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Showing 1 to 15 of 28 results Save | Export
Pallavi Singh – ProQuest LLC, 2024
As the engineering education system continuously evolves to meet the demands of modern industry and society, there is a need for a methodology that would manage and resolve the complexities inherent in engineering educational systems. Model-based Systems Engineering (MBSE) is a structured approach to system design that utilizes models across all…
Descriptors: Engineering Education, Models, Learning Analytics, Higher Education
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Xie, Lei; Kogut, Ashlynn; Beyerlein, Michael; Boehm, Rodney – European Journal of Engineering Education, 2021
This grounded theory research examined the actions mentors take to help student teams. We interviewed nine mentors from an engineering competition using semi-structured interviews. We studied the interactions between mentors and student teams and identified nine mentoring actions: initiating the relationship, strategies to develop thinking, active…
Descriptors: Teamwork, Mentors, Grounded Theory, Competition
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Batrouny, Nicole; Wendell, Kristen; Andrews, Chelsea; Dalvi, Tejaswini – Science and Children, 2021
The engineering design process (EDP) can be a wonderful tool to nurture creative problem-solving abilities, prepare students to tackle problems with intentional planning, and encourage learning from failures. Many lesson plans and instructional strategies are guided by the EDP (Hill Cunningham, Mott, and Hunt 2018). In this article, the authors…
Descriptors: Design, Science Education, Engineering Education, Teaching Methods
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Collofello, Jim; Fox, Derek; Jamieson, Leah H.; Johnson, Bart M.; Loughman, Joshua; Morgan, Jim; Oakes, William C.; Schoepf, Jared; Smith, Crystal – Advances in Engineering Education, 2021
The EPICS Program was created in 1995 with the dual purposes of improving engineering education and addressing compelling needs within our communities. The model broke with many traditional academic traditions, involving students in multidisciplinary teams of students from first-year to fourth years for multiple semesters or even years on projects…
Descriptors: Engineering Education, Service Learning, Higher Education, Undergraduate Students
Ghahremani, Mehdi – ProQuest LLC, 2020
This thesis is an article-based (3-paper format) dissertation. In the first article, the research team adapted an input-process-outcome (IPO) model of group-level processes in the classroom, as a theoretical framework, to examine students' experiences regarding pre-college engineering curricula, classroom environments, and their experiences with…
Descriptors: Creativity, Design, Elementary Secondary Education, Engineering Education
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Barr, R. E. – Engineering Design Graphics Journal, 2018
This paper briefly reviews the author's experiences over the past four decades in transforming the Engineering Design Graphics (EDG) curriculum. During this time, the field has seen a remarkable evolution from manual drafting to 3-D computer modeling with its many applications to engineering design and analysis. The paper will further discuss the…
Descriptors: College Freshmen, Engineering Education, Teamwork, Computer Graphics
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Payne, Corey; Crippen, Kent J. – Journal of Research in Science Teaching, 2023
Persistence is a major issue facing students, particularly those who are both female and from underrepresented ethnic minorities (URM). A closer look at the variables affecting their commitment and capacity for continuing the pursuit of their goal allows us to better design support systems that bolster persistence. This study tests a structural…
Descriptors: Chemistry, Science Instruction, Correlation, Teaching Methods
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Robb, Colleen C.; Rahn, David; Buffardi, Kevin – Journal of Education for Business, 2020
By framing entrepreneurship courses in the context of interdisciplinary team projects, students build important work-related skills whether they pursue an entrepreneurial path or employment after graduation. However, the traditional classroom environment is not conducive to realistic interdepartmental interactions found in most corporations or…
Descriptors: Interdisciplinary Approach, Engineering Education, Computer Software, Entrepreneurship
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Hoffenson, Steven; Fay, Brendan – Advances in Engineering Education, 2021
In product design, there is often a disconnect between the engineers creating the product and the marketing team determining the best characteristics for the product. The research areas of "design for market systems" and "decision-based design" seek to bridge that disconnect through quantitative approaches that facilitate…
Descriptors: Engineering Education, Marketing, Decision Making, Design
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Yuhyun Choi; Euisuk Sung; Seungwon Lee – Technology and Engineering Teacher, 2022
The International Technology and Engineering Educators Association's (ITEEA's) "Standards for Technological and Engineering Literacy" ("STEL") describes design thinking as an approach that allows students and educators to integrate other content areas by considering relevant contextual information to guide design and making…
Descriptors: Design, Engineering Education, Thinking Skills, Context Effect
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Lavi, Rea; Dori, Yehudit Judy; Wengrowicz, Niva; Dori, Dov – IEEE Transactions on Education, 2020
Contribution: A rubric for assessing the systems thinking expressed in conceptual models of technological systems has been constructed and assessed using a formal methodology. The rubric, a synthesis of prior findings in science and engineering education, forms a framework for improving communication between science and engineering educators.…
Descriptors: Models, Engineering Education, Teamwork, Scoring Rubrics
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Yoshino, Rui T.; Pinto, Marcela Marçal A.; Pontes, Joseane; Treinta, Fernanda Tavares; Justo, João F.; Santos, Max M. D. – European Journal of Engineering Education, 2020
The current industrial revolution demands a revolution on teaching methodologies at all levels, particularly for higher education. Here, we present an efficient model to teach technologies associated with Industry 4.0 (I4.0) in undergraduate engineering courses. The first step was identifying the main skills required for an I4.0 practitioner and…
Descriptors: Undergraduate Students, Engineering Education, Industry, Teaching Methods
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Stamou, Anastasios; Noutsopoulos, Constantinos; Kuhlmann, Anna; Rutschmann, Peter – European Journal of Engineering Education, 2020
We present a teaching methodology to answer the question 'How can we link teaching with research in our engineering courses?' Due to the combination of hybrid Problem Based Learning with Research Tutored/Oriented Teaching, the methodology enables the students to acquire the skills of 'problem solving', 'working in teams', 'analytic', 'written…
Descriptors: Teaching Methods, Engineering Education, Problem Based Learning, Teamwork
Siverling, Emilie Amanda – ProQuest LLC, 2019
In the United States, there has been an increased emphasis on science, technology, engineering, and mathematics (STEM), and especially engineering, in pre-college settings. There are several potential benefits of this, including: increasing the quantity and diversity of students who pursue STEM careers, improving all students' technological…
Descriptors: STEM Education, Engineering Education, Student Diversity, Technological Literacy
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Ozaltin, Nur Ozge; Besterfield-Sacre, Mary; Clark, Renee M. – Advances in Engineering Education, 2015
Learning how to design innovatively is a critical process skill for undergraduate engineers in the 21st century. To this end, our paper discusses the development and validation of a Bayesian network decision support tool that can be used by engineering educators to make recommendations that positively impact the innovativeness of product designs.…
Descriptors: Engineering Education, Decision Making, Teacher Attitudes, College Faculty
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