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1.
Surface classification via unmanned aerial vehicles gripper finger deflection
by Van Hoosear, Christopher A., M.S.Eng.  University of the Pacific. 2013: 88 pages; 1548752.
2.
Real time target allocation in cooperative unmanned aerial vehicles
by Kudleppanavar, Ganesh, M.S.  California State University, Long Beach. 2015: 41 pages; 1603968.
3.
Attack of the drones: Unmanned Aerial Vehicles and moral problems
by Kirk, Tyler B., M.A.  State University of New York at Albany. 2014: 45 pages; 1555262.
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Use of Model-Based Design Methods for Enhancing Resiliency Analysis of Unmanned Aerial Vehicles
by Knox, Lenora A., D.Engr.  The George Washington University. 2017: 154 pages; 10265223.
7.
Determination of Power Required through Accelerated Flight with Application to Unmanned Vehicles
by Soltmann, Lars Michael, Ph.D.  North Carolina State University. 2016: 102 pages; 10585502.
11.
Communication complexity involving Unmanned Aerial Systems in a simulated NAS environment
by Roberts, Zachary, M.S.  California State University, Long Beach. 2015: 53 pages; 1573110.
12.
Unmanned Aerial Vehicle Based Structure from Motion Biomass Inventory Estimates
by Bedell, Emily Jane, M.S.  Portland State University. 2016: 60 pages; 10244001.
13.
Low-Altitude Operation of Unmanned Rotorcraft
by Scherer, Sebastian, Ph.D.  Carnegie Mellon University. 2011: 123 pages; 3468040.
14.
Uninhabited Aerial Vehicles and Structure from Motion: A fresh approach to photogrammetry
by Nesbit, Paul R., M.A.  California State University, Long Beach. 2014: 177 pages; 1526938.
18.
Open source UAV platform development for aerial photography
by Richards, Daniel L., M.S.  California State University, Long Beach. 2015: 123 pages; 1587919.
19.
Unmanned Undersea Vehicles: The Navy's New Platforms Need a Tailored Environmental Law Framework
by Hoy, Cara Addison, LL.M.  The George Washington University. 2018: 70 pages; 10821870.
20.
Putting Bodie in its place: A thematic gazetteer of a California ghost town
by Winslow, Scott E., M.A.  California State University, Long Beach. 2014: 143 pages; 1526972.
21.
Stream function path planning and control for unmanned ground vehicles
by Daily, Robert L., Ph.D.  Auburn University. 2008: 188 pages; 3333176.
22.
A Model-Based Framework for Predicting Autonomous Unmanned Ground Vehicle System Performance
by Young, Stuart Harry, Ph.D.  The George Washington University. 2016: 135 pages; 10124164.
23.
An adaptable, low cost test-bed for unmanned vehicle systems research
by Goppert, James M., M.S.A.A.  Purdue University. 2011: 180 pages; 1501216.
24.
Semi-Autonomous Small Unmanned Aircraft Systems for Sampling Tornadic Supercell Thunderstorms
by Elston, Jack S., Ph.D.  University of Colorado at Boulder. 2011: 293 pages; 3453706.
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Coordinated searching and target identification using teams of autonomous agents
by Lum, Christopher, Ph.D.  University of Washington. 2009: 207 pages; 3356644.
27.
Targeted Killing, Drones and International Law: How U.S. Practice is Shaping International Law
by Ochse, Aaron Richard, LL.M.  The George Washington University. 2013: 149 pages; 1556566.
28.
Motion coordination of multiple autonomous vehicles in a spatiotemporal flowfield
by Peterson, Cameron Kai, Ph.D.  University of Maryland, College Park. 2012: 122 pages; 3543193.
29.
Predicting and Enhancing Spring Wheat Grain Protein Content Through Sensing and In-season Nitrogen Fertilization
by Rellaford, Matthew John, M.S.  North Dakota State University. 2018: 104 pages; 10790940.
30.
Design and Implementation of a Controller for a BeagleBone Quadcopter
by Olejnik, Peter, M.S.  Rose Hulman Institute of Technology. 2016: 220 pages; 10140288.
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