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1.
Development of Vehicle Dynamics Control for Wheel-Motored Vehicles
by Varnhagen, Scott Julian, Ph.D.  University of California, Davis. 2014: 104 pages; 3685305.
4.
Simulation and Analysis of the Wheel Wander on Viscoelastic Pavement Structures
by Tan, Xiaoshu, M.S.  University of Nevada, Reno. 2013: 107 pages; 1545736.
5.
Bicycle dynamics: modelling and experimental validation
by Peterson, Dale Lukas, Ph.D.  University of California, Davis. 2013: 101 pages; 3602188.
6.
Robot with Three Independently Steerable Wheels
by Taghizadeh, Mohammad, M.S.  California State University, Long Beach. 2018: 51 pages; 10784154.
7.
Prediction of permanent deformation in asphalt concrete
by Carvalho, Regis Luis Egual de, Ph.D.  University of Maryland, College Park. 2012: 262 pages; 3517762.
8.
Kinematic analysis and control design of a retractable wheel mechanism using optimal control theory
by Safi Samghabadi, Pedram, M.Sc.  California State University, Long Beach. 2013: 53 pages; 1527340.
9.
On information representation in the brain
by Tee, James Seng Khien, Ph.D.  New York University. 2017: 126 pages; 10188255.
10.
A proactive approach to train control
by Thurston, David F., Ph.D.  Temple University. 2012: 173 pages; 3510450.
11.
Energy harvesting from braking commuter trains
by Mehrotra, Shobhit, M.S.  California State University, Long Beach. 2014: 90 pages; 1526931.
13.
Reaction wheel actuation for stabilization and efficiency improvement in planar bipeds
by Brown, Travis L., Ph.D.  University of Notre Dame. 2016: 245 pages; 10004967.
14.
Family dinner time: Assessing the effectiveness of a “Meal Wheel” to promote conversation
by Berry, Kelsey A., M.S.  Southern Illinois University at Carbondale. 2012: 121 pages; 1514199.
15.
Analysis and Application of Passive Gait Rehabilitation Methods
by Handzic, Ismet, Ph.D.  University of South Florida. 2014: 338 pages; 3631326.
16.
Simulation, kriging, and visualization of circular-spatial data
by Morphet, William J., Ph.D.  Utah State University. 2009: 391 pages; 3359875.
17.
Creative Learning for Intelligent Robots
by Liao, Xiaoqun, Ph.D.  University of Cincinnati. 2006: 295 pages; 10857161.
19.
Influence of frame stiffness and rider position on bicycle dynamics: An analytical study
by Williams, Trevor, M.S.  The University of Wisconsin - Milwaukee. 2015: 92 pages; 1600631.
20.
The role of the dopaminergic system in the regulation of physical activity in mice
by Knab, Amy Marie, Ph.D.  The University of North Carolina at Charlotte. 2009: 147 pages; 3358572.
21.
Dynamic Gaussian Process Models for Model Predictive Control of Vehicle Roll
by Broderick, David J., Ph.D.  Auburn University. 2012: 121 pages; 3520452.
23.
Design, analysis, and development of cost effective canine wheelchairs
by Fowler, Edward Bros, M.Eng.  University of Louisville. 2008: 154 pages; 1462883.
24.
Control and Steering of a Small 3D Printed Rover and its Applications to Engineering Education
by Bleything, Talesa Rene, M.S.  University of California, San Diego. 2016: 109 pages; 10195728.
27.
Collision dynamics modeling of crash energy management passenger rail equipment
by Jacobsen, Karina M., M.S.  Tufts University. 2008: 182 pages; 1449721.
28.
An Integrated Approach to Identify Thoracic Injuries in Rollover Crashes
by Tahan, Fadi J., D.Sc.  The George Washington University. 2014: 333 pages; 3611884.
29.
Orientation invariant characteristics of deformable bodies in multibody dynamics
by Ribaric, Adrijan-Petar, Ph.D.  The University of Arizona. 2012: 164 pages; 3522714.
30.
Using analogy to overcome brittleness in AI systems
by Klenk, Matthew Evans, Ph.D.  Northwestern University. 2009: 213 pages; 3352621.
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