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1.
Effects of Payload Motion on the Attitude Behavior of a Spinning Spacecraft
by Gowri Shankar, Srihari, M.S.  University of California, Davis. 2011: 73 pages; 1507215.
2.
The Location-Scheduled Control Methodology as Applied to Nanosatellites
by Sorgenfrei, Matthew Charles, Ph.D.  University of California, Davis. 2013: 101 pages; 3565559.
3.
A formal approach to specifying and verifying spacecraft behavior
by McInnes, Allan I. S., Ph.D.  Utah State University. 2007: 290 pages; 3279572.
4.
Spacecraft Formation Control: Adaptive PID-Extended Memory Recurrent Neural Network Controller
by Gonzalez, Juan, M.S.  California State University, Long Beach. 2018: 76 pages; 10978237.
5.
Large scale nonlinear programming for the optimization of spacecraft trajectories
by Arrieta-Camacho, Juan Jose, Ph.D.  Carnegie Mellon University. 2007: 134 pages; 3258587.
6.
Navigation algorithm for spacecraft lunar landing
by Paturi, Sasikanth Venkata Sai, M.S.  Mississippi State University. 2010: 124 pages; 1479262.
7.
Experimental investigations of the lunar photoelectron environment and related dust dynamics
by Dove, Adrienne Rathert, Ph.D.  University of Colorado at Boulder. 2012: 139 pages; 3527283.
8.
Analysis of a novel approach for determining atmospheric density from satellite drag
by Pilinski, M. D., M.S.  University of Colorado at Boulder. 2008: 150 pages; 1456688.
10.
Low-energy ballistic lunar transfers
by Parker, Jeffrey S., Ph.D.  University of Colorado at Boulder. 2007: 481 pages; 3284440.
11.
Attitude Dynamics, Stability, and Control of a Heliogyro Solar Sail
by Pimienta-Penalver, Adonis Reinier, Ph.D.  State University of New York at Buffalo. 2017: 150 pages; 10217274.
12.
Design, Fabrication, and Testing of a Hopper Spacecraft Simulator
by Mucasey, Evan Phillip Krell, M.S.  Lehigh University. 2013: 127 pages; 1543165.
14.
Lost in Space: Autonomous Deep Space Navigation
by Dahir, Andrew Russell, Ph.D.  University of Colorado at Boulder. 2020: 192 pages; 27737615.
15.
Mars weather and predictability: Modeling and ensemble data assimilation of spacecraft observations
by Greybush, Steven J., Ph.D.  University of Maryland, College Park. 2011: 161 pages; 3478852.
16.
Surfactant Dynamics: Spreading and Wave Induced Dynamics of a Monolayer
by Strickland, Stephen Lee, Ph.D.  North Carolina State University. 2015: 215 pages; 10110541.
18.
Application of X-ray pulsar navigation: A characterization of the Earth orbit trade space
by Yu, Wayne Hong, M.S.  University of Maryland, College Park. 2015: 201 pages; 10012594.
19.
Angles-only navigation for autonomous orbital rendezvous
by Woffinden, David C., Ph.D.  Utah State University. 2008: 319 pages; 3316106.
20.
Automated generation and optimization of ballistic lunar capture transfer trajectories
by Griesemer, Paul Ricord, Ph.D.  The University of Texas at Austin. 2009: 175 pages; 3372454.
22.
Autonomous Sun-Direction Estimation Using Partially Underdetermined Coarse Sun Sensor Configurations
by O'Keefe, Stephen A., Ph.D.  University of Colorado at Boulder. 2015: 175 pages; 3704787.
23.
Real-Time Performance Feedback for the Manual Control of Spacecraft
by Karasinski, John Austin, M.S.  University of California, Davis. 2016: 137 pages; 10241293.
24.
Computer vision for dual spacecraft proximity operations – A feasibility study
by Stich, Melanie Katherine, M.S.  University of California, Davis. 2015: 135 pages; 1604072.
25.
26.
Liquid Systems for Carbon Dioxide Removal in Spacecraft Environments
by Paragano, Matthew Vincent, Ph.D.  Yale University. 2017: 187 pages; 10783463.
27.
Application of Plasma on Reentry Vehicle Communication and Interplanetary Spacecraft Sterilization
by Fenstermacher, Jarrod J., D.Sc.  The George Washington University. 2012: 196 pages; 3490103.
28.
Saturation effects in VLF triggered emissions
by Gibby, Andrew Ryan, Ph.D.  Stanford University. 2008: 177 pages; 3313814.
30.
A thermal analysis and design tool for small spacecraft
by VanOutryve, Cassandra Belle, M.S.  San Jose State University. 2008: 80 pages; 1463378.
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