of KR2 with extrapolated, light and dark datasets
28. Femtosecond to millisecond structural changes in a light-driven sodium pump: 20ms structure of KR2 with extrapolated, light and dark datasets
29. Femtosecond to millisecond structural changes in a light-driven sodium pump: Dark structure in neutral conditions with attached light datasets at 800fs, 2ps, 100ps, 1ns, 16ns, 1us, 30us, 150us, 1ms and 20ms
30. X-ray pump X-ray probe on thaumatin nanocrystals: 35 fs time delay
31. X-ray pump X-ray probe on lysozyme.Gd nanocrystals: 112 fs time delay
32. X-ray pump X-ray probe on lysozyme.Gd nanocrystals: single colour reference data
33. X-ray pump X-ray probe on lysozyme.Gd nanocrystals: 37 fs time delay
34. X-ray pump X-ray probe on thaumatin nanocrystals: single pulse reference data
35. X-ray pump X-ray probe on thaumatin nanocrystals: 18 fs time delay
36. X-ray pump X-ray probe on thaumatin nanocrystals: 54 fs time delay
37. X-ray pump X-ray probe on lysozyme.Gd nanocrystals: 62 fs time delay
38. X-ray pump X-ray probe on thaumatin nanocrystals: 76 fs time delay
39. In cellulo crystallization of Trypanosoma brucei IMP dehydrogenase enables the identification of ATP and GMP as genuine co-factors
40. New Science Opportunities Enabled by LCLS-II X-Ray Lasers
41. Activation energy determinations from dielectric thermal analysis of reacting polymeric systems
42. Retinal isomerization in bacteriorhodopsin revealed by a femtosecond X-ray laser: resting state structure
43. Retinal isomerization in bacteriorhodopsin revealed by a femtosecond X-ray laser: 49-406 fs state structure
44. Retinal isomerization in bacteriorhodopsin revealed by a femtosecond X-ray laser: 457-646 fs state structure
45. Retinal isomerization in bacteriorhodopsin revealed by a femtosecond X-ray laser: 8.3 ms state structure
46. Retinal isomerization in bacteriorhodopsin revealed by a femtosecond X-ray laser: 10 ps state structure
47. Difference-refined excited-state structure of rsEGFP2 1ps following 400nm-laser irradiation of the off-state.
48. Crystal Structure of rsEGFP2 in the fluorescent on-state determined by SFX
49. Composite structure of rsEGFP2 1ps following 400nm-laser irradiation of the off-state.
50. Crystal Structure of rsEGFP2 in the non-fluorescent off-state determined by SFX
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