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Vasicek, Thaddeus W.; Kress, Patrick M.; Jenkins, Samir V. – Journal of Chemical Education, 2020
Nanoscale phenomena are under increasingly intense investigation both in academia and industry. The unique physical and chemical properties stemming from their high surface area and confined space lead to properties that are distinct from atomic and bulk materials. Students need experience in nanoscience to enter this growing field of nanoscience…
Descriptors: Chemistry, Engineering Education, Technology, Molecular Structure
Hu, Yuqi; Li, Chunli – Journal of Chemical Education, 2020
Relying on the National-Local Joint Engineering Laboratory and National Chemical Design Competition for college students, a multidimensional education mode presented here combines the advantages of problem-based learning (PBL) and "Conceive-Design-Implement-Operate" (CDIO) approaches, while also overcoming the restrictions of PBL and…
Descriptors: Problem Based Learning, Teaching Methods, Undergraduate Students, Chemical Engineering
Klassen, Mike; Sá, Creso – Higher Education: The International Journal of Higher Education Research, 2020
New institutionalism predicts a global convergence in how higher education is organized. This convergence might be expected to intensify in professional education given accreditation requirements of professional bodies. Engineering presents an opportunity to study how international mobility agreements facilitate the development and normative…
Descriptors: Foreign Countries, Engineering Education, Accreditation (Institutions), Higher Education
Hughes, Andrew J.; Merrill, Chris – Technology and Engineering Teacher, 2020
Design is often accepted as a fundamental aspect of engineering (Dym, et al., 2005). The design process is frequently portrayed as a set of steps. However, the design process is more complex than just a set of steps in a relatively fixed process. The complex nature of design, design thinking, questioning, and decision making is exactly what…
Descriptors: Engineering Education, STEM Education, Design, Manufacturing
Prince, Michael; Koretsky, Milo; Self, Brian; Vigeant, Margot – Chemical Engineering Education, 2020
Cognitive conflict arises when students' expectation about a physical situation, such as the relative temperatures of metal and cloth, are not experimentally verified. The paper reviews this approach as a tool for promoting conceptual learning in undergraduate engineering courses, through three case studies. These cases demonstrate that cognitive…
Descriptors: Undergraduate Students, Engineering Education, Teaching Methods, Cognitive Processes
Winberg, Christine; Bramhall, Mike; Greenfield, David; Johnson, Patrick; Rowlett, Peter; Lewis, Oliver; Waldock, Jeff; Wolff, Karin – European Journal of Engineering Education, 2020
In this systematic review of the research literature on engineering employability, curricular and pedagogical arrangements that prepare graduates for work in the twenty-first century were identified. The research question guiding the review was: Which curricular and pedagogical arrangements promote engineering students' employability? The…
Descriptors: Engineering Education, Employment Potential, 21st Century Skills, Knowledge Level
Zheng, Junwei; Wu, Guangdong; Li, Hongyang – Journal of Civil Engineering Education, 2020
Creativity is an important characteristic for civil engineering professionals and students when facing innovation challenges associated with construction engineering projects. Previous studies have not examined the temporary group context when conducting research on creativity. Drawing on the social cognitive theory and the actor-partner…
Descriptors: Student Motivation, Civil Engineering, Creativity, Construction (Process)
Oti, Akponanabofa Henry; Farrell, Peter; Berrais, Abbes; McMahon, Paul; Boulbibane, Mostapha; Paschalis, Spyridon; Osman, Yassin; AL-Faraj, Furat; Duncan, Malcolm – Higher Education, Skills and Work-based Learning, 2022
Purpose: In line with business goals of customer satisfaction, higher education institutions of learning consider excellent student experience a priority. Teaching and learning are important aspects of satisfaction that are monitored annually by universities using tools such as the National Student Survey (NSS). The NSS results are useful for…
Descriptors: Student Diversity, Engineering Education, Interdisciplinary Approach, Student Projects
Casper, A. M. Aramati; Rambo-Hernandez, Karen E.; Park, Seoyeon; Atadero, Rebecca A. – Journal of Engineering Education, 2022
Background: In Spring 2020, the COVID-19 pandemic sent universities into emergency remote education. The pandemic has been disruptive but offers the opportunity to learn about ways to support students in other situations where abrupt changes to teaching and learning are necessary. Purpose/Hypothesis: We described the responses of engineering and…
Descriptors: Distance Education, COVID-19, Pandemics, Engineering Education
Lilly, Sarah; McAlister, Anne M.; Fick, Sarah J.; Chiu, Jennifer L.; McElhaney, Kevin W. – Journal of Research in Science Teaching, 2022
Contemporary science education frameworks identify computational thinking as an essential science and engineering practice that supports scientific sense-making and engineering design. Despite national emphasis on teaching science, engineering, and computational thinking (NGSS Lead States, 2013), little research has investigated the ways that…
Descriptors: Elementary School Teachers, Science Activities, Engineering Education, Elementary School Students
Aranguren, Patricia; Sánchez, Daniel; Casi, Álvaro; Araiz, Miguel; Catalán, Leyre – Journal of Technology and Science Education, 2022
The nowadays European educational framework boosts applying the learned theoretical concepts to real situations. Hence, practice sessions are key resources to present students direct applications of the theoretical concepts shown in class. Thus, developing new educational equipment and practice sessions oriented to bringing theoretical knowledge…
Descriptors: Foreign Countries, Game Based Learning, Educational Games, Educational Equipment
Wang, Xi; Dai, Minhao; Mathis, Robin – International Journal of STEM Education, 2022
Background: Given the relatively low graduation and retention rate in undergraduate engineering programs in the United States, the factors that influence student success outcomes need to be examined. However, limited research systematically studied both student- and school-level factors and how they influenced undergraduate engineering student…
Descriptors: Student Characteristics, Institutional Characteristics, Influences, Engineering Education
Marra, Rose M.; Hacker, Douglas J.; Plumb, Carolyn – Journal of Engineering Education, 2022
Background: Developing self-directed learning (SDL) skills in engineering students is critical to support life-long learning. This research was conducted at Iron Range Engineering (IRE), an innovative, problem-based learning (PBL) engineering program, which has suffused the concept of metacognition throughout its curriculum. Purpose/Hypotheses:…
Descriptors: Metacognition, Independent Study, Skill Development, Problem Based Learning
Amirtharaj, S.; Chandrasekaran, G.; Thirumoorthy, K.; Muneeswaran, K. – Higher Education for the Future, 2022
The capabilities expected to be attained by learners, after learning a course or programme, are called course outcomes (CO) and programme outcomes (PO), respectively. The objectives of outcome-based education (OBE) are to ensure realization of grooming graduates with all the theoretical, practical and soft skills required to make them competent…
Descriptors: Outcome Based Education, Educational Assessment, Outcomes of Education, Educational Objectives
Kumar, Amit; Mantri, Archana – Education and Information Technologies, 2022
Embedded system course requires the manifestation of acquired knowledge through the transfer of the relevant skill set in a hands on environment to achieve the respective course outcome. Laboratory skills provide the optimum exposure and experiential learning to obtain real time solutions for real time problems. The present embedded system course…
Descriptors: Engineering Education, Laboratories, Experiential Learning, Computer Simulation

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