52 results on '"Petersen, Eric"'
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2. Experimental and chemical kinetic modeling study of ethylene carbonate oxidation: A lithium-ion battery electrolyte surrogate model
3. A comprehensive experimental and kinetic modeling study of p-cymene oxidation
4. Experimental and modeling study of the combustion of ethyl methyl carbonate, a battery electrolyte
5. Evaluation of high-pressure syngas ignition under high-CO2 dilution in shock tubes
6. Enhancing lithium-ion battery safety: Investigating the flame-retardant efficacy of bis(2,2,2-trifluoroethyl) carbonate during ethyl methyl carbonate combustion
7. Shock-tube study of the oxidation of ammonia by N2O
8. Shock-tube CO measurements during the pyrolysis of ethylene carbonate
9. Lab-scale ballistic and safety property investigations of LMP-103S
10. A wide range experimental and kinetic modeling study of the oxidation of 2,3-dimethyl-2-butene: Part 1
11. Pyrolysis study of dimethyl carbonate, diethyl carbonate, and ethyl methyl carbonate using shock-tube spectroscopic CO measurements and chemical kinetics investigation
12. A wide range experimental study and further development of a kinetic model describing propane oxidation
13. A comprehensive experimental and modeling study of n-propylcyclohexane oxidation
14. Shock-tube spectroscopic CO and H2O measurements during 2-methyl-1-butene combustion and chemical kinetics modeling
15. An experimental and modeling study of ammonia pyrolysis
16. A comprehensive experimental and kinetic modeling study of 1-hexene
17. Experimental evaluation of HTPB/paraffin fuel blends for hybrid rocket applications
18. Current status of the high-temperature kinetic models of silane: Part II. Oxidation
19. Current status of the high-temperature kinetic models of silane: Part I. Pyrolysis
20. High-temperature ignition behavior of conventional and GTL fuels using an aerosol shock tube
21. A shock-tube study of the N2O + M ⇄ N2 + O + M (M = Ar) rate constant using N2O laser absorption near 4.6 µm
22. Impact of shock-tube facility-dependent effects on incident- and reflected-shock conditions over a wide range of pressures and Mach numbers
23. Ignition delay time and laminar flame speed measurements of mixtures containing diisopropyl-methylphosphonate (DIMP)
24. OH* chemiluminescence in the H2[sbnd]NO2 and H2[sbnd]N2O systems
25. Experimental study of ethanol oxidation behind reflected shock waves: Ignition delay time and H2O laser-absorption measurements
26. Corrigendum to “A comprehensive experimental and modeling study of n-propylcyclohexane oxidation” [Combust. Flame 238 (2022) 111944]
27. An experimental and chemical kinetic modeling study of 1,3-butadiene combustion: Ignition delay time and laminar flame speed measurements
28. The unimportance of the reaction H2 + N2O ⇆ H2O + N2: A shock-tube study using H2O time histories and ignition delay times
29. Experimental and modeling study on the effects of dimethyl methylphosphonate (DMMP) addition on H2, CH4, and C2H4 ignition
30. Assessing the predictions of a NOx kinetic mechanism on recent hydrogen and syngas experimental data
31. A comprehensive experimental and modeling study of isobutene oxidation
32. Laminar flame speeds of nano-aluminum/methane hybrid mixtures
33. An ignition delay time and chemical kinetic modeling study of the pentane isomers
34. Shock-induced ignition of methane sensitized by NO2 and N2O
35. Influence of steam dilution on the ignition of hydrogen, syngas and natural gas blends at elevated pressures
36. Experimental and modeling study on the high-temperature oxidation of Ammonia and related NOx chemistry
37. An ignition delay and kinetic modeling study of methane, dimethyl ether, and their mixtures at high pressures
38. An experimental and modeling study of propene oxidation. Part 2: Ignition delay time and flame speed measurements
39. Ignition delay times, laminar flame speeds, and mechanism validation for natural gas/hydrogen blends at elevated pressures
40. Chemical kinetics modeling of n-nonane oxidation in oxygen/argon using excited-state species time histories
41. Effects of H2S addition on hydrogen ignition behind reflected shock waves: Experiments and modeling
42. A diagnostic for measuring H2O2 concentration in a shock tube using tunable laser absorption near 7.8 μm
43. A Case Study of Job Access and Reverse Commute Programs in the Chicago, Kansas City, and San Francisco Metropolitan Regions
44. Determination of the rate of H + O2 + M → HO2 + M (M = N2, Ar, H2O) from ignition of syngas at practical conditions
45. Presence of De Novo Mutations in Autosomal Dominant Polycystic Kidney Disease Patients Without Family History
46. Methane/propane oxidation at high pressures: Experimental and detailed chemical kinetic modeling
47. Frequency modulation spectroscopy in a particle-forming environment for the detection of SiH 2
48. The Long and Short of Asking Questions about Income, Wealth, and Labor Supply
49. Corrigendum to ``The unimportance of the reaction H2 + N2O ⇆ H2O + N2: A shock-tube study using H2O time histories and ignition delay times'' [Combustion and Flame 196 (2018) 478-486]
50. Mobile cardiac catheterization laboratories in community hospitals improve access to cardiac catheterization in women and minority patients
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