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1.
Self-Timed Circuits, Memories, and Power Electronics for High-Ripple Energy Harvesting Power Supplies
by Wenck, Justin A., Ph.D.  University of California, Davis. 2010: 258 pages; 3427486.
3.
Application of Advanced Power Electronics in Renewable Energy Sources and Hybrid Generating Systems
by Esmaili, Gholamreza, Ph.D.  The Ohio State University. 2006: 147 pages; 10835744.
4.
Microfabrication and analysis of manifold microchannel coolers for power electronics
by Boteler, Lauren Marie, Ph.D.  University of Maryland, College Park. 2011: 366 pages; 3461087.
5.
Sliding Mode Power Electronics Control for Stand-Alone Photo-Voltaic Energy Systems
by Gursoy, Mehmetcan, M.S.  Southern Illinois University at Edwardsville. 2019: 112 pages; 13865497.
6.
On the Estimation of Switching Loss in Wide Band-Gap Power Electronics Systems
by New, Christopher D., M.S.  The University of Alabama. 2019: 107 pages; 27545901.
8.
Flexible and Stretchable Bacteria-Powered Biobatteries
by Gao, Yang, Ph.D.  State University of New York at Binghamton. 2020: 156 pages; 27955106.
9.
Elimination of voltage harmonics and compensation of reactive power using universal active power filter
by Kasula, Pranav, M.S.  California State University, Long Beach. 2016: 37 pages; 10147314.
12.
Improvement of power quality in single phase systems using a unified power quality conditioner
by Mellacheruvu, Sesha Sharath Chandra, M.S.  California State University, Long Beach. 2016: 50 pages; 1606702.
13.
Three-Power Power System State Estimation Using Extended Kalman Filter with CompactRIO Implementation
by Le, Raymond, M.S.  Southern Illinois University at Edwardsville. 2015: 73 pages; 1600571.
14.
Investigations of New Fault-Tolerant Methods for Multilevel Inverters
by Mhiesan, Haider, Ph.D.  University of Arkansas. 2020: 152 pages; 27959280.
15.
The “Soft Power” Power? Brazil's Soft Power Strategy in World Politics During the Lula Presidency
by Prusa, Anna C., M.A.  The George Washington University. 2011: 84 pages; 1502441.
16.
Feasibility Study of Shunt Capacitor Banks for Power Factor Improvement of the CSULB Microgrid
by Ramakrishnan, Sanjeev, M.S.  California State University, Long Beach. 2018: 58 pages; 10784190.
17.
Integrated topologies and digital control for satellite power management and distribution systems
by Al-Atrash, Hussam J., Ph.D.  University of Central Florida. 2007: 157 pages; 3276348.
18.
Indirect Matrix Converter as Standard Power Electronic Interface
by Escobar-Mejia, Andres, Ph.D.  University of Arkansas. 2014: 148 pages; 3667722.
19.
Power quality improvement in power systems using a static VAR compensator
by Fernando, Warnakulasuriya A. M., M.S.  California State University, Long Beach. 2017: 57 pages; 10638886.
20.
Design and Automation for High Fidelity Flexible Hybrid Electronics
by Shao, Leilai, Ph.D.  University of California, Santa Barbara. 2020: 147 pages; 28089018.
21.
Phase Change Materials for Vehicle and Electronic Transient Thermal Systems
by Jankowski, Nicholas Robert, Ph.D.  University of Maryland, College Park. 2020: 493 pages; 28156652.
22.
23.
Exploring Methods for Studying Recoverability of Shipboard Electrical Power Distribution Systems
by Gudex, Jacob, M.S.  The University of Wisconsin - Milwaukee. 2019: 82 pages; 27668629.
24.
Design and Implementation of Energy Harvesting for Digital Badges and Signage
by Chang, Andrew Yok-Wah, Ph.D.  University of California, Davis. 2018: 278 pages; 10681867.
26.
High Frequency GaN Power Converters Digital Twin
by Biglarbegian, Mehrdad, Ph.D.  The University of North Carolina at Charlotte. 2018: 153 pages; 10979304.
27.
Control of Spin Qubits in a Classical Electronics Material
by Bourassa, Alexandre, Ph.D.  The University of Chicago. 2021: 245 pages; 28264903.
28.
Electric Power Grid Resilience against Electromagnetic Pulse (EMP) Disturbances
by Wang, Dingwei, M.S.  The George Washington University. 2020: 93 pages; 27956165.
30.
Different configurations of microgrids and power converters
by Alibeik, Maryam, M.S.E.C.E.  Purdue University. 2014: 95 pages; 1573479.
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