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open access

Baryonic B Decays

Description: No Description Available.
Date: June 7, 2013
Creator: Shiu, Jing-Ge & /Taiwan, Natl. Taiwan U.
Partner: UNT Libraries Government Documents Department
open access

The CP-Violating pMSSM at the Intensity Frontier

Description: No Description Available.
Date: October 7, 2013
Creator: Berger, Joshua; Cahill-Rowley, Matthew W.; Ghosh, Diptimoy; Hewett, JoAnne L.; Ismail, Ahmed & Rizzo, Thomas G.
Partner: UNT Libraries Government Documents Department
open access

Echo-Enabled X-Ray Vortex Generation

Description: No Description Available.
Date: February 7, 2013
Creator: Hemsing, E. & Marinelli, A.
Partner: UNT Libraries Government Documents Department
open access

MEIC Design Progress

Description: No Description Available.
Date: October 7, 2013
Creator: Manikonda, S. L.; Ostroumov, P. N.; Barber, D. P.; Filatov, Y.; Hyde, C.; Sullivan, M. K. et al.
Partner: UNT Libraries Government Documents Department
open access

LLNL X-band RF System

Description: No Description Available.
Date: May 7, 2013
Creator: Marsh, R A; Anderson, G G; Anderson, S G; Fisher, S E; Gibson, D J; Hartemann, F V et al.
Partner: UNT Libraries Government Documents Department
open access

Theoretical Screening of Solid Sorbents for CO{sub 2} Capture Applications

Description: The work reported in this presentation was establishing a theoretical procedure to identify most potential candidates of CO{sub 2} solid sorbents from a large solid material databank; and to explore the optimal working conditions for the promised CO{sub 2} solid sorbents and provide guidelines to the experimentalists. Our methodology can predict thermodynamic properties of solid materials and their CO{sub 2} capture reactions. Single solid may not satisfy the industrial operating conditions as … more
Date: August 7, 2013
Creator: Duan, Y
Partner: UNT Libraries Government Documents Department
open access

THERMAL TECHNIQUES FOR THE IN-SITU CHARACTERIZATION AND REMEDIATION OF MERCURY: INSIGHTS FROM DEPLOYMENT OF THE MEMBRANE INTERFACE PROBE

Description: This presentation focuses on how thermal energy can effectively be used to enhance characterization, promote the remediation, and aid in delivering a sequestering agent to stabilize elemental mercury in subsurface soils. Slides and speaker notes are provided.
Date: August 7, 2013
Creator: Jackson, Dennis; Looney, Brian & Eddy-Dilek, Carol A.
Partner: UNT Libraries Government Documents Department
open access

Observation of Non-Maxwellian Electron Distributions in th e NSTX Divertor

Description: The scrape-off layer plasma at the tokamak region is characterized by open field lines and often contains large variations in plasma properties along these field-lines. Proper characterization of local plasma conditions is critical to assessing plasma-material interaction processes occuring at the target. Langmuir probes are frequently employed in tokamak divertors but are challenging to interpretation. A kinetic interpretation for Langmuir probes in NSTX has yielded non-Maxwellian electron dis… more
Date: March 7, 2013
Creator: M.A. Jaworski, et. al.
Partner: UNT Libraries Government Documents Department
open access

Theoretical Screening of Solid Sorbents for CO{sub 2} Capture Applications

Description: The work reported in this presentation was establishing a theoretical procedure to identify most potential candidates of CO{sub 2} solid sorbents from a large solid material databank; and to explore the optimal working conditions for the promised CO{sub 2} solid sorbents and provide guidelines to the experimentalists. Our methodology can predict thermodynamic properties of solid materials and their CO{sub 2} capture reactions. Single solid may not satisfy the industrial operating conditions as … more
Date: August 7, 2013
Creator: Duan, Y
Partner: UNT Libraries Government Documents Department
open access

Status of ESTB: A Novel Beam Test Facility at SLAC

Description: No Description Available.
Date: October 7, 2013
Creator: Dunning, M.P.; Fieguth, H.; Hast, C.; Iverson, R.H.; Jaros, J.; Jobe, R.K. et al.
Partner: UNT Libraries Government Documents Department
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