MODULE DEVELOPMENT IN EMPIRE TO CALCULATE FISSION PRODUCT MASS DISTRIBUTION

Nuclear data calculation such as cross section and fission mass distribution has been performed by many investigator using many program code for nuclear reactions. EMPIRE II is one of many nuclear reaction code which is using a lot of nuclear model theory and approximation to reproduce experimental...

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Main Author: SATYA PERKASA (NIM : 20207006), YUDHA
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/12800
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:12800
spelling id-itb.:128002017-09-27T14:40:56ZMODULE DEVELOPMENT IN EMPIRE TO CALCULATE FISSION PRODUCT MASS DISTRIBUTION SATYA PERKASA (NIM : 20207006), YUDHA Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/12800 Nuclear data calculation such as cross section and fission mass distribution has been performed by many investigator using many program code for nuclear reactions. EMPIRE II is one of many nuclear reaction code which is using a lot of nuclear model theory and approximation to reproduce experimental data. However, EMPIRE II was unable to reproduce fission mass distribution. Mass distribution calculation can be performed in EMPIRE II by implementing one of most successful theoretical model from U. Brosa which is called RNRM (Random Neck Rupture Model ). This model said that neck rupture at scission point or saddle point has random behaviour and mass yield is defined as multiplication between fission probabilities and scission path of corresponding ones. Brosa has predicted that probability of scission path may lead to three most probable fission barrier type, that is Superlong I, Superlong II, and Standard. <br /> <br /> text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Nuclear data calculation such as cross section and fission mass distribution has been performed by many investigator using many program code for nuclear reactions. EMPIRE II is one of many nuclear reaction code which is using a lot of nuclear model theory and approximation to reproduce experimental data. However, EMPIRE II was unable to reproduce fission mass distribution. Mass distribution calculation can be performed in EMPIRE II by implementing one of most successful theoretical model from U. Brosa which is called RNRM (Random Neck Rupture Model ). This model said that neck rupture at scission point or saddle point has random behaviour and mass yield is defined as multiplication between fission probabilities and scission path of corresponding ones. Brosa has predicted that probability of scission path may lead to three most probable fission barrier type, that is Superlong I, Superlong II, and Standard. <br /> <br />
format Theses
author SATYA PERKASA (NIM : 20207006), YUDHA
spellingShingle SATYA PERKASA (NIM : 20207006), YUDHA
MODULE DEVELOPMENT IN EMPIRE TO CALCULATE FISSION PRODUCT MASS DISTRIBUTION
author_facet SATYA PERKASA (NIM : 20207006), YUDHA
author_sort SATYA PERKASA (NIM : 20207006), YUDHA
title MODULE DEVELOPMENT IN EMPIRE TO CALCULATE FISSION PRODUCT MASS DISTRIBUTION
title_short MODULE DEVELOPMENT IN EMPIRE TO CALCULATE FISSION PRODUCT MASS DISTRIBUTION
title_full MODULE DEVELOPMENT IN EMPIRE TO CALCULATE FISSION PRODUCT MASS DISTRIBUTION
title_fullStr MODULE DEVELOPMENT IN EMPIRE TO CALCULATE FISSION PRODUCT MASS DISTRIBUTION
title_full_unstemmed MODULE DEVELOPMENT IN EMPIRE TO CALCULATE FISSION PRODUCT MASS DISTRIBUTION
title_sort module development in empire to calculate fission product mass distribution
url https://digilib.itb.ac.id/gdl/view/12800
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