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De La Hoz, Enrique; Zuluaga, Rohemi; Mendoza, Adel – Journal on Efficiency and Responsibility in Education and Science, 2021
This research uses a three-phase method to evaluate and forecast the academic efficiency of engineering programs. In the first phase, university profiles are created through cluster analysis. In the second phase, the academic efficiency of these profiles is evaluated through Data Envelopment Analysis. Finally, a machine learning model is trained…
Descriptors: Program Effectiveness, Program Evaluation, Engineering Education, Multivariate Analysis
Reeping, David; Knight, David B. – Journal of Engineering Education, 2021
Background: Transfer students in engineering must navigate a myriad of information sources to obtain accurate information on how to matriculate into a 4-year institution. Although some institutional and state-level initiatives attempt to streamline the transfer process, students still report difficulties. Purpose: This article explores the extent…
Descriptors: Engineering Education, College Transfer Students, Information Sources, Access to Information
Muhammad Noh, Nurbaiah; Md Zain, Mohd Raizamzamani; Hamid, Yazmin Sahol; Abu Bakar, Ilyani Akmar; Mohamad, Mazlina – Asian Journal of University Education, 2021
This paper presents the assessment of a continuous assessment in a project for the Dynamics subject using an analytic rubric. Dynamics subject should improve the ability of students to evaluate and solve problems using well-understood basic concepts implemented in a simple logical manner. It focuses on the proper interpretation and application of…
Descriptors: Undergraduate Students, Engineering Education, Civil Engineering, Scoring Rubrics
Van Wyk, Barend; Mason, Henry D. – Cogent Education, 2021
This article reports on a study investigating the relationship between university students' self-reported use and application of learning and study strategies and student success indicators (timeframe and student type, namely low-performing, average-performing, or high-performing). Participants were 1,439 engineering students enrolled for academic…
Descriptors: Learning Strategies, Engineering Education, College Students, Foreign Countries
Papakonstantinou, Margarita; Skoumios, Michael – EURASIA Journal of Mathematics, Science and Technology Education, 2021
According to the Next Generation Science Standards, science instructional materials can be efficient as long as they integrate three dimensions: science and engineering practices, crosscutting concepts and disciplinary core ideas. However, research investigating the integration of these three dimensions in the content of school science textbooks…
Descriptors: Foreign Countries, Science Instruction, Middle Schools, Textbook Content
Trede, Franziska; Braun, Robin; Brookes, Wayne – European Journal of Engineering Education, 2021
Studio-based learning is gaining currency in university engineering education programmes. It is widely argued that this practice-oriented, collaborative approach to developing professional, teamwork and interpersonal skills is needed to prepare the future workforce. In this paper, students' expectations and perceptions of a first-year studio were…
Descriptors: Engineering Education, Expectation, Student Attitudes, Teaching Methods
Gravel, Brian E.; Svihla, Vanessa – Journal of the Learning Sciences, 2021
Background: Design problems have long attracted researchers' attention for their potential to provide authentic learning opportunities. While we have methods for supporting students to learn through relatively simple engineering and design tasks, supporting students to address complex problems that they find and frame remains poorly understood.…
Descriptors: Engineering Education, Design, Authentic Learning, Educational Environment
Khosronejad, Maryam; Reimann, Peter; Markauskaite, Lina – European Journal of Engineering Education, 2021
Professional identity development is central to engineering education and has been an important focus of design for learning. However, little is known about how learners develop different aspects of engineering identity in response to the constraints and enablements of their learning environment. The purpose of this paper is to propose an…
Descriptors: Cooperative Learning, Problem Solving, Professional Identity, Engineering Education
Han, Feifei; Ellis, Robert A. – Higher Education Research and Development, 2021
Adopting an ecological perspective on student learning in blended course designs, this study investigates the quality of 335 undergraduates' experience in a first-year compulsory engineering course. Interrelations amongst cognitive, social, and material aspects of the student learning experience are examined. The cognitive elements include…
Descriptors: Student Experience, Blended Learning, Undergraduate Students, Instructional Effectiveness
Wee Lee, Siong; Jamal, Mohammad Hazizi Bin; Hasbullah, Mohd Amran Bin; Mohamed Ibrahim, Mohd Johan Bin; Mohammad, Shahrul Nizam Bin; Haron, Hairol Anuar Bin – Asian Journal of University Education, 2021
The attainment of program outcomes for Solid Mechanic course offered to the Diploma in Civil Engineering students is evaluated. It was found that most of the students were incapable to demonstrate graduate attributes which applying knowledge of mathematics, natural science and engineering fundamentals and the ability to analyse engineering…
Descriptors: Academic Failure, Civil Engineering, Engineering Education, Mechanics (Physics)
Hinojos-Ramos, Jesús Eduardo; Farfán, Rosa María; Orozco-del-Castillo, Mauricio Gabriel – International Journal of Mathematical Education in Science and Technology, 2021
This paper is the result of a research done from the Socioepistemological Theory of Mathematics Education, perspective in which we enquire about the reasons to study trigonometric Fourier series in electrical engineering, and what historical and epistemological conditions can be considered to develop more profound meanings when this topic is…
Descriptors: Mathematics Instruction, Epistemology, Energy, Engineering Education
Long, Leroy L., III – Advances in Engineering Education, 2021
Engineering education classrooms are transforming into spaces focused on advancing critical and ethical skills in addition to technical skills (Ceylan & Lee, 2003; Gunnink & Bernhardt, 2002; Siller, 2001). Yet, as countless Black people continue to be murdered by White police officers and vigilante citizens, many engineering classrooms…
Descriptors: Teaching Methods, Racial Bias, Engineering Education, Critical Theory
Bullington, Kim E.; Tomovic, Cynthia L.; Jovanovic, Vukica; Dean, Anthony W.; White-Levatich, Arianna; Landaeta, Rafael – Journal of STEM Education: Innovations and Research, 2021
Adult learners have different needs than traditional college-aged students. We present the first-year results of a targeted learning community for high-achieving, low-income engineering and engineering technology adult students. Students in this project received academic support and mentorship to prepare them for entering the engineering…
Descriptors: Adult Students, Sense of Community, Engineering Education, College Students
Martinez-Vazquez, P. – Higher Education Pedagogies, 2021
This paper proposes a model to re-balance assessment schedules through the quantification of students' workload. The initiative derives from the migration of a term-based to a semester-based calendar in a HE institution. The change required scrutiny of former and new assessment calendars which highlighted deficiencies in the administration of…
Descriptors: Semester System, Higher Education, Educational Change, Engineering Education
Thi-Huyen, Nguyen; Xuan-Lam, Pham; Thanh Tu, Nguyen Thi – Eurasian Journal of Educational Research, 2021
Purpose: In this study, we presented the Design Thinking model called DITC (Design Thinking in Class) and conducted an experiment during one month with 197 engineering students at Hanoi University of Technology (HUST) to determine how this model could aid in the growth of problem solving and teamwork mindset in a flipped classroom. Method: A…
Descriptors: Thinking Skills, Design, Problem Solving, Teamwork