Experimental design for the optimization of fuel cells polyvinylidene polymer-based membranes for better water management

A Master of Science thesis in Engineering Systems Management by Tallah Magdi Yousif Ahmed entitled, “Experimental design for the optimization of fuel cells polyvinylidene polymer-based membranes for better water management”, submitted in November 2024. Thesis advisor is Dr. Amani Al Othman and thesi...

وصف كامل

محفوظ في:
التفاصيل البيبلوغرافية
المؤلف الرئيسي: Ahmed, Tallah Magdi Yousif (author)
التنسيق: doctoralThesis
منشور في: 2024
الموضوعات:
الوصول للمادة أونلاين:https://hdl.handle.net/11073/25804
الوسوم: إضافة وسم
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author Ahmed, Tallah Magdi Yousif
author_facet Ahmed, Tallah Magdi Yousif
author_role author
dc.contributor.none.fl_str_mv Al-Othman, Amani
Shamayleh, Abdulrahim
dc.creator.none.fl_str_mv Ahmed, Tallah Magdi Yousif
dc.date.none.fl_str_mv 2024-11
2025-01-23T07:49:45Z
2025-01-23T07:49:45Z
dc.format.none.fl_str_mv application/pdf
dc.identifier.none.fl_str_mv 35.232-2024.51
https://hdl.handle.net/11073/25804
dc.language.none.fl_str_mv en_US
dc.subject.none.fl_str_mv Proton exchange membrane
Response surface methodology (RSM)
Central composite design (CCD)
Optimization
dc.title.none.fl_str_mv Experimental design for the optimization of fuel cells polyvinylidene polymer-based membranes for better water management
dc.type.none.fl_str_mv info:eu-repo/semantics/publishedVersion
info:eu-repo/semantics/doctoralThesis
description A Master of Science thesis in Engineering Systems Management by Tallah Magdi Yousif Ahmed entitled, “Experimental design for the optimization of fuel cells polyvinylidene polymer-based membranes for better water management”, submitted in November 2024. Thesis advisor is Dr. Amani Al Othman and thesis co-advisor is Dr. Abdulrahim Shamayleh. Soft copy is available (Thesis, Completion Certificate, Approval Signatures, and AUS Archives Consent Form).
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language_invalid_str_mv en_US
network_acronym_str aus
network_name_str aus
oai_identifier_str oai:repository.aus.edu:11073/25804
publishDate 2024
repository.mail.fl_str_mv
repository.name.fl_str_mv
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spelling Experimental design for the optimization of fuel cells polyvinylidene polymer-based membranes for better water managementAhmed, Tallah Magdi YousifProton exchange membraneResponse surface methodology (RSM)Central composite design (CCD)OptimizationA Master of Science thesis in Engineering Systems Management by Tallah Magdi Yousif Ahmed entitled, “Experimental design for the optimization of fuel cells polyvinylidene polymer-based membranes for better water management”, submitted in November 2024. Thesis advisor is Dr. Amani Al Othman and thesis co-advisor is Dr. Abdulrahim Shamayleh. Soft copy is available (Thesis, Completion Certificate, Approval Signatures, and AUS Archives Consent Form).College of EngineeringDepartment of Industrial EngineeringMaster of Science in Engineering Systems Management (MSESM)Al-Othman, AmaniShamayleh, Abdulrahim2025-01-23T07:49:45Z2025-01-23T07:49:45Z2024-11info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/doctoralThesisapplication/pdf35.232-2024.51https://hdl.handle.net/11073/25804en_USoai:repository.aus.edu:11073/258042025-06-26T12:20:37Z
spellingShingle Experimental design for the optimization of fuel cells polyvinylidene polymer-based membranes for better water management
Ahmed, Tallah Magdi Yousif
Proton exchange membrane
Response surface methodology (RSM)
Central composite design (CCD)
Optimization
status_str publishedVersion
title Experimental design for the optimization of fuel cells polyvinylidene polymer-based membranes for better water management
title_full Experimental design for the optimization of fuel cells polyvinylidene polymer-based membranes for better water management
title_fullStr Experimental design for the optimization of fuel cells polyvinylidene polymer-based membranes for better water management
title_full_unstemmed Experimental design for the optimization of fuel cells polyvinylidene polymer-based membranes for better water management
title_short Experimental design for the optimization of fuel cells polyvinylidene polymer-based membranes for better water management
title_sort Experimental design for the optimization of fuel cells polyvinylidene polymer-based membranes for better water management
topic Proton exchange membrane
Response surface methodology (RSM)
Central composite design (CCD)
Optimization
url https://hdl.handle.net/11073/25804