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1.
Modeling and simulation of large scale stirred tank
by Neuville, John R., Ph.D.  University of South Carolina. 2010: 380 pages; 3413263.
2.
Coupling Renewable Energy Supply with Deferrable Demand
by Papavasiliou, Anthony, Ph.D.  University of California, Berkeley. 2011: 99 pages; 3499039.
5.
Analysis and simulation of energy use and cost at a municipal wastewater treatment plant
by Feng, Yilu, M.S.  University of Maryland, College Park. 2011: 278 pages; 1501264.
6.
Power management and frequency regulation for microgrid and smart grid: A real-time demand response approach
by Pourmousavi Kani, Seyyed Ali, Ph.D.  Montana State University. 2014: 440 pages; 3637101.
7.
Frequency control via distributed demand response in smart grid
by N., Mohammad Reza Vedady Moghadam, Ph.D.  National University of Singapore (Singapore). 2015: 161 pages; 10006094.
9.
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.
10.
Modeling, Analysis, and Control of Demand Response Resources
by Mathieu, Johanna L., Ph.D.  University of California, Berkeley. 2012: 180 pages; 3526638.
11.
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.
13.
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.
14.
Automated demand response applied to a set of commercial facilities
by Lincoln, Donald F., Ph.D.  The University of New Mexico. 2009: 195 pages; 3390836.
15.
The influence of impeller designs on the performance of a vortex pump
by Gerlach, Angela, Ph.D.  Technische Universitaet Berlin (Germany). 2018: 11014316.
16.
Comparison of ad-hoc on demand distance vector and enhanced-ad-hoc on demand distance vector on vehicular ad-hoc networks
by Chandwasker, Tanmay, M.S.  California State University, Long Beach. 2016: 51 pages; 10011277.
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Optimal investment in wind and solar power in California
by Fripp, Matthias, Ph.D.  University of California, Berkeley. 2008: 250 pages; 3388273.
20.
Forecasting grid capacity service prices for procurement and risk management in integra ted forward markets
by Edwards, Jason Scott, M.A.  California State University, Long Beach. 2013: 38 pages; 1527482.
21.
Effects of aging and crystal attributes on particle size distributions in breakage experiments in stirred vessels
by Reeves, Sheena Magtoya, Ph.D.  Mississippi State University. 2011: 233 pages; 3450341.
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Promotion induced competitive effects: Two essays
by Airani, Rajeev, Ph.D.  Old Dominion University. 2009: 143 pages; 3377887.
24.
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.
25.
The energy delivery paradigm
by Bukowski, Stephen A., Ph.D.  New Mexico State University. 2014: 164 pages; 3582400.
26.
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.
29.
A Better Steam Engine: Designing a Distributed Concentrating Solar Combined Heat and Power System
by Norwood, Zachary Mills, Ph.D.  University of California, Berkeley. 2011: 125 pages; 3469470.
30.
An Econometric Investigation of the Bullwhip Effect—The Influence of Demand and Supply in the Automobile Industry
by Chiang, Chung-Yean, Ph.D.  State University of New York at Buffalo. 2011: 144 pages; 3475302.
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