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1.
Microexplosions and Ignition Dynamics in Engineered Aluminum/Polymer Fuel Particles
by Rubio, Mario A., M.S.M.E.  Purdue University. 2017: 48 pages; 10268368.
2.
Development of a Cold-Flow Based Model to Map Ignition Probabilities in a Supersonic Cavity
by Ivancic, Philip Robert, Ph.D.  Mississippi State University. 2019: 161 pages; 22582723.
3.
A general thermal thickness model and a heating rate related ignition criterion for combustible solids
by Tian, Ning, Ph.D.  The University of North Carolina at Charlotte. 2013: 131 pages; 3608480.
4.
Numerical simulation of liquid oxygen and liquid methane glow plug ignition system
by Iizuka, Toshiaki, M.S.  California State University, Long Beach. 2011: 88 pages; 1490389.
5.
Prospects of lean ignition with the quarter wave coaxial cavity igniter
by Pertl, Franz Andreas Johannes, Ph.D.  West Virginia University. 2008: 116 pages; 3472480.
6.
Probing the ignition mechanism of aluminum nanothermites
by Chowdhury, Snehaunshu, Ph.D.  University of Maryland, College Park. 2012: 137 pages; 3557646.
7.
Understanding the reaction mechanism of aluminum nanocomposite thermites
by Egan, Garth Christopher, Ph.D.  University of Maryland, College Park. 2015: 236 pages; 10128571.
8.
Laser induced incandescence and laser induced breakdown spectroscopy based sensor development
by Eseller, Kemal Efe, Ph.D.  Mississippi State University. 2009: 131 pages; 3386316.
9.
Dual Frequency Comb Spectroscopy in Wildfire Combustion Processes
by Makowiecki, Amanda Sue, Ph.D.  University of Colorado at Boulder. 2020: 128 pages; 27735620.
11.
The Application of Ultrafast Laser Pulses to Laser Desorption Mass Spectrometry
by Cui, Yang, Ph.D.  University of Illinois at Chicago. 2015: 165 pages; 3728658.
12.
Microwave-Assisted Ignition for Improved Internal Combustion Engine Efficiency
by DeFilippo, Anthony Cesar, Ph.D.  University of California, Berkeley. 2013: 171 pages; 3593810.
13.
Silicon Dioxide Planarization: Impacts on Optical Coatings for High Energy Laser
by Day, Travis E., M.S.  Colorado State University. 2017: 75 pages; 10690434.
14.
Turbulent combustion in high Mach number flows
by Liu, Qili, Ph.D.  University of Notre Dame. 2015: 142 pages; 3733909.
16.
Hot Jet Ignition Delay Characterization of Methane and Hydrogen at Elevated Temperatures
by Tarraf Kojok, Ali, M.S.M.E.  Purdue University. 2017: 155 pages; 10615574.
17.
Fiber -based laser transmitter and laser spectroscopy of the oxygen A-band for remote detection of atmospheric pressure
by Stephen, Mark Andrew, Ph.D.  University of Maryland, Baltimore County. 2008: 157 pages; 3316163.
19.
Transient flow characteristics of a high speed rotary valve
by Browning, Patrick H., Ph.D.  West Virginia University. 2009: 153 pages; 3381173.
21.
Electro Optical Frequency Modulation on Silicon Integrated Circuits With 1300nm and 1064nm Laser Sources
by Pagano, Carlo, Eng.D.  Technische Universitaet Berlin (Germany). 2015: 240 pages; 10697539.
22.
Highly Relativistic Laser Interactions With Ordered Nanostructures
by Hollinger, Reed, Ph.D.  Colorado State University. 2019: 93 pages; 13808339.
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26.
The Impact of Water Injection on Spark Ignition Engine Performance under High Load Operation
by Worm, Jeremy, Ph.D.  Michigan Technological University. 2017: 295 pages; 10684513.
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28.
Onboard Hydrogen Generation for a Spark Ignition Engine via Thermochemical Recuperation
by Silva, Isaac Alexander, M.S.  University of California, Davis. 2014: 93 pages; 1585124.
29.
Parametric combustion modeling for ethanol-gasoline fuelled spark ignition engines
by Yeliana, Ph.D.  Michigan Technological University. 2010: 217 pages; 3439138.
30.
Feasibility of low energy plasma torch for reaction control thruster ignition
by Park, Chunyoung, M.S.  California State University, Long Beach. 2015: 70 pages; 1587917.
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