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1.
A Cyber Physical Approach and Framework for Micro Devices Assembly
by Albuhamood, Sadiq, Ph.D.  Oklahoma State University. 2017: 116 pages; 10608345.
2.
Fire Ground Decision-Making: Transferring Virtual Knowledge to the Physical Environment
by Gillespie, Steven, Ed.D.  Grand Canyon University. 2013: 158 pages; 3590526.
3.
Interactive control of deformable-object animations with intuitive motion pattern adherence
by Transue, Shane Michael, M.S.  University of Colorado at Denver. 2014: 148 pages; 1556899.
4.
Cyber Physical Security Analysis for Synchrophasor Applications
by Liu, Ren, Ph.D.  Washington State University. 2017: 148 pages; 10639030.
5.
Analysis of experiments to validate computer models with binary output
by Chapin, Patrick Samuel, Ph.D.  Iowa State University. 2009: 172 pages; 3389285.
7.
Optimizing router nodes placement for designing distributed sensor network
by Ganesan, Arun, M.S.  California State University, Long Beach. 2014: 86 pages; 1527703.
8.
Feel, imagine and learn! - Haptic augmented simulation and embodied instruction in physics learning
by Han, In Sook, Ed.D.  Teachers College, Columbia University. 2010: 152 pages; 3425018.
10.
Modeling and Analysis of Elements in Structural Mechanics
by Drazin, Paul Luke, Ph.D.  University of California, Berkeley. 2017: 130 pages; 10276506.
12.
Duty-Cycle Based Physical Unclonable Functions (PUFs) for Hardware Security Applications
by Azhar, Mahmood Javed, Ph.D.  University of South Florida. 2018: 100 pages; 10980455.
13.
MiNT: A reconfigurable mobile multi-hop wireless network testbed
by De, Pradipta, Ph.D.  State University of New York at Stony Brook. 2007: 185 pages; 3299705.
14.
Hardware-in-the-Loop Modeling and Simulation Methods for Daylight Systems in Buildings
by Mead, Alex Robert, Ph.D.  University of California, Berkeley. 2017: 378 pages; 10283149.
15.
Use of Multi-Fidelity and Surrogate Models to Reduce the Cost of Developing Physics-Based Systems
by Hebert, James L., Ph.D.  The George Washington University. 2015: 134 pages; 3687685.
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Modeling the workflow of one primary care physician-nurse team
by Wooldridge, Abigail R., M.Eng.  University of Louisville. 2012: 143 pages; 1521242.
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20.
Simulating soft bodied robots: Methods, benefits, and potential applications
by Saunders, Frank James, M.S.  Tufts University. 2009: 76 pages; 1463932.
21.
Establishing an advanced engineering framework for engineering decision making
by McCorkle, Douglas Stinson, Ph.D.  Iowa State University. 2008: 191 pages; 3383366.
23.
Interactive physically-based sound simulation
by Raghuvanshi, Nikunj, Ph.D.  The University of North Carolina at Chapel Hill. 2010: 187 pages; 3418735.
26.
Force field development with GOMC, a fast new Monte Carlo molecular simulation code
by Mick, Jason Richard, Ph.D.  Wayne State University. 2016: 171 pages; 10105010.
27.
Fast physics-based simulation of vascular surgery
by Jichuan, Wu, Ph.D.  National University of Singapore (Singapore). 2015: 177 pages; 10006103.
28.
A contact model for geometrically accurate treatment of polytopes in simulation
by Williams, Jedediyah Freeman, Ph.D.  Rensselaer Polytechnic Institute. 2014: 177 pages; 3684118.
29.
Scalable software control of million-element cyber-physical systems using a graphics processing unit
by Krunic, Veljko, Ph.D.  University of Colorado at Boulder. 2010: 260 pages; 3433308.
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