PPT-IRRADIATION EXPERIMENTS & FACILITIES AT BNL:

Author : alexa-scheidler | Published Date : 2015-10-28

BLIP amp NSLS II Peter Wanderer Superconducting Magnet Division BNL WAMSDO November 14 2011 Brookhaven Linac Isotope Producer BLIP Schedule 6 monthsyear during

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IRRADIATION EXPERIMENTS & FACILITIES AT BNL:: Transcript


BLIP amp NSLS II Peter Wanderer Superconducting Magnet Division BNL WAMSDO November 14 2011 Brookhaven Linac Isotope Producer BLIP Schedule 6 monthsyear during RHIC operation Principal task isotope production for medical etc use proton beam 117 MeV. Iván Fernández. CIEMAT. 2. nd. EU-US DCLL Workshop, University of California, Los Angeles, Nov. 14-15. th. , 2014. Summary. Permeation facility. Absorption-desorption facility. PCTPro-2000. Trapping facility. at room temperature. J. . Kansy. 1. . and M. Ziąbka. 2. .  . 1. . Institute of Material Science, Silesian University, . Bankowa. 12, 40-008 Katowice, . Poland. 2. . Faculty of Materials Science and Ceramic, University of Science and Technology, A. . BLIP & NSLS II. Peter Wanderer. Superconducting Magnet Division, BNL. WAMSDO – November 14, 2011. Brookhaven Linac Isotope Producer (BLIP). Schedule: ~ 6 months/year (during RHIC operation). Principal task: isotope production for medical etc. use (proton beam, 117 MeV).. Finding Top . k. Most Influential Spatial Facilities over Uncertain Objects. Liming Zhan. Ying Zhang . Wenjie. Zhang . Xuemin. Lin. The . University of New South Wales, . Australia. Outline. Motivation. BLIP & NSLS II. Peter Wanderer. Superconducting Magnet Division, BNL. WAMSDO – November 14, 2011. Brookhaven Linac Isotope Producer (BLIP). Schedule: ~ 6 months/year (during RHIC operation). Principal task: isotope production for medical etc. use (proton beam, 117 MeV).. on behalf of the Irradiation WG. April 16. th. , 2015. 1. Irradiation Guidelines. NAC Draft Irradiation Guidelines have been resurrected due to:. An interest in changing the CSA standard around irradiation parameters so that the standards reflect the European practice that is more appropriate for SAGM red cells.. Experimental plan . Aida . Amroussia,. PhD Student . Chemical Engineering and Materials Science. Michigan . State University. 1. Motivation. Study of irradiation damage in Ti-6Al-4V and Ti-6Al-4V-1B . Weilin . Jiang, David Senor. Pacific . Northwest National . Laboratory. HPT R&D Roadmap Workshop. May 31 - June 1, 2017, . Fermilab. Driving Force for Microstructural Changes Induced by MeV Ion Irradiation in Solids. Rajeev . Pattahil. (STFC Rutherford Appleton Laboratory. ). Andrea Mostacci (Sapienza Univ. - Rome within SPARC_LAB. ). Daniel . Symes. (STFC Rutherford Appleton Laboratory). WP -12: . Accelerator Prototyping and Experiments at Test . overdosing The dose in excess should be minimum for the quality of the product and also represents a waste of energy The maximum dose that a product can accept is determined by the device manufacture Valentin. . Moise. Head of IRASM Department. IFIN-HH, Romania. irasm@nipne.ro. Industrial application of ionizing radiation:. Modification of properties of products/materials by irradiation. Sterilization. Devoted to the . integration of software, hardware and quality control systems . for the . management of data . obtained at different . European irradiation facilities . Task 4.3: Common Tools for Irradiation Facilities Quality Control: Data Management, Traceability, Dosimetry and Activation Measurements. MRx. CODE. Cécile . Pétesch. , Thierry Lebarbé CEA. Sophie . Dubiez. -Le Goff, Claude Pascal AREVA. RCC-. MRx. presentation. Code philosophy. Consideration of irradiation effect in mechanical design rules. Working Group. M. G. D. Gilchriese. On behalf of the Working Group. March 8, . 2013. Longer version of this talk at DURA Meeting March 5. Working Groups. NAF1 – on underground facilities to support very large detectors for neutrino physics, proton decay and other science requiring detectors of the multi-kiloton scale.

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