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1.
The Galerkin boundary element method for three-dimensional transient Stokes flow
by Choi, Young Ok, Ph.D.  Southern Methodist University. 2015: 113 pages; 3725258.
3.
Development of the Boundary Element Method for the Analyses of Advanced Materials
by Chen, Xiaolin, Ph.D.  University of Cincinnati. 2004: 168 pages; 10857132.
4.
Earthquake source mechanics and wave propagation in sedimentary basins using the finite element method
by Ramirez Guzman, Leonardo, Ph.D.  Carnegie Mellon University. 2008: 141 pages; 3345279.
5.
The eXtended Finite Element Method for special problems with moving interfaces
by Smith, Bryan G., Ph.D.  Northwestern University. 2008: 107 pages; 3331158.
6.
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.
8.
Numerical solutions of Maxwell's equations in 1D, 2D, and 3D via the finite element method
by Sahib, Sonny S., M.S.  California State University, Long Beach. 2010: 98 pages; 1493052.
9.
Three-dimensional finite element modeling of blood flow in the coronary arteries
by Kim, Hyun Jin, Ph.D.  Stanford University. 2009: 231 pages; 3364503.
11.
A three-dimensional finite element method to elastic wave propagation in strong ground motion
by Tran, Minh N., M.S.  California State University, Long Beach. 2011: 107 pages; 1504543.
12.
Verification of Seismic Motion Input into the Finite Element Models
by Jeong, Chang-Gyun, M.S.  University of California, Davis. 2013: 181 pages; 1546211.
13.
A Finite Element Method for Linear Modeling and Control of a Single Flexible Link Robotic Manipulator
by Trutter, H. Benjamin, M.S.  Southern Illinois University at Edwardsville. 2014: 111 pages; 1560924.
14.
Partitioned Polytopal Finite-Element Methods for Nonlinear Solid Mechanics
by Giffin, Brian Doran, Ph.D.  University of California, Davis. 2018: 148 pages; 10752138.
15.
Simulating Intervertebral Disc Mechanics Using Finite Element Method
by Yang, Bo, D.Eng.  University of California, Berkeley. 2019: 201 pages; 13885856.
17.
Simulation of unsteady incompressible turbulent flows using Galerkin finite element and adaptive grids
by Ebeida, Mohamed S., Ph.D.  University of California, Davis. 2008: 145 pages; 3336416.
19.
Application of Groebner bases to geometrically nonlinear analysis of axisymmetric circular isotropic plates
by Harrell, Timothy M., M.S.  Tennessee Technological University. 2014: 168 pages; 1567200.
20.
22.
A 2D CFD Simulation for Wind Turbine Wakes Using a Porous Element
by Acker, Matthew R., M.S.  Northern Arizona University. 2018: 133 pages; 10791441.
23.
Stabilized finite element methods for coupled flow and geomechanics
by White, Joshua A., Ph.D.  Stanford University. 2009: 96 pages; 3382958.
24.
Multiscale modeling of interwoven Kevlar fibers based on random walk to predict yarn structural response
by Recchia, Stephen, Ph.D.  Rutgers The State University of New Jersey - New Brunswick. 2016: 109 pages; 10095960.
25.
Fluid Structure Interaction with Applications in Structural Failure
by Lea, Patrick D., Ph.D.  Northwestern University. 2013: 134 pages; 3605735.
26.
An Embedded Method for Near-Wellbore Streamline Simulation
by Wang, Bin, M.S.  University of Louisiana at Lafayette. 2017: 76 pages; 10637616.
27.
A Finite Element-based Adaptive Energy Response Function Method for Curvilinear Progressive Fracture
by Wagner, David, Ph.D.  The University of Texas at San Antonio. 2018: 181 pages; 10845946.
28.
Implementation of the Constitutive Equations of the Gurson Material Model in Finite Element Code
by Darayi, Mohsen, M.S.  Southern Illinois University at Edwardsville. 2018: 66 pages; 10808455.
29.
Reliability of Soldier Joints in Embedded Packages Using Finite Element Method
by Yunusa, Valeri Aisha, M.S.  Portland State University. 2018: 86 pages; 10843775.
30.
Electrostatic Levitation Control System Development via Image Processing Supported by Finite Element Simulation
by Raman, Srikrishna, M.S.  University of Louisiana at Lafayette. 2018: 91 pages; 10981533.
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