Dr. Besmann's research interests are related to thermochemical experiment and combustion, plasma-assisted combustion, fundamental combustion physics,
A lecture from the 2016 Princeton-CEFRC-CI Combustion Summer School.
Combustion Physics. In the area of Combustion Physics, methods of measurement; mainly laser diagnostics, are being developed and used to determine the quality of and conditions (e.g. temperature, concentrations) in various combustion processes. Mathematical and chemical models of combustion processes are also being developed and used. Research activities are in applied plasma science with applications to combustion, pollution control, and pulsed power; quantum electronics, semiconductor devices and physics, and biophysics. Current interests include applications of pulsed power to biological cells, and investigation of cellular responses to pulsed electrical fields. 2006-01-01 B.S. in Physics, Lanzhou University, 2018 M.S. in Electrical Engineering, University of Southern California, 2020 Email: sizhewen@usc.edu Sizhe is working on single photon emission and the cross-plane and in-plane thermoelectric study on 2D materials.
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Combustion Physics Lab. Research Assistant University of Notre Dame May 2015 – August 2015 4 months. USC mailed more than 1,000 lab kits to its college students around the world so they could still do hands-on experiments while studying remotely during the COVID-19 pandemic. 2020-03-09 This research at USC is multidisciplinary investigating fundamental issues that inhibit implementation Research is underway to investigate the underlying physical processes and test their applicability to practical combustion devices. Department of Physics & Astronomy Office: PHE 604 Lab: SSC 316, 410 Tel: (213) 740-4700 Fax: (213) 740-7581 USC Physics Lecture Support Lab; SLH (Stauffer Lecture Hall) - 104 Department of Physics and Astronomy University of Southern California - Los Angeles ; Phone: (213) 740 - 1149; Email: pals@usc.edu The HyChem approach expresses the fuel pyrolysis and pyrolysis products oxidation in two submodels. Fig. 1 shows the HyChem model structure.
About.
Proceedings of the Combustion Institute 29, pp. 2749-2757 (2002). 45. Hirasawa, T., Sung, C. J., Joshi, A., Yang, Z., Wang, H. and Law, C. K., “Determination of laminar flame speeds of fuel blends using digital particle image velocimetry: ethylene, n-butane, and toluene flames.” Proceedings of the Combustion Institute 29, pp. 1427-1434 (2002).
12. Microdosimetry of proton and carbon ions2014Ingår i: Medical physics i: Physics in Medicine and Biology, ISSN 0031-9155, E-ISSN 1361-6560, Vol. 58, nr 3 ionisation2020In: Journal of Physics B: Atomic, Molecular and Optical Physics, ISSN 0953-4075, E-ISSN 1361-6455, Vol. Myrberg Burström, Nanouschka.
Professor E-mail: alexander.konnov@forbrf.lth.se Phone: +46 46 46 222 97 57 Room: E426 Alexander at Research Portal - portal.research.lu.se . Alexander is since 2009 professor at the Division of Combustion Physics. His main scientific background is in experimental investigation and modeling of NOx and other pollutants formation in industrial flames, as well as in development and validation of
A lecture from the 2016 Princeton-CEFRC-CI Combustion Summer School. Saurabh Dube (USC AME) (Directed Research, Spring 2019): Flat-plate turbulent boundary layer simulation. Ram-Srinivasan Shyam-Sundar (USC AME) (Directed Research, Spring 2018): CFD Visualization. Undergraduate Students. Marshall Basson (Carleton College - Physics) (USC SURE 2019): Wall-model LES of backward-facing step; Python-based meshing. Professor E-mail: alexander.konnov@forbrf.lth.se Phone: +46 46 46 222 97 57 Room: E426 Alexander at Research Portal - portal.research.lu.se . Alexander is since 2009 professor at the Division of Combustion Physics.
Feb '13 - Present (8 years 1 month).
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Feb '13 - Present (8 years 1 month). Stasis Labs. Om. Arbete. USC Combustion Physics Lab. Februari 2018 - Juni 2019.
Introduction.
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PHYS 151Lg: Fundamentals of Physics I: Mechanics and Thermodynamics (4.0 units) Gateway to the majors and minors in Physics and Astronomy. Statics and dynamics of particles and rigid bodies, conservation principles, gravitation, simple harmonic oscillators, thermodynamics, heat engines, entropy.
Research activities are in applied plasma science with applications to combustion, pollution control, and pulsed power; quantum electronics, semiconductor devices and physics, and biophysics. Current interests include applications of pulsed power to biological cells, and investigation of cellular responses to pulsed electrical fields.
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Computational Aerospace Laboratory at USC. Turbulent combustion. Turbulent Our research combines physics-based modeling, numerical methods and
Detailed resume Short biography. AME101 – Introduction to Mechanical Engineering and Graphics - Fall 2019 class. Web of Science record Google Scholar record.