Rodney D. W. Bowersox - Publications
Affiliations: | Aerospace engineering | Texas A & M University, College Station, TX, United States | |
1997-2002 | Aerospace engineering | The University of Alabama, Tuscaloosa, AL |
Area:
Aerospace EngineeringWebsite:
https://engineering.tamu.edu/aerospace/profiles/rbowersox.htmlYear | Citation | Score | |||
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2016 | West NA, Winner JD, Bowersox RD, North SW. Resolving the energy and temperature dependence of C6H6 (∗) collisional relaxation via time-dependent bath temperature measurements. The Journal of Chemical Physics. 145: 014308. PMID 27394109 DOI: 10.1063/1.4954896 | 0.349 | |||
2016 | Pan F, Sánchez-González R, McIlvoy MH, Bowersox RD, North SW. Simultaneous three-dimensional velocimetry and thermometry in gaseous flows using the stereoscopic vibrationally excited nitric oxide monitoring technique. Optics Letters. 41: 1376-9. PMID 27192240 DOI: 10.1364/OL.41.001376 | 0.731 | |||
2015 | Sanchez-Gonzalez R, McManamen B, Bowersox RD, North SW. A method to analyze molecular tagging velocimetry data using the Hough transform. The Review of Scientific Instruments. 86: 105106. PMID 26520983 DOI: 10.1063/1.4932532 | 0.305 | |||
2014 | Sánchez-González R, Bowersox RD, North SW. Vibrationally excited NO tagging by NO(A²∑⁺) fluorescence and quenching for simultaneous velocimetry and thermometry in gaseous flows. Optics Letters. 39: 2771-4. PMID 24784099 DOI: 10.1364/OL.39.002771 | 0.663 | |||
2012 | Sánchez-González R, Bowersox RD, North SW. Simultaneous velocity and temperature measurements in gaseous flowfields using the vibrationally excited nitric oxide monitoring technique: a comprehensive study. Applied Optics. 51: 1216-28. PMID 22441464 DOI: 10.1364/AO.51.001216 | 0.673 | |||
2011 | Sánchez-González R, Srinivasan R, Bowersox RD, North SW. Simultaneous velocity and temperature measurements in gaseous flow fields using the VENOM technique. Optics Letters. 36: 196-8. PMID 21263498 DOI: 10.1364/OL.36.000196 | 0.407 | |||
2009 | Hsu AG, Srinivasan R, Bowersox RD, North SW. Two-component molecular tagging velocimetry utilizing NO fluorescence lifetime and NO2 photodissociation techniques in an underexpanded jet flowfield. Applied Optics. 48: 4414-23. PMID 19649046 DOI: 10.1364/ao.48.004414 | 0.404 | |||
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