E 1.99:lbnl--60580
|
Biomimetic bonelike composites and novel bioactive glasscoatings |
1 |
E 1.99:lbnl--60584
|
Macroscopic Modeling of Polymer-Electrolyte Membranes |
1 |
E 1.99:lbnl--60589
|
The Value of Distributed Generation under Different TariffStructures |
1 |
E 1.99:lbnl--60590
|
Distributed Energy Resources Market Diffusion Model |
1 |
E 1.99:lbnl--60591
|
Integrated Energy System Dispatch Optimization |
1 |
E 1.99:lbnl--60592
|
Distributed Generation Investment by a Microgrid UnderUncertainty |
1 |
E 1.99:lbnl--60594
|
An Analysis of the DER Adoption Climate in Japan UsingOptimization Results for Prototype Buildings with U.S. Comparisons |
1 |
E 1.99:lbnl--60596
|
Concurrent Single-Executable CCSM with MPH Library |
1 |
E 1.99:lbnl--60604
|
Right-Sizing Laboratory Equipment Loads |
1 |
E 1.99:lbnl--60605
|
Minimizing Reheat Energy Use in Laboratories |
1 |
E 1.99:lbnl--60607
|
Particle Tracking and Simulation on the .NET Framework |
1 |
E 1.99:lbnl--60613
|
The San Joaquin Valley Westside Perspective |
1 |
E 1.99:lbnl--60614
|
Participation through Automation Fully Automated Critical PeakPricing in Commercial Buildings. |
1 |
E 1.99:lbnl--60615
|
Dynamic Controls for Energy Efficiency and Demand Response Framework Concepts and a New Construction Study Case in New York. |
1 |
E 1.99:lbnl--60616
|
Strategies for Demand Response in Commercial Buildings |
1 |
E 1.99:lbnl--60618
|
Reactive Spreading of a Lead-Free Solder on Alumina |
1 |
E 1.99:lbnl--60619
|
Estimation of composite thermal conductivity of a heterogeneousmethane hydrate sample using iTOUGH2 |
1 |
E 1.99:lbnl--60620
|
Joint Genome Institute's Automation Approach and History |
1 |
E 1.99:lbnl--60621
|
Sintering and robocasting of beta-tricalcium phosphate scaffoldsfor orthopaedic applications |
1 |
E 1.99:lbnl--60622-rev
|
Design and implementation of an emergency environmental responsesystem to protect migrating salmon in the lower San Joaquin River,California |
1 |