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Rennick, Christopher; Litster, Greg; Hulls, C. C. W.; Hurst, Ada – IEEE Transactions on Education, 2023
Contribution: This article defines "curricular hackathons" and describes the features, challenges, and opportunities of adopting the hackathon format into engineering curricula. It is based on experience implementing a series of curricular hackathons which provide students with formative design experiences as they address ill-structured…
Descriptors: Curriculum Development, Engineering Education, Curriculum Implementation, Design
Alexis N. Prybutok; Ayinoluwa Abegunde; Kenzie Sanroman Gutierrez; Lauren Simitz; Chloe Archuleta; Jennifer Cole – Chemical Engineering Education, 2024
Engineering curriculum often fails to connect content and decisions to impacts on diverse, particularly marginalized, communities. Given that integration of social justice ideas into curriculum is currently uncommon among most faculty, we provide resources in the form of a workshop to help catalyze these efforts by teaching faculty how to…
Descriptors: Chemical Engineering, Social Justice, Racism, Workshops
Wolmarans, Nicky – Teaching in Higher Education, 2022
One of the intellectual threads to which Suellen Shay contributed was describing the curriculum structure of professional and vocational education. This work was part of the Bernsteinian call for a return to knowledge in the curriculum. But education for vocations and professions, termed 'regions', remains a vexing problem. Turning to LCT…
Descriptors: Professional Education, Vocational Education, Semantics, Theory Practice Relationship
Mubarak, Hamisi Ramadhan; Khan, Md. Shahadat Hossain – European Journal of Engineering Education, 2022
The growing need for good teaching practices in Engineering Education (Eng.Ed) that will improve the graduate's complex engineering problem-solving skills, has attracted a great deal of attention from researchers in recent years. This increasing interest demands that practitioners should examine their teaching practices from all corners,…
Descriptors: Student Attitudes, Teacher Effectiveness, Engineering Education, Problem Solving
Fernandes, Fábio A. O.; Marques, Clauber; Castelan, Jovani; Fritzen, Daniel; Alves de Sousa, Ricardo J. – Education Sciences, 2020
This paper reports pedagogical experiences and educational techniques in the field of Mechanics of Structures (Mechanical Engineering degree), resorting to computational tools. Several aspects are addressed, covering CAD (Computer-Aided Design) modelling systems to CAE (Computer-Aided Engineering) solutions, in terms of analysis and validation of…
Descriptors: Learning Processes, Engineering Education, Computer Assisted Design, Curriculum Development
Rodríguez, Reyna del Carmen Martínez; Corona, Lilia Benítez; Espinosa, Alejandra Hernández – Bulgarian Comparative Education Society, 2019
Within the framework of globalization, current events are diverse and heterogeneous. The General Coordination of Technological and Polytechnic Universities in Mexico (CGUTyPM) adopted a competency-based educational model with the objective of preparing professionals not only with the necessary knowledge but also with adequate skills, attitudes,…
Descriptors: Student Attitudes, Engineering Education, Global Approach, Competency Based Education
Theresa K. Green – ProQuest LLC, 2021
One goal of undergraduate engineering education is to prepare students with the knowledge, skills, and decision-making strategies that are necessary for success in engineering practice. One proposed method to teach students these skills is to incorporate habits of mind into K-12 and undergraduate curricula. Habits of mind are the intelligent,…
Descriptors: Engineering, Technical Occupations, Undergraduate Study, Engineering Education
Desha, Cheryl; Caldera, Savindi; Hutchinson, Deanna – International Journal of Sustainability in Higher Education, 2021
Purpose: This study aims to explore the role of planned, sudden shifts in lived experiences, in influencing learner capabilities towards improved problem-solving for sustainable development outcomes. The authors responded to employers of engineering and built environment graduates observing limited "real-life" problem-solving skills,…
Descriptors: Context Effect, Sustainable Development, Problem Solving, Engineering
Jen, Tessaly; Morales, Christina; Greenwald, Eric; Montgomery, Ryan; Loper, Suzanna; Barber, Jacqueline – International Journal of Science Education, 2020
The United States' Next Generation Science Standards (NGSS) elevate engineering design to the same stature as scientific inquiry, calling on science teachers to engage students in engineering practices to solve real-world problems. In response, researchers and curriculum developers designed and studied Virtual Engineering Internships (VEIs) to…
Descriptors: Science Education, Standards, Engineering Education, Learner Engagement
Douglas, Kerrie A.; Moore, Tamara J.; Johnston, Amanda C.; Merzdorf, Hillary E. – International Journal of Education in Mathematics, Science and Technology, 2018
Assessment of students' critical thinking and problem solving in engineering is a real challenge for classroom teachers and researchers. Yet, students demonstrate evidence of learning through multiple means, including written reflections. The purpose of this study was to explore how students in grades 5 and 7 reflect on what they had learned about…
Descriptors: Engineering Education, Design, Student Attitudes, Content Analysis
Shakhman, Larisa; Barak, Moshe – EURASIA Journal of Mathematics, Science and Technology Education, 2019
This study addresses the development and evaluation of the Physics Problem-Solving Taxonomy (PPST), comprising five levels: retrieval, diagnosis, strategy, conceptual, and creative thinking. The taxonomy draws on Bloom's revised taxonomy in the cognitive domain, the Types of Knowledge Taxonomy, and the Problem-Solving Taxonomy in engineering. The…
Descriptors: Foreign Countries, Physics, Problem Solving, Taxonomy
Winberg, Christine; Winberg, Simon; Jacobs, Cecilia; Garraway, James; Engel-Hills, Penelope – Teaching in Higher Education, 2016
In this paper we study epistemological transitions across an intended engineering curriculum and recommend strategies to assist students in attaining the increasingly complex concepts and insights that are necessary for transition to advanced levels of study. We draw on Legitimation Code Theory [Maton, Karl. 2014, "Knowledge and Knowers:…
Descriptors: Higher Education, Engineering, Engineering Education, Epistemology
Rodriguez-Andara, Alejandro; Río-Belver, Rosa María; Rodríguez-Salvador, Marisela; Lezama-Nicolás, René – International Journal of Sustainability in Higher Education, 2018
Purpose: The purpose of this paper is to deliver a roadmap that displays pathways to develop sustainability skills in the engineering curricula. Design/methodology/approach: The selected approach to enrich engineering students with sustainability skills was active learning methodologies. First, a survey was carried out on a sample of 189 students…
Descriptors: Sustainability, Engineering Education, Literacy, Active Learning
Silva, Arlindo; Fontul, Mihail; Henriques, Elsa – European Journal of Engineering Education, 2015
Engineering design is known as an answer to an ill-defined problem. As any answer to an ill-defined problem, it can never be completely right or absolutely wrong. The methods that universities use to teach engineering design, as a consequence of this, suffer from the same fate. However, the accumulated experience with the "chalk and…
Descriptors: Foreign Countries, Engineering, Engineering Education, Design
Digital Promise, 2017
As they prepared for the 2016-2017 school year, administrators and teachers at Design Tech High School ("d.tech"), a public charter school in Northern California, decided they needed a deeper understanding of how students learn. According to Nicole Cerra, Director of Learning, "Obviously you need to get to know students…
Descriptors: Brainstorming, Problem Solving, Public Schools, Charter Schools