This service is no longer available. Information on this page is for customers who ordered the service before its termination. Activation Activating O2 Accelerator is very simple. Nov 17, 2014 I downloaded the season pass and can't find the option to activate the accelerator. I went to the unlockable screen and there isn't a prompt like there. Feb 28, 2014. Operating an accelerator leads to nuclear activation of the surrounding material due to particle interactions in accelerator components, beam trans- fer line elements and shielding structures. Induced radioactivity can be pro- duced at all accelerator facilities capable of generating particles above the reaction. Just download and install the O2 Accelerator Plus application, and restart your computer. You can then start using O2 Accelerator immediately. The application is Note: The page for configuring O2 Accelerator is only accessible if you are connected to the Internet through an O2 Internet service. Deactivation In the O2 Accelerator Plus application, it is possible to turn off acceleration, or uninstall the entire program. O2 Accelerator activation options for GPRS connections Service name. The residual activity induced in particle accelerators is a serious issue from the point of view of radiation safety as the long-lived radionuclides produced by fast or moderated neutrons and impact protons cause problems of radiation exposure for staff involved in the maintenance work and when decommissioning the facility. This paper presents activation studies of the magnets and collimators in the High Energy Beam Transport line of the European Spallation Source due to the backscattered neutrons from the target and also due to the direct proton interactions and their secondaries. An estimate of the radionuclide inventory and induced activation are predicted using the GEANT4 code. Figure 7 The radionuclide inventory for the HEBT-S3 quadrupoles: (a) quadrupole QP20, (b) quadrupole QP21, (c) quadrupole QP22, (d) quadrupole QP23, (e) quadrupole QP24, (f) quadrupole QP25, (g) quadrupole QP26, and (h) quadrupole QP27. The isotope yield represents the total amount of particular isotopes found in the magnets. The colors represent isotopes produced by backscattered neutrons from the target (blue), isotopes produced in direct proton interactions (dark blue), isotopes produced in secondary neutrons interactions (red), and isotopes produced in other secondaries interactions (green). Reuse & Permissions It is not necessary to obtain permission to reuse this article or its components as it is available under the terms of the. This license permits unrestricted use, distribution, and reproduction in any medium, provided attribution to the author(s) and the published article's title, journal citation, and DOI are maintained. Please note that some figures may have been included with permission from other third parties. It is your responsibility to obtain the proper permission from the rights holder directly for these figures.
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