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1.
Lagrangian Submanifolds near Lagrangian Spheres
by Sun, Yuhan, Ph.D.  State University of New York at Stony Brook. 2020: 84 pages; 27994071.
2.
Minimal measures for Lagrangian systems
by Wang, Fang, Ph.D.  Northwestern University. 2008: 89 pages; 3336762.
3.
Polyfolds of Lagrangian Floer Theory in All Genera
by Jemison, Michael Louis, Jr., Ph.D.  Princeton University. 2020: 314 pages; 27663451.
4.
Numerical and statistical methods for Lagrangian actinometry
by Cox, Eric, Ph.D.  Purdue University. 2010: 221 pages; 3417958.
5.
A multidimensional Eulerian-Lagrangian model to predict organism distribution
by Wang, Yushi, M.S.  The University of Iowa. 2009: 107 pages; 1473717.
7.
Parallelizing a data intensive Lagrangian stochastic particle model using graphics processing units
by Hurst, Jonathan George, M.S.  University of Colorado at Boulder. 2010: 101 pages; 1481219.
8.
On lagrangian formulation of higher superspin irreducible representations of the super-Poincaré group
by Koutrolikos, Konstantinos, Ph.D.  University of Maryland, College Park. 2013: 143 pages; 3611789.
9.
Circulation at the Delaware Bay mouth from the Lagrangian and Eulerian perspectives
by Muscarella, Philip A., Ph.D.  University of Delaware. 2011: 179 pages; 3465810.
10.
Development of Multistep and Degenerate Variational Integrators for Applications in Plasma Physics
by Ellison, Charles Leland, Ph.D.  Princeton University. 2016: 272 pages; 10090246.
11.
Space-time Extended Finite Element Method with Applications to Fluid-structure Interaction Problems
by Nagai, Toshiki, Ph.D.  University of Colorado at Boulder. 2018: 348 pages; 10844711.
12.
The energy delivery paradigm
by Bukowski, Stephen A., Ph.D.  New Mexico State University. 2014: 164 pages; 3582400.
13.
Semiclassical Analysis of Fundamental Amplitudes in Loop Quantum Gravity
by Hedeman, Austin J., Ph.D.  University of California, Berkeley. 2014: 217 pages; 3686321.
14.
Aspects of the Three-Dimensionality of the Southern Ocean Overturning Circulation
by Tamsitt, Veronica, Ph.D.  University of California, San Diego. 2018: 189 pages; 10748784.
15.
Numerical modeling of LOX/methane impingement, evaporation, and combustion
by Harpal, Naimishkumar, M.S.  California State University, Long Beach. 2011: 80 pages; 1490385.
16.
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.
17.
On Shape Optimization With Non-Linear Partial Differential Equations
by Sturm, Kevin, Dr.Nat.  Technische Universitaet Berlin (Germany). 2015: 154 pages; 10696887.
18.
The mechanics and control of robotic systems exploiting viscous phenomena for planar locomotion
by Hassing, Peter Mikael, Ph.D.  The University of North Carolina at Charlotte. 2015: 171 pages; 3711610.
19.
Real-Space Localization Methods for Minimizing the Kohn-Sham Energy
by Millstone, Marc, Ph.D.  New York University. 2011: 84 pages; 3466938.
20.
Ocean Connectivity and Nearshore Marine Species Population Dynamics
by Watson, James R., Ph.D.  University of California, Santa Barbara. 2011: 232 pages; 3473803.
21.
Fermion masses and new symmetries beyond the Standard Model
by Grossmann, Benjamin Nathanial, Ph.D.  Oklahoma State University. 2010: 103 pages; 3443393.
23.
Study of airflow and particle transport in acinar airways of the human lung
by Kumar, Haribalan, Ph.D.  The University of Iowa. 2011: 174 pages; 3473207.
24.
Symmetries of wave equations of statistical optics
by Mitofsky, Andrea M., Ph.D.  University of Illinois at Urbana-Champaign. 2008: 166 pages; 3337877.
25.
Effective field theories for quantum chromo- and electrodynamics
by Zhang, Ou, Ph.D.  The University of Arizona. 2016: 446 pages; 10247445.
26.
Mathematical Investigation of Hydrodynamic Contributions to Amoeboid Cell Motility in Physarum polycephalum
by Lewis, Owen Leslie, Ph.D.  University of California, Davis. 2014: 126 pages; 3685252.
27.
Dynamics of settling charged particles in turbulence: Theory and experiments
by Lu, Jiang, Ph.D.  Michigan Technological University. 2010: 185 pages; 3439129.
28.
A comparison of grid-based techniques for Navier-Stokes fluid simulation in computer graphics
by Chrisman, Cameron, M.S.  University of California, San Diego. 2008: 76 pages; 1450292.
29.
Convex optimization techniques and their application in hyperspectral video processing
by Gerhart, Torin, M.S.  California State University, Long Beach. 2013: 57 pages; 1527552.
30.
Structural Strength at Large Strain and under Softening Compression Damage
by Gattu, Mahendra, Ph.D.  Northwestern University. 2012: 114 pages; 3547840.
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