392 results on '"Szopa C"'
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2. The influence of oxychlorine phases on the flash pyrolysis of polycyclic aromatic hydrocarbons and implications for mars
3. Dimethylformamide dimethyl acetal reagent for in situ chiral analyses of organic molecules on Titan with the Dragonfly mass spectrometer space instrument (Dragonfly mission)
4. Analysis of aromatic carboxylic acid and calcium salt couples with gas chromatography-mass spectrometry: Implications and comparison with in situ measurements at Mars' surface
5. Evaluation of the interference of Tenax®TA adsorbent with dimethylformamide dimethyl acetal reagent for gas chromatography-Dragonfly mass spectrometry and future gas chromatography-mass spectrometry in situ analysis
6. Identification of organic molecules with a laboratory prototype based on the Laser Ablation-CosmOrbitrap
7. Influence of pH and salts on DMF-DMA derivatization for future Space Applications
8. Comparison of tetramethylammonium hydroxide (TMAH), trimethylsulfonium hydroxide (TMSH), and trimethylphenylammonium hydroxide (TMPAH) thermochemolysis for in situ space analysis of organic molecules in planetary environments
9. Organic molecules revealed in Mars’s Bagnold Dunes by Curiosity’s derivatization experiment
10. Thermal stability of adsorbents used for gas chromatography in space exploration
11. Reanalysis of the Huygens GCMS dataset: I. High-resolution methane vertical profile in the atmosphere of Titan.
12. Organic molecules in the Sheepbed Mudstone, Gale Crater, Mars.
13. Application of TMAH thermochemolysis to the detection of nucleobases: Application to the MOMA and SAM space experiment
14. Performance of the SAM gas chromatographic columns under simulated flight operating conditions for the analysis of chlorohydrocarbons on Mars
15. Effects of UV and Calcium Perchlorates on Uracil Deposited on Strontium Fluoride Substrates at Mars Pressure and Temperature
16. In situ analysis of martian regolith with the SAM experiment during the first mars year of the MSL mission: Identification of organic molecules by gas chromatography from laboratory measurements
17. Experimenting with Mixtures of Water Ice and Dust as Analogues for Icy Planetary Material: Recipes from the Ice Laboratory at the University of Bern
18. Sedimentary Organics in Glen Torridon, Gale Crater, Mars: Results from the SAM Instrument Suite and Supporting Laboratory Analyses
19. Prototype of the gas chromatograph–mass spectrometer to investigate volatile species in the lunar soil for the Luna-Resurs mission
20. Role of the Tenax® Adsorbent in the Interpretation of the EGA and GC‐MS Analyses Performed With the Sample Analysis at Mars in Gale Crater
21. Organic compounds on comet 67P/Churyumov-Gerasimenko revealed by COSAC mass spectrometry
22. COSAC prepares for sampling and in situ analysis of cometary matter from comet 67P/Churyumov–Gerasimenko
23. Gas chromatography for in situ analysis of a cometary nucleus V. Study of capillary columns’ robustness submitted to long-term reduced environmental pressure conditions
24. Laboratory insights into the chemical and kinetic evolution of several organic molecules under simulated Mars surface UV radiation conditions
25. Influence of CO on Titan atmospheric reactivity
26. Murchison Meteorite Analysis Using Tetramethylammonium Hydroxide (TMAH) Thermochemolysis Under Simulated Sample Analysis at Mars (SAM) Pyrolysis‐Gas Chromatography‐Mass Spectrometry Conditions.
27. Sedimentary Organics in Glen Torridon, Gale Crater, Mars: Results From the SAM Instrument Suite and Supporting Laboratory Analyses
28. Enantiomeric separation of volatile organics by gas chromatography for the in situ analysis of extraterrestrial materials: Kinetics and thermodynamics investigation of various chiral stationary phases
29. Chemical evolution of organic molecules under Mars-like UV radiation conditions simulated in the laboratory with the “Mars organic molecule irradiation and evolution” (MOMIE) setup
30. Can laboratory tholins mimic the chemistry producing Titan's aerosols? A review in light of ACP experimental results
31. Volatile and Organic Compositions of Sedimentary Rocks in Yellowknife Bay, Gale Crater, Mars
32. Volatile, Isotope, and Organic Analysis of Martian Fines with the Mars Curiosity Rover
33. Influence of methane concentration on the optical indices of Titan’s aerosols analogues
34. New insights into the structure and chemistry of Titan’s tholins via13C and 15N solid state nuclear magnetic resonance spectroscopy
35. The influence of mineralogy on recovering organic acids from Mars analogue materials using the “one-pot” derivatization experiment on the Sample Analysis at Mars (SAM) instrument suite
36. Optical constants from 370 nm to 900 nm of Titan tholins produced in a low pressure RF plasma discharge
37. Influence of Oxychlorine Phases During the Pyrolysis of Organic Molecules: Implications for the Quest of Organics on Mars with the SAM Experiment Onboard the Curiosity Rover
38. Influence of Calcium Perchlorate on Organics under SAM‐like Pyrolysis Conditions: Constraints on the Nature of Martian Organics
39. Search for evidence of life in space: Analysis of enantiomeric organic molecules by N,N-dimethylformamide dimethylacetal derivative dependant Gas Chromatography–Mass Spectrometry
40. Titan’s atmosphere: An optimal gas mixture for aerosol production?
41. MOMA: The Challenge to Search for Organics and Biosignatures on Mars
42. First Detection of Non-Chlorinated Organic Molecules Indigenous to a Martian Sample
43. Effect of the Presence of Chlorates and Perchlorates on the Pyrolysis of Organic Compounds: Implications for Measurements Done with the SAM Experiment Onboard the Curiosity Rover
44. Development of a gas chromatography compatible Sample Processing System (SPS) for the in-situ analysis of refractory organic matter in martian soil: preliminary results
45. Laboratory light-scattering measurements with Titan's aerosols analogues produced by a dusty plasma
46. Magnesium Sulfate as a Key Mineral for the Detection of Organic Molecules on Mars Using Pyrolysis
47. Optical properties of analogs of Titan’s aerosols produced by dusty plasma
48. Organic molecules revealed in Mars’s Bagnold Dunes by Curiosity’s derivatization experiment
49. Heterogeneous solid/gas chemistry of organic compounds related to comets, meteorites, Titan, and Mars: Laboratory and in lower Earth orbit experiments
50. Search for organic molecules at the Mars surface: The “Martian Organic Material Irradiation and Evolution” (MOMIE) project
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