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1.
Search Methods for Mobile Manipulator Performance Measurement
by Amoako-Frimpong, Samuel, M.S.  Marquette University. 2018: 100 pages; 10841175.
2.
A serial-parallel hybrid robot for machining of complex surfaces
by Shijun, Yan, Ph.D.  National University of Singapore (Singapore). 2015: 166 pages; 10006111.
3.
Design and Control of a Planar Cable Suspended Parallel Manipulator
by Montgomery, Forrest, M.S.  University of Louisiana at Lafayette. 2017: 125 pages; 10608124.
4.
Understanding How to Use Mobile Marketing in Small Businesses
by Doleman, John P., D.B.A.  Capella University. 2017: 134 pages; 10621908.
6.
Creative Learning for Intelligent Robots
by Liao, Xiaoqun, Ph.D.  University of Cincinnati. 2006: 295 pages; 10857161.
7.
Human factors evaluation of operator interfaces for teleoperation of a dexterous manipulator
by Davis, Kevin Patrick, M.S.  University of Maryland, College Park. 2014: 96 pages; 1560960.
8.
Frankenstein's robot manipulator
by Merchut, G. Addison, M.S.  Northern Illinois University. 2013: 110 pages; 1540606.
9.
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.
10.
Smartphone Apps on the Mobile Web: An Exploratory Case Study of Business Models
by Ford, Caroline Morgan, E.D.B.  Georgia State University. 2012: 71 pages; 3547598.
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Quality assurance for delivering mobile applications that enable healthier and more productive lives
by Yemane, Habteab, M.S.  California State University, Dominguez Hills. 2014: 108 pages; 1526310.
13.
An algorithmic process for graphical simulation of manipulator motion trajectories
by Bhangaonkar, Praneel, M.S.  Northern Illinois University. 2012: 171 pages; 1513409.
15.
Human Robot Interaction Concepts for Human Supervisory Control and Telemaintenance Applications in an Industry 4.0 Environment
by Aschenbrenner, Doris, Ph.D.  Bayerische Julius-Maximilians-Universitaet Wuerzburg (Germany). 2017: 347 pages; 27766778.
16.
Concurrent Design of Path Planning Methods and Input Shaping for Flexible Mobile Robots
by Eaglin, Gerald, M.S.  University of Louisiana at Lafayette. 2018: 93 pages; 10842690.
17.
Using Simplified Models and Limited-Horizon Planning to React to Time-Critical Problems
by Lurz, Joshua Paul, D.Sc.  The George Washington University. 2019: 145 pages; 13419796.
22.
An investigation about the small business adoption of mobile commerce
by Copeland, Phillip E., D.B.A.  Capella University. 2016: 126 pages; 10182887.
23.
Trajectory planning using higher order motion specifications
by Mhawesh, Mustafa Azzam Naji, M.S.  California State University, Fullerton. 2016: 56 pages; 10243067.
24.
An Investigation of Faculty Perceptions about Mobile Learning in Higher Education
by Brown, Serena, Ed.D.  Nova Southeastern University. 2018: 145 pages; 10817578.
26.
Attributed Object Maps: Descriptive Object Models as High-level Semantic Features for Mobile Robotics
by Delmerico, Jeffrey A., Ph.D.  State University of New York at Buffalo. 2013: 147 pages; 3598629.
27.
Automated Construction of Robotic Manipulation Programs
by Diankov, Rosen, Ph.D.  Carnegie Mellon University. 2010: 239 pages; 3448143.
28.
Using mobile learning to teach reading to ninth -grade students
by Brown, Lucianne, Ph.D.  Capella University. 2008: 135 pages; 3330949.
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