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2.
Essays in Environmental & Resource Economics
by Biardeau, LĂ©opold Temoana Marc, Ph.D.  University of California, Berkeley. 2020: 99 pages; 28090611.
3.
Intelligent approaches for modeling and optimizing HVAC systems
by Tesiero, Raymond Charles, III, Ph.D.  North Carolina Agricultural and Technical State University. 2014: 400 pages; 3672500.
4.
The Link Between HVAC Type and Student Achievement
by Jaramillo, Ana Maria, Ph.D.  Virginia Polytechnic Institute and State University. 2013: 100 pages; 10596469.
5.
Enhancing Performance of Large HVAC Systems in Libya to Optimize Energy and Water Consumption
by Shlghom, Mutasim Hadi Taher, M.E.  University of Kansas. 2013: 94 pages; 1549203.
6.
Modeling of Solar-Powered Single-Effect Absorption Cooling System and Supermarket Refrigeration/HVAC System
by Bahman, Ammar Mohammad Khalil, M.S.M.E.  University of South Florida. 2011: 107 pages; 1496440.
8.
Design with Comfort: A Systems and Materials Approach to Expanded Psychrometrics
by Teitelbaum, Eric Isaac, Ph.D.  Princeton University. 2020: 270 pages; 27994724.
9.
Quantifying Heterogeneities in the Risk of Local Aedes aegypti-Borne Virus Outbreaks in California
by Donnelly, Marisa Anne Pella, Ph.D.  University of California, Davis. 2020: 156 pages; 27996004.
10.
The determinants and trends in household energy consumption in United States during 2001-2009
by Karuppusamy, Sadasivan, Ph.D.  The University of Texas at San Antonio. 2013: 207 pages; 3607575.
11.
Performance and applications of residential building energy grey-box models
by Siemann, Michael, Ph.D.  University of Maryland, College Park. 2013: 166 pages; 3587220.
12.
The Energy Implications of Air-Side Fouling in Constant Air Volume HVAC Systems
by Wilson, Eric J.H., M.S.  University of Colorado at Boulder. 2011: 123 pages; 1499965.
13.
15.
Variable condition energy efficiency rating of a room air conditioner
by Allsup, Carl B., M.S.  The University of Texas at San Antonio. 2008: 95 pages; 1450653.
16.
Targeted Efficiency: Using Customer Meter Data to Improve Efficiency Program Outcomes
by Borgeson, Samuel Dalton, Ph.D.  University of California, Berkeley. 2013: 206 pages; 3686197.
17.
Modeling a Hospital in South Louisiana for Evaluation of Potential Energy Savings
by Sardoueinasab, Zahra, M.S.  University of Louisiana at Lafayette. 2017: 72 pages; 10617065.
19.
Energy and exergy analysis of data center economizer systems
by Meakins, Michael E., M.S.  San Jose State University. 2011: 109 pages; 1495081.
20.
Hybrid solar reflective coatings based on colloidal and solvothermal synthesis
by Zheng, Xing, Ph.D.  National University of Singapore (Singapore). 2015: 184 pages; 10006108.
23.
24.
Analysis of environmental sounds
by Lee, Keansub, Ph.D.  Columbia University. 2009: 116 pages; 3388467.
26.
Comparison of waste heat driven and electrically driven cooling systems for a high ambient temperature, off-grid application
by Horvath, Christopher P., M.S.M.E.  University of Maryland, College Park. 2012: 106 pages; 1533887.
27.
Detecting attacks in building automation system
by Nama, Sumanth, M.S.  California State University, Long Beach. 2015: 45 pages; 1597784.
28.
Smart Building Design: Optimal Placement of Smart Plug Controller and Energy/Cost Saving Opportunities in CSULB-ECS
by Pandya, Saurabh J., M.S.  California State University, Long Beach. 2018: 61 pages; 10742897.
29.
Economic analyses of plug-in hybrid electric vehicles, carbon markets, and temperature-sensitive loads
by Mo, Jung Youn, Ph.D.  Cornell University. 2012: 164 pages; 3506753.
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