ANALISIS PERUBAHAN WAKTU PARUH PADA NUCLEAR SPENT FUEL AKIBAT BOUND STATE BETA DECAY

The research of half-life shift (T 1/2) of beta radiation ( ) emitter on Nuclear spent fuel (NSF) as the result of bound state beta decay ( ) had been conducted along with nuclide fraction percentage and radiation dose percentage for every emitter in the process. The analytical calculation of T1/2 w...

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Main Authors: , EKO GALIH PRADIKTA, , Prof. Dr. Pramudita Anggraita
Format: Thesis
Published: [Yogyakarta] : Universitas Gadjah Mada 2014
Subjects:
ETD
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author , EKO GALIH PRADIKTA
, Prof. Dr. Pramudita Anggraita
author_facet , EKO GALIH PRADIKTA
, Prof. Dr. Pramudita Anggraita
author_sort , EKO GALIH PRADIKTA
collection UGM
description The research of half-life shift (T 1/2) of beta radiation ( ) emitter on Nuclear spent fuel (NSF) as the result of bound state beta decay ( ) had been conducted along with nuclide fraction percentage and radiation dose percentage for every emitter in the process. The analytical calculation of T1/2 was conducted systematically and evaluated on stellar environment, while for the calculation on nuclide fraction percentage and radiation dose percentage was conducted by processing the resulting data from simulation of program SRAC with COREBN module for PWR reactor made by Westinghouse & Mitsubishi and fission yield data for uranium-235 and uranium-238. The result of this research indicates that the is only effective to samarium-151 with T1/2 acceleration of 93.19 % from T1/2 = 90 years becomes T1/2 = 6.131 years, while for nuclide fraction percentage and radiation dose percentage of samarium-151 radiation respectively are 0.016917369 % and 0.000332427 %.
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spelling oai:generic.eprints.org:1275692016-03-04T07:55:27Z https://repository.ugm.ac.id/127569/ ANALISIS PERUBAHAN WAKTU PARUH PADA NUCLEAR SPENT FUEL AKIBAT BOUND STATE BETA DECAY , EKO GALIH PRADIKTA , Prof. Dr. Pramudita Anggraita ETD The research of half-life shift (T 1/2) of beta radiation ( ) emitter on Nuclear spent fuel (NSF) as the result of bound state beta decay ( ) had been conducted along with nuclide fraction percentage and radiation dose percentage for every emitter in the process. The analytical calculation of T1/2 was conducted systematically and evaluated on stellar environment, while for the calculation on nuclide fraction percentage and radiation dose percentage was conducted by processing the resulting data from simulation of program SRAC with COREBN module for PWR reactor made by Westinghouse & Mitsubishi and fission yield data for uranium-235 and uranium-238. The result of this research indicates that the is only effective to samarium-151 with T1/2 acceleration of 93.19 % from T1/2 = 90 years becomes T1/2 = 6.131 years, while for nuclide fraction percentage and radiation dose percentage of samarium-151 radiation respectively are 0.016917369 % and 0.000332427 %. [Yogyakarta] : Universitas Gadjah Mada 2014 Thesis NonPeerReviewed , EKO GALIH PRADIKTA and , Prof. Dr. Pramudita Anggraita (2014) ANALISIS PERUBAHAN WAKTU PARUH PADA NUCLEAR SPENT FUEL AKIBAT BOUND STATE BETA DECAY. UNSPECIFIED thesis, UNSPECIFIED. http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=67830
spellingShingle ETD
, EKO GALIH PRADIKTA
, Prof. Dr. Pramudita Anggraita
ANALISIS PERUBAHAN WAKTU PARUH PADA NUCLEAR SPENT FUEL AKIBAT BOUND STATE BETA DECAY
title ANALISIS PERUBAHAN WAKTU PARUH PADA NUCLEAR SPENT FUEL AKIBAT BOUND STATE BETA DECAY
title_full ANALISIS PERUBAHAN WAKTU PARUH PADA NUCLEAR SPENT FUEL AKIBAT BOUND STATE BETA DECAY
title_fullStr ANALISIS PERUBAHAN WAKTU PARUH PADA NUCLEAR SPENT FUEL AKIBAT BOUND STATE BETA DECAY
title_full_unstemmed ANALISIS PERUBAHAN WAKTU PARUH PADA NUCLEAR SPENT FUEL AKIBAT BOUND STATE BETA DECAY
title_short ANALISIS PERUBAHAN WAKTU PARUH PADA NUCLEAR SPENT FUEL AKIBAT BOUND STATE BETA DECAY
title_sort analisis perubahan waktu paruh pada nuclear spent fuel akibat bound state beta decay
topic ETD
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AT profdrpramuditaanggraita analisisperubahanwaktuparuhpadanuclearspentfuelakibatboundstatebetadecay