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Simarro, Cristina; Couso, Digna – International Journal of STEM Education, 2021
The role of engineering education has gained prominence within the context of STEM education. New educational perspectives such as the National Research Council's Framework for K-12 Science Education consider engineering practices one of the central pillars of a sound STEM education. While this idea of developing a set of practices analogous to…
Descriptors: STEM Education, Engineering Education, Models, Elementary Secondary Education
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Divasón, Jose; Martinez-de-Pison, Francisco Javier; Romero, Ana; Saenz-de-Cabezon, Eduardo – IEEE Transactions on Learning Technologies, 2023
The evaluation of student projects is a difficult task, especially when they involve both a technical and a creative component. We propose an artificial intelligence (AI)-based methodology to help in the evaluation of complex projects in engineering and computer science courses. This methodology is intended to evaluate the assessment process…
Descriptors: Student Projects, Student Evaluation, Artificial Intelligence, Models
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Christine M. Cunningham; Gregory J. Kelly; Ashwin Mohan – Journal of Pre-College Engineering Education Research, 2023
Socially engaged engineering provides for student learning of the design, analysis, and practices of engineering as well as the ways that engineering is situated in sociocultural contexts. This paper provides a conceptual framework regarding socially engaged engineering for K-8 educators, researchers, and curriculum designers. The framework…
Descriptors: Elementary School Teachers, Middle School Teachers, Engineering Education, Social Justice
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Norström, Per; Hallström, Jonas – International Journal of Technology and Design Education, 2023
The common purpose of models is to provide simplified representations of other phenomena. Depending on type, they are suitable for communication, documentation, prognostication, problem solving, and more. Various types of models, such as drawings, mock-ups, flow charts, and mathematical formulae, are important tools in engineering work. An…
Descriptors: Secondary School Students, Engineering Education, Technology Education, Models
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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
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Precup, Radu-Emil; Hedrea, Elena-Lorena; Roman, Raul-Cristian; Petriu, Emil M.; Szedlak-Stinean, Alexandra-Iulia; Bojan-Dragos, Claudia-Adina – IEEE Transactions on Education, 2021
This article proposes an approach based on experiments to teach optimization technique (OT) courses in the Systems Engineering curricula at undergraduate level. Artificial intelligence techniques in terms of nature-inspired optimization algorithms and neural networks are inserted in the lecture and laboratory parts of the syllabus. The experiments…
Descriptors: Engineering Education, Teaching Methods, Systems Approach, Undergraduate Students
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Siebert-Evenstone, Amanda L.; Irgens, Golnaz Arastoopour; Collier, Wesley; Swiecki, Zachari; Ruis, Andrew R.; Shaffer, David Williamson – Journal of Learning Analytics, 2017
Analyses of learning based on student discourse need to account not only for the content of the utterances but also for the ways in which students make connections across turns of talk. This requires segmentation of discourse data to define when connections are likely to be meaningful. In this paper, we present an approach to segmenting data for…
Descriptors: Semantics, Discourse Analysis, Models, Epistemology
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Lupinacci, John; Happel-Parkins, Alison – Issues in Teacher Education, 2017
The acronym STEM is a ubiquitous term for seemingly anything in--or related to--the fields of science, technology, engineering, and mathematics, and the current dominant educational STEM discourse in teacher education is often organized around questions of how to integrate math and science into the other content areas or vice versa. The purpose of…
Descriptors: Teacher Education, STEM Education, Ecology, Inquiry
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van der Laan, Luke; Ormsby, Gail; Fergusson, Lee; Pau, Maria – Journal of University Teaching and Learning Practice, 2021
This article presents a work-based learning and research approach to professional postgraduate education specifically in the case of Higher Degree by Research (HDR) programs. It highlights a prototype of the Cohort-based Advisory Team (CAT) model as a useful strategy. The authors propose that a design thinking approach that empathises with the…
Descriptors: Professional Education, Graduate Students, Advisory Committees, Design
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Kloot, Bruce; Rouvrais, Siegfried – European Journal of Engineering Education, 2017
South Africa, with its national cultural diversity and post-apartheid challenges and commitments, finds echoes in the European context, especially considering the imperatives of openness and non-discrimination in higher education. With an historical tradition of excellence in engineering education, the emphasis on supporting educationally…
Descriptors: Engineering Education, International Education, Models, Foreign Countries
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Vladimirovich Pukharenko, Yurii; Vladimirovna Norina, Natalia; Aleksandrovich Norin, Veniamin – European Journal of Engineering Education, 2017
The article investigates modern issues of engineering education in Russia related to introduction of the Bologna system. The author shows that the situation in the education in general gives reasons for concern; the issue of qualitative enrolment of students for engineering specialties escalates; graduates with masters and bachelors' degrees are…
Descriptors: Engineering Education, Foreign Countries, Enrollment Trends, Graduates
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Pande, Prajakt; Chandrasekharan, Sanjay – Studies in Science Education, 2017
Multiple external representations (MERs) are central to the practice and learning of science, mathematics and engineering, as the phenomena and entities investigated and controlled in these domains are often not available for perception and action. MERs therefore play a twofold constitutive role in reasoning in these domains. Firstly, MERs stand…
Descriptors: STEM Education, Visualization, Imagination, Cognitive Processes
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Hoppe, Magnus; Westerberg, Mats; Leffler, Eva – Education & Training, 2017
Purpose: The purpose of this paper is to present and develop models of educational approaches to entrepreneurship that can provide complementary analytical structures to better study, enact and reflect upon the role of entrepreneurship in higher education. Design/methodology/approach A general framework for entrepreneurship education is developed…
Descriptors: Entrepreneurship, Teaching Methods, Business Administration Education, Engineering Education
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Huffman, Tanner; Burke, Barry – Technology and Engineering Teacher, 2015
Engineering byDesign™ (EbD) provides teachers and students with reflective, formative, and comprehensive summative assessment tools throughout the curriculum. Each lesson, unit, and course is created with a list of essential questions that are meant to guide students to a deeper understanding of national standards across the STEM domains (STL,…
Descriptors: Technological Literacy, Engineering Education, Student Evaluation, Evaluation Methods
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Santora, Kimberly A.; Mason, Emanuel J.; Sheahan, Thomas C. – Innovative Higher Education, 2013
Mentoring is useful in career development for the sciences and professions due to the cultures, skill sets, and experience-based learning in these fields. A framework for mentoring based on observations and data gathered as part of an international research and education project is presented. Students with multiple levels of experience and…
Descriptors: Engineering Education, Mentors, Models, Science Education
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