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Morelock, John R.; Sochacka, Nicola W.; Lewis, Racheida S.; Walther, Joachim; Culloty, Christian M.; Hopkins, Jacob S.; Vedanarayanan, Shweta; Ofunne, Chukwuemeka K. – Advances in Engineering Education, 2020
This paper describes the use of a novel research platform called SenseMaker® to collect and analyze real-time data in the form of participants' qualitative accounts of COVID-19 along with online learning experiences and participants' own quantitative assessments of those experiences. Participants were faculty, students, and staff in the College of…
Descriptors: COVID-19, Pandemics, Online Courses, Distance Education
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Toye, George; Sheppard, Sheri; Chen, Helen L. – Advances in Engineering Education, 2016
The Academic Pathway Study (APS) research program within National Science Foundation (NSF) Center for Advancement of Engineering Education (CAEE) ran from 2003-2010. It amassed a collection of longitudinal as well as cross-sectional data sets, of varying research method types and formats, from four different primary cohorts that included over…
Descriptors: Engineering Education, Longitudinal Studies, Research Methodology, Case Studies
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Lammi, Matthew D.; Denson, Cameron D. – Advances in Engineering Education, 2017
In this paper we examine a case study of a pedagogical strategy that focuses on the teaching of modeling as a habit of mind and practice for novice designers engaged in engineering design challenges. In an engineering design course, pre-service teachers created modeling artifacts in the form of conceptual models, graphical models, mathematical…
Descriptors: Preservice Teachers, Engineering Education, Case Studies, Educational Strategies
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Gilmore, Rick O.; Adolph, Karen E.; Millman, David S.; Gordon, Andrew – Advances in Engineering Education, 2016
Open data sharing promises to accelerate the pace of discovery in the developmental and learning sciences, but significant technical, policy, and cultural barriers have limited its adoption. As a result, most research on learning and development remains shrouded in a culture of isolation. Data sharing is the rare exception (Gilmore, 2016). Many…
Descriptors: Educational Research, Data, Shared Resources and Services, Video Technology
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Trevelyan, James – Advances in Engineering Education, 2016
Research on engineering practice is scarce and sharing of qualitative research data can reduce the effort required for an aspiring researcher to obtain enough data from engineering workplaces to draw generalizable conclusions, both qualitative and quantitative. This paper describes how a large shareable qualitative data set on engineering…
Descriptors: Engineering, Research, Qualitative Research, Interviews
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Johri, Aditya; Yang, Seungwon; Vorvoreanu, Mihaela; Madhavan, Krishna – Advances in Engineering Education, 2016
As part of our NSF funded collaborative project on Data Sharing within Engineering Education Community, we conducted an empirical study to better understand the current climate of data sharing and participants' future expectations of the field. We present findings of this mixed method study and discuss implications. Overall, we found strong…
Descriptors: Engineering Education, Data, Knowledge Management, Educational Practices
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Madhavan, Krishna; Johri, Aditya; Xian, Hanjun; Wang, G. Alan; Liu, Xiaomo – Advances in Engineering Education, 2014
The proliferation of digital information technologies and related infrastructure has given rise to novel ways of capturing, storing and analyzing data. In this paper, we describe the research and development of an information system called Interactive Knowledge Networks for Engineering Education Research (iKNEER). This system utilizes a framework…
Descriptors: Engineering Education, Information Systems, Information Retrieval, Social Networks
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Rosenblatt, Rebecca; Heckler, Andrew F.; Flores, Katharine – Advances in Engineering Education, 2013
We apply a "tutorial design process", which has proven to be successful for a number of physics topics, to design curricular materials or "tutorials" aimed at improving student understanding of important concepts in a university-level introductory materials science and engineering course. The process involves the identification…
Descriptors: Engineering Education, Science Education, College Students, Introductory Courses
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Hanson, James H.; Brophy, Patrick D. – Advances in Engineering Education, 2012
Not all knowledge and skills that educators want to pass to students exists yet in textbooks. Some still resides only in the experiences of practicing engineers (e.g., how engineers create new products, how designers identify errors in calculations). The critical incident technique, CIT, is an established method for cognitive task analysis. It is…
Descriptors: Critical Incidents Method, Engineering, Engineering Education, Task Analysis