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Simoes, Camila; Chatterjee, Parag; Lemes, Lucía Paola; Tesis, Andreína; La Paz, Franco; Cuñarro, Gonzalo; Masset, María Belén; Yelós, Vanessa; Parodi, Mariano; Cardelino, Juan; Armentano, Ricardo – Higher Education, Skills and Work-based Learning, 2021
Purpose: In times when digitized and blended learning paradigms are getting more profuse, the COVID-19 pandemic substantially changed the dynamics of this program, forcing all the courses to migrate to virtual modality. This study highlights the biological engineering courses at the University of the Republic (Universidad de la República) in…
Descriptors: Electronic Learning, Biology, Engineering Education, Foreign Countries
Shmallo, Ronit; Ragonis, Noa – Education and Information Technologies, 2021
The paper presents research that aims to expose students' understanding of the "this" reference in object-oriented programming. The study was conducted with high school students (N = 86) and college engineering students (N = 77). Conceptualization of "this" reflects an understanding of objects in general and involves aspects of…
Descriptors: Computer Science Education, Programming, High School Students, College Students
Thomsen, Trine; Borre-Gude, Stefan – Journal of Chemical Education, 2021
In this article, a proven safety concept with documented success is presented. The concept aligns with best safety practices and the international engineering educational framework termed "The CDIO Initiative," and it has resulted in a strong safety culture among students and staff. This concept has been developed for undergraduate…
Descriptors: Undergraduate Students, Chemistry, Biotechnology, Engineering Education
Lukac, Zeljko; Kastelan, Ivan; Vranjes, Mario; Todorovic, Branislav M. – IEEE Transactions on Learning Technologies, 2021
Education of electronics engineers is one of the most dynamic types of education due to the new technologies that are rapidly being introduced into the field. Therefore, it is necessary to use modern teaching and laboratory methods that accompany the development of new technologies. When it comes to the automotive industry, a modern vehicle must…
Descriptors: Engineering Education, Motor Vehicles, Masters Programs, Computer Software
Hirshfield, Laura J.; Koretsky, Milo D. – Journal of Computer Assisted Learning, 2021
In engineering design, engineers must be able to think creatively, effectively toggling between divergent thinking (developing multiple novel ideas) and convergent thinking (pursuing an appropriate idea using engineering analyses). However, creative thinking is not emphasized in many undergraduate engineering programs. In this empirical study, we…
Descriptors: Creative Thinking, Engineering Education, Cooperative Learning, Electronic Learning
Tambunan, Hamonangan; Silitonga, Marsangkap; Sidabutar, Uli Basa – International Journal of Mobile and Blended Learning, 2021
To compare the different impacts of the balance of face-to-face and online learning in blended learning, along with learning styles, an experiment was done using a 3x4 design consisting of three blended learning composition groups of 25% face-to-face and 75% online, an equal balance of face-to-face and online, and 75% face-to-face and 25% online.…
Descriptors: Blended Learning, Cognitive Style, Student Teachers, Engineering Education
Singh, Pooja; Singh, Lalit Kumar – IEEE Transactions on Education, 2021
Contribution: This article shares the learning ecosystem of a project-based safety-critical systems (SCS) course, identifying course contents that support self-directed learning and how assignments develop students' knowledge and understanding toward meeting the demand of industries. Background: The syllabus for undergraduate and postgraduate…
Descriptors: Engineering Education, Safety, Student Projects, Active Learning
Singamneni, Sarat – Education Sciences, 2021
Building a technology-driven world appears to be the main motivational force behind students choosing to undertake engineering studies. The first year of engineering education plays a significant role in demonstrating sufficient mathematical and scientific rigor to satisfy these motivational factors. The common applied mechanics courses play a…
Descriptors: Engineering Education, Introductory Courses, Mechanics (Physics), STEM Education
Castillo-Sepúlveda, Jorge; Pasmanik, Diana – European Journal of Engineering Education, 2021
This study addresses the interpretations of the human in the discourse of civil industrial engineers in Chile and analyses their relationship with ethics and training. We argue that engineering is a heterogeneous activity that requires the alignment of multiple elements. Among these, assumptions about the human influence both the design of…
Descriptors: Engineering Education, Discourse Analysis, Civil Engineering, Ethics
Lavi, Rea; Dori, Yehudit Judy; Dori, Dov – IEEE Transactions on Education, 2021
Contribution: The authors present a methodology for assessing both novelty and systems thinking, as expressed in the same conceptual models constructed by graduate engineering students. Background: Companies worldwide seek employees with creativity and systems thinking, since solving design problems requires both skills. Novelty and usefulness are…
Descriptors: Novelty (Stimulus Dimension), Systems Approach, Graduate Students, Engineering Education
O'Mahony, Tom – Practitioner Research in Higher Education, 2021
This article documents the time taken to assess two different types of final year engineering courses -- a more traditional course in which the purpose of assessment is mostly to measure performance, and a second, that uses a multi-stage assessment process to implement an assessment for learning perspective. The research question is to determine…
Descriptors: Tests, Assignments, College Seniors, Engineering Education
Ahmed, Danish; Nayeemuddin, Mohammed; Ayadat, Tahar; Asiz, Andi – International Journal of Higher Education, 2021
This paper discusses recent updates and developments of computing-based courses in the civil engineering discipline. Competency in computing is one of the most important capabilities for university graduates to obtain given the rapid development of computer technology in professional work. Civil engineering is no exception. In fact, many…
Descriptors: Competence, Civil Engineering, Engineering Education, College Graduates
Shibata, Mizuho; Demura, Kosei; Hirai, Shinichi; Matsumoto, Akihiro – IEEE Transactions on Education, 2021
Contribution: The information described in this study provides a starting point for discussing an effective robotics curriculum offered by any engineering university or institute. Background: Robotics is a multidisciplinary field that includes mechanical engineering, electrical and electronic engineering, and computer science. Several universities…
Descriptors: Engineering Education, Robotics, Higher Education, Core Curriculum
del Rosario, Zachary – Liberal Education, 2021
The experience of earning an engineering degree can be hard to understand. All through undergraduate and graduate training, students are handed a steady stream of increasingly hard puzzles. Classes introduce new tricks to solve these puzzles, each with a correct answer and an accepted solution. Students develop a professional identity as being…
Descriptors: STEM Education, College Students, Ethics, Engineering Education
Price, Argenta M.; Kim, Candice J.; Burkholder, Eric W.; Fritz, Amy V.; Wieman, Carl E. – CBE - Life Sciences Education, 2021
A primary goal of science and engineering (S&E) education is to produce good problem solvers, but how to best teach and measure the quality of problem solving remains unclear. The process is complex, multifaceted, and not fully characterized. Here, we present a detailed characterization of the S&E problem-solving process as a set of…
Descriptors: Problem Solving, Science Education, Engineering Education, Teaching Methods