Purdue University
A phenomenographic study of the ability to address complex socio-technical systems via variation theory
Abstract
dc:description.abstract<p>Sometimes engineers fail when addressing the inherent complexity of socio-technical systems because they lack the ability to address the complexity of socio-technical systems. Teaching undergraduate engineering students how to address complex socio-technical systems, has been an educational endeavor at different levels ranging from kindergarten to post-graduate education. The literature presents different pedagogical strategies and content to reach this goal. However, there are no existing empirically-based assessments guided by a learning theory. This may be because at the same time explanations of how the skill is developed are scarce.</p> <p>My study bridges this gap, and I propose a developmental path for the ability to address the complex socio-technical systems via Variation Theory, and according to the conceptual framework provided by Variation Theory, my research question was “What are the various ways in which engineers address complex socio-technical systems?”</p> <p>I chose the research approach of phenomenography to answer my research question. I also chose to use a blended approach, Marton’s approach for finding the dimensions of variation, and the developmental approach (Australian) for finding a hierarchical relationship between the dimensions. Accordingly, I recruited 25 participants with different levels of experience with addressing complex socio-technical systems and asked them all to address the same two tasks: A design of a system for a county, and a case study in a manufacturing firm. My outcome space is a nona-dimensional (nine) developmental path for the ability to address the complexity in socio-technical systems, and I propose 9 different ways of experiencing the complexity of a socio-technical system. The findings of this study suggest that the critical aspects that are needed to address the complexity of socio-technical systems are: being aware of the use of models, the ecosystem around, start recognizing different boundaries, being aware of time as a factor, recognizing the part-whole relationships, make effort in tailoring a solution that responds to stakeholders’ needs, find the right problem, giving voice to others, and finally be aware of the need to iterate</p>
Degree
thesis:*- Name thesis:degree_name
- Doctor of Philosophy (PhD)
- Level thesis:degree_level
- Dissertation
- Discipline thesis:degree_discipline
- Engineering Education
- Year
- 2016
Author and committee
dc:creator, dc:contributor.*- Author dc:creator
-
- Mendoza Garcia, John A
- Contributors dc:contributor
-
- Monica E. Cardella
- William C. Oakes
- Sean Brophy
- Charles R. Kenley
Subjects
dc:subject × 10Identifiers
dc:identifier.*- Repository record dc:identifier
- https://docs.lib.purdue.edu/open_access_dissertations/812
- OAI identifier oai:identifier
- oai:docs.lib.purdue.edu:open_access_dissertations-2004