MMJ40202 - Final Year Project I
Semester 2 academic session 2022/23
Course
synopsis
This course is designed to expose students with an investigative research-based project to solve engineering issue(s)/problem(s). Students are required to identify problems, develop techniques for information gathering, conduct literature review and select appropriate methodology. Students are assessed by a written and oral presentation at the end of the semester.
Course
outcome
CO1 :- Ability to integrate comprehensively the needs and the insights of research works conducted.
CO2 :- Ability to investigate and conduct research literature of complex engineering problems with selected knowledge in the research literature of the discipline.
CO3 :- Ability to propose and develop design solutions or methodology for complex engineering problems that meet specified needs with appropriate consideration including design of experiments, modeling or simulation.
CO4 :- Ability to perform effective presentation on complex engineering activities undertaken.
CO5 :- Ability to demonstrate and apply engineering management principles by managing research project.
CO2 :- Ability to investigate and conduct research literature of complex engineering problems with selected knowledge in the research literature of the discipline.
CO3 :- Ability to propose and develop design solutions or methodology for complex engineering problems that meet specified needs with appropriate consideration including design of experiments, modeling or simulation.
CO4 :- Ability to perform effective presentation on complex engineering activities undertaken.
CO5 :- Ability to demonstrate and apply engineering management principles by managing research project.
About
Rubrics
About
Offered FYP titles
Below are the titles offered for the selection in sem 2 academic session 2022/2023. For detail information about any of the title, kindly visit https://tweechoon.unimap.edu.my/index.php/pages/possiblefyptitles for details. Thank you.
1. Numerical analysis of the influence of gas phase tortuosity factor in a Ni-YSZ anode for intermediate temperature solid oxide fuel cell (IT-SOFC)
2. Numerical analysis of the influence of porosity in a Ni-YSZ anode for intermediate temperature solid oxide fuel cell (IT-SOFC)
3. Comparison of the exchange current per unit reaction site for the Ni/YSZ anode between de Boer and Bieberle models
Or you also can proposed your own FYP title under my supervision with the approval from FYP committee.
About
Students
This is the project by
YOUR NAME
Title
YOUR SELECTED FYP TITLE
Background
YOUR SELECTED FYP'S BACKGROUND
Objectives
YOUR SELECTED FYP'S OBJECTIVES
Scopes
YOUR SELECTED FYP'S SCOPES
Project classification
Numerical