Conference paper 2007

Paul Revere in the science lab: Integrating humanities and engineering pedagogies to develop skills in contextual understanding and self-directed learning

ASEE Annual Conference and Exposition, Conference Proceedings
Conference
Abstract

ABET, ASEE, and the wider engineering community have long acknowledged the potential benefits of interdisciplinary education, including the opportunity to develop non-technical skills such as communication and teamwork while cultivating a broader awareness of the ethical, societal, historical, and environmental impacts of engineering work. Instructors have encountered many challenges in planning and implementing integrated courses, such as the difficulty of coordinating the teaching methods, content, and learning objectives of different academic disciplines in a finite and already overcrowded curriculum. This paper presents the goals, design approach, implementation, and selected outcomes of one integrated project-based course (using Paul Revere and other case studies to integrate materials science with the history of technology) and uses it to discuss the advantages of disciplinary integration, particularly with respect to improved student self-direction and contextual understanding. Assessments administered during and after class suggest that this integrated course successfully engendered high student motivation along with an increase in student aptitudes over the course of the semester without a corresponding loss of discipline-specific knowledge. The implementation of this integrated course and the evaluation of its outcomes are works in progress, and future assessments are being designed to shed additional light upon these issues. © American Society for Engineering Education, 2007.

Keywords

Author Keywords

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Index Keywords

Learning systems Teaching Curricula Engineering education Teaching methods Students Student motivation Non-technical skills Research laboratories
Author Affiliations
Franklin W. Olin Collage of Engineering, Department of History of Science and Technology, Franklin W. Olin College of Engineering, Needham, MA, United States
Franklin W. Olin Collage of Engineering, Department of Mechanical Engineering and Materials Science, Franklin W. Olin College of Engineering, Needham, MA, United States
Funding & Acknowledgements
No funding information
References 10 References
1 Green Report Engineering Education for A Changing World, (1994)
2 Engineering Education Designing an Adaptive System, (1995)
3 Systemic Engineering Education Reform an Action Agenda, (1995)
4 Gijselaers, Wim H., Connecting problem-based practices with educational theory, New Directions for Teaching and Learning, 1996, 68, pp. 13-21, (1996)
5 Criteria for Accrediting Engineering Programs, (2001)
6 Self Direction for Lifelong Learning, (1991)
7 Vernon, David T.A., Does problem-based learning work? A meta-analysis of evaluative research, Academic Medicine, 68, 7, pp. 550-563, (1993)
8 Dochy, Filip, Effects of problem-based learning: A meta-analysis, Learning and Instruction, 13, 5, pp. 533-568, (2003)
9 undefined
10 Hung, Woei, Exploring the tensions of problem-based learning: Insights from research, New Directions for Teaching and Learning, 2003, 95, pp. 13-23, (2003)
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Document Identifiers
  • EID 2-s2.0-85029108139
  • Language English