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Accelerating Energy Efficiency Improvements in Room Air Conditioners in India: Potential, Costs-Benefits, and Policies. 2017. LBNL-1005798..
"Economic and environmental benefits of market-based power-system reform in China: A case study of the Southern grid system." Resources, Conservation and Recycling 153 (2020) 104558..
Economic and environmental benefits of market-based power-system reform in China: provincial versus regional grid optimization. 2019. LBNL-2001352..
"Assessing the Cost-Effective Energy Saving Potential from Top-10 Appliances in India." 9th International Conference on Energy Efficiency in Domestic Appliances and Lighting (EEDAL). 2017..
Technical and Economic Aspects of Designing an Efficient Room Air-Conditioner Program in India. 2017. 2001048..
Impact of Large Scale Energy Efficiency Programs On Consumer Tariffs and Utility Finances in India. 2011. LBNL-4258E..
Techno-Economic Assessment of Deep Electrification of Passenger Vehicles in India. 2017. LBNL-1007121..
ElectroChemical Arsenic Removal (ECAR) for Rural Bangladesh—Merging Technology with Sustainable Implementation. . Berkeley: Lawrence Berkeley National Laboratory, 2009..
"Electrochemical Arsenic Remediation for Rural Bangladesh." Lawrence Berkeley National Laboratory, 2008..
China’s Coal: Demand, Constraints, and Externalities. . Lawrence Berkeley National Laboratory, 2009..
Lifecycle Assessment of Beijing-Area Building Energy Use and Emissions: Summary Findings andPolicy Applications. Lawrence Berkeley National Laboratory, 2010..
"Environmental implications of energy policy in china." Environmental Politics 15.2 (2006) 248-270..
Urban Form Energy Use and Emissions in China: Preliminary Findings and Model Proof of Concept. Lawrence Berkeley National Laboratory, 2010..
"An Analysis of Solar Home Paired Sales across Six States." The Appraisal Journal 84.1 (2016) 27-42. LBNL-1005058..
Appraising into the Sun: Six-State Solar Home Paired-Sales Analysis. 2015. LBNL-1002778..
Water-Energy Considerations in Californian’s Agricultural Sector and Opportunities Provide Flexibility to California’s Grid. 2019. LBNL-2001216..
"A Review of Existing Commercial Energy Use Intensity and Load Shape Studies." ACEEE Summer Study on Energy Efficiency in Buildings. ACEEE, 1990. LBNL-29209..
Using Cool Roofs to Reduce Energy Use, Greenhouse Gas Emissions, and Urban Heat-island Effects. LBNL, 2011. LBNL-4746E..
Integrated Estimation of Commerical Sector End-Use Load Shapes and Energy Use Intensities in the PG&E Service Area. LBNL, 1993. LBNL-34263..
Integrated Estimation of Commercial Sector End-Use Load Shapes and Energy Use Intensities, Phase II. LBNL, 1991. LBNL-30401..
"A New Approach to Estimate Commercial Sector End-Use Load Shapes and Energy Use Intensities." ACEEE Summer Study on Energy Efficiency in Buildings. Vol. 1994. Berkeley: LBNL, 1994. LBNL-35372..
Integrated Estimation of Commercial Sector End‑Use Load Shapes and Energy Use Intensities, Final Report. 1989. LBL-27512..
The Operation Result of the Demonstration of Energy Networks of Electricity, Heat, and Hydrogen at an Apartment Building in 2007. National Institute of Advanced Industrial Science and Technology, 2008..
"Designing for Smoking Rooms." ASHRAE Journal 45 (2003) 26-32..