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1.
Effect of CO2 on the Response of C and N Relations to a Heat Wave in Sunflower and Corn
by Tripathee, Rajan, M.S.  The University of Toledo. 2008: 40 pages; 10835879.
2.
Detecting heat waves: comparison of various heat wave definitions with excess mortality
by Watkins, Lance Elliott, M.S.  Mississippi State University. 2014: 97 pages; 1562986.
3.
Application of RBF-FD to Wave and Heat Transport Problems in Domains with Interfaces
by Martin, B. P., Ph.D.  University of Colorado at Boulder. 2016: 145 pages; 10151046.
4.
Occupational Heat-Related Mortality in the United States, 2000-2010: Epidemiology and Policy Recommendations
by Gubernot, Diane M., Dr.P.H.  The George Washington University. 2015: 99 pages; 3670444.
5.
Impact of Heat Waves on Plant-Soil Links in Tall-Grass Prairie
by Mainali, Kumar P., M.S.  The University of Toledo. 2007: 61 pages; 10835939.
7.
Nonlinear heating of the reconnection layer by strong lower hybrid instabilities
by Wang, Yansong, Ph.D.  Princeton University. 2010: 123 pages; 3424121.
9.
Numerical simulation model on irreversibility of shock-wave process
by Huang, Longhao, M.S.  Marquette University. 2013: 108 pages; 1548476.
11.
Electromagnetic Energy Harvesting in Pursuit of Heat Radiation
by Bean, Richard A., Ph.D.  University of Nevada, Reno. 2019: 203 pages; 13882986.
12.
Surface Acoustic Wave Velocity Measurements on Surface-Treated Metals by Laser-Ultrasonic Spectroscopy
by Marines, Alberto Ruiz, Ph.D.  University of Cincinnati. 2004: 151 pages; 10857201.
13.
Performance Assessment of Predicted Heat Strain in High Heat Stress Exposures
by Long, Ronald E., Ph.D.  University of South Florida. 2011: 118 pages; 3466627.
15.
Computational study of the heat transfer and fluid structure of a shell and tube heat exchanger
by Betancourt, Arturo, M.S.  Florida Atlantic University. 2016: 84 pages; 10172609.
17.
Role of Fragility and Neighboring Domains on the Tg and Surface Wave Dynamics of Nanoconfined Polymers
by Evans, Christopher Michael, Ph.D.  Northwestern University. 2013: 264 pages; 3563716.
18.
Physics of unsteady cylinder-induced transitional shock wave boundary layer interactions
by Murphree, Zachary Ryan, Ph.D.  The University of Texas at Austin. 2009: 148 pages; 3390677.
19.
20.
Development and Application of a Numerical Framework for Improving Building Foundation Heat Transfer Calculations
by Kruis, Nathanael J. F., Ph.D.  University of Colorado at Boulder. 2015: 215 pages; 3704744.
22.
Food and heat stress in the California mussel: Evidence for an energetic trade-off between growth and survival
by Fitzgerald-DeHoog, Lindsay M., M.S.  California State University, Long Beach. 2012: 50 pages; 1520900.
24.
The trends in heat related mortality in the eastern United States
by Ahn, Joonhyun, M.A.  Western Illinois University. 2011: 131 pages; 1503928.
25.
Impedance Matching for Discrete, Periodic Media and Application to Two-Scale Wave Propagation Models
by Thirunavukkarasu, Senganal, Ph.D.  North Carolina State University. 2013: 164 pages; 3690210.
26.
WAVE-mediated Actin Assembly
by Millius, Arthur, Ph.D.  University of California, San Francisco. 2011: 164 pages; 3474952.
27.
Numerical analysis of conditions necessary for near-surface snow metamorphism
by Slaughter, Andrew Edward, Ph.D.  Montana State University. 2010: 603 pages; 3403060.
28.
Spin-wave spintronics
by Liu, Tianyu, Ph.D.  University of Missouri - Columbia. 2013: 114 pages; 10180767.
29.
Characterization of the Shock Wave Structure in Water
by Teitz, Emilie Maria, M.S.  Marquette University. 2017: 121 pages; 10267152.
30.
Upper-ocean variability in Drake Passage and the Weddell Sea: Measuring the oceanic response to air-sea and ice-ocean interactions
by Stephenson, Gordon Ronald, Jr., Ph.D.  University of California, San Diego. 2012: 136 pages; 3544197.
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