scholarly journals Capstone Projects in a Computer Engineering Program Using Arduino

Author(s):  
Afsaneh Minaie ◽  
Reza Sanati-Mehrizy
Author(s):  
Eufemia Faller ◽  
Edicio Faller

The 21st century education challenges educators to expose students to a wide variety of circumstances and problem situations where they are required to apply the skills they have learned. In engineering education, these are mostly limited to simulated scenarios which are devoid of real and actual interactions with the problems in the community. This article aims to describe how problem-based learning pedagogy and authentic assessment are used in the Computer Engineering program of Ateneo de Davao University as an implementation of the outcomes-based education. This is a descriptive & qualitative research that utilizes focus group discussions as a methodology for achieving its objective. This study uses the frame of experiential learning that is problem-driven, community-based, multi-disciplinary, integrative & collaborative. The computer engineering program uses a multi-disciplinary and integrative approach to problem-based learning through the service-learning program of the institution. This provides the students with an opportunity to interact with a community, identify its problems, analyze and create a concrete solution applying their acquired skills. Since the students are engaged with the community's actual and real problems, they will be assessed using authentic assessment mechanisms. Experiential learning, problem-based pedagogy with authentic assessment open doors of opportunities for a more meaningful and relevant computer engineering program.


2017 ◽  
Vol 8 (1) ◽  
pp. 45-60
Author(s):  
Shekar Viswanathan

Final program projects (capstone course) in manufacturing design engineering technology at National University are intensive experiences in critical thinking and analysis, designed to broaden students’ perspectives and provide an opportunity for integration of coursework in the area of manufacturing design engineering. This paper focuses on three specific capstone projects that were worked on in an undergraduate manufacturing design engineering program. The projects include an office chair design, development of an improved balloon marker placement system for catheter manufacturing, and a modular motorcycle helmet design. This paper summarizes the design methodologies and strategies that were adopted by the students and faculty. In addition, this paper draws on the experiences gained from working on these projects to describe how a capstone project in manufacturing design engineering should be designed for maximum effectiveness. In this context, this paper presents a useful do’s and don’ts list. 


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