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Evaluation of Historical Beryllium Abundance in Soils, Airborne Particulates and Facilities at Lawrence Livermore National Laboratory (open access)

Evaluation of Historical Beryllium Abundance in Soils, Airborne Particulates and Facilities at Lawrence Livermore National Laboratory

None
Date: April 17, 2012
Creator: Sutton, M.; Bibby, R. K.; Eppich, G. R.; Lee, S.; Lindvall, R. E.; Wilson, K. et al.
System: The UNT Digital Library
Oxy-Combustion Environment Characterization: Fire- and Steam-Side Corrosion in Advanced Combustion (open access)

Oxy-Combustion Environment Characterization: Fire- and Steam-Side Corrosion in Advanced Combustion

None
Date: April 17, 2012
Creator: Holcomb, G. R.; Tylczak, J.; Meier, G. H.; Lutz, B. S.; Yanar, N. M.; Pettit, F. S. et al.
System: The UNT Digital Library
11th National Conference on Science, Policy, and the Environment: Our Changing Oceans (open access)

11th National Conference on Science, Policy, and the Environment: Our Changing Oceans

On January 19-21, 2011, The National Council for Science and the Environment (NCSE) successfully convened its 11th National Conference on Science, Policy and the Environment: Our Changing Oceans in Washington, DC at the Ronald Reagan Building and International Trade Center. Over 1,247 participants attended the conference, representing federal, state and local governments, university and colleges across the US, civil society organizations, the business community, and international entities. In addition, the conference was webcast to an audience across several states. The conference provided a forum to examine the profound changes our ocean will undergo over the next 25-50 years and share various perspectives on the new research, tools, and policy initiatives to protect and sustain our ocean. Conference highlights and recommendations are available to the public on NCSE's conference website, www.OurChangingOceans.org.
Date: April 17, 2012
Creator: Saundry, Peter
System: The UNT Digital Library
Spatially Periodic Electromagnetic Force Field For Plasma Confinement and Control (open access)

Spatially Periodic Electromagnetic Force Field For Plasma Confinement and Control

In this article, a theoretical understanding is developed of the single-particle reflection properties of a force field, considering the incident charged particles to have a non-drifting, isotropic velocity distribution. Classical trajectory Monte Carlo simulations and analytical modeling are employed. The initiation of an experimental effort to study force fields is described.
Date: April 17, 2012
Creator: Ordonez, Carlos A.; Pacheco, J. L. & Weathers, Duncan L.
System: The UNT Digital Library