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Uzel, Lütfi; Canbazoglu Bilici, Sedef – Journal of Turkish Science Education, 2022
The purpose of this research is to examine the effects of engineering design-based activities carried out in the sixth-grade Matter and Heat unit on the problem-solving skills of students, and the changes in the designing skills of students during these activities. This research, conducted by following the one-group pre-test -- post-test…
Descriptors: Engineering Education, Design, Learning Activities, Middle School Students
Steven Higbee; Sharon Miller; Karen Alfrey – Biomedical Engineering Education, 2025
Challenge: The Hodgkin-Huxley membrane conductance model has been featured in biomedical engineering (BME) curricula for decades. A typical BME assignment might require students to apply the relevant equations and parameters to model the generation of action potentials; however, there is opportunity for students to build and explore both…
Descriptors: Scientific Concepts, Biomedicine, Engineering Education, Models
Deepti Reddy Patil; Sridhar Iyer; Sasikumar – ACM Transactions on Computing Education, 2025
Design problems are often ill-structured as the requirements are broadly defined and have multiple correct solutions. Experts solve such problems by applying various cognitive and metacognitive skills before the formal specifications and solution designs are documented. Novices often need help solving ill-structured design problems as they lack…
Descriptors: Educational Environment, Problem Solving, Design, Technology Uses in Education
Bornasal, Floraliza; Brown, Shane; Perova-Mello, Natasha; Beddoes, Kacey – Journal of Engineering Education, 2018
Background:Concepts are defined generally as fundamental principles or global understandings specific to a field of expertise. Theories of situated cognition suggest that concepts may not have uniform meaning or representation in a particular social setting. Purpose/Hypothesis: The goal of this study was to investigate the process by which…
Descriptors: Engineering, Technical Occupations, Expertise, Problem Solving
Ghorashi, Bahman – Chemical Engineering Education, 2023
Due to the structured format of most engineering courses, the number of opportunities for engineering students to view matters differently from the traditional ways is limited. Therefore, a mandatory requirement was introduced into three engineering courses for students to propose an out of the ordinary solution to certain technical problems,…
Descriptors: College Students, Engineering Education, Creativity, Assignments
Koppikar, Unnati; Kandakatla, Rohit; Mallibhat, Kaushik; Joshi, Gopalkrishna – IEEE Transactions on Education, 2023
Contribution: This study identifies the skills required by the faculty to mentor first-year interdisciplinary design projects. The findings are compiled as a set of themes that can act as a guide for engineering educators in mentoring interdisciplinary design projects. Background: The National Academy of Engineering's (NAE) Engineer of 2020 report…
Descriptors: Engineering Education, Interdisciplinary Approach, Mentors, Problem Solving
Jou, Min; Chen, Pei-Chi; Wang, Jingying – Interactive Learning Environments, 2023
Previous research suggests that there should be a correlation between computational thinking and traditional cognitive and motor skills. At present, academia either considers cognitive skills a part of computational thinking, or investigates the correlation between computational thinking and cognitive skills. Current research on computational…
Descriptors: Thinking Skills, Computation, Cognitive Ability, Psychomotor Skills
Gafur Simsek; Aysegül Üldes; Yasemin Tas; Önder Simsek – Journal of Science Learning, 2023
The impact of engineering design-based STEM education on 9th-grade high school students' attitudes toward STEM and their problem-solving skills was examined in this study. The subject of factors affecting the heat conduction rate in solids was taught using STEM education. In an experimental design with one group pre-test and post-test, students…
Descriptors: STEM Education, Grade 9, High School Students, Problem Solving
Klassen, Mike; Reeve, Doug; Evans, Greg J.; Rottmann, Cindy; Sheridan, Patricia K.; Simpson, Annie – New Directions for Student Leadership, 2020
Engineering is developing extensive leadership education, supporting future professional engineers to engage with others in solving complex sociotechnical problems. A contemporary challenge is to integrate leadership learning into foundational coursework requirements.
Descriptors: Engineering Education, Leadership Training, Problem Solving, Integrated Curriculum
Elif Akçali; Jade Williams; Rachel Burress; Albert Aguila; Mariana Buraglia – INFORMS Transactions on Education, 2024
Although some studies have incorporated poetry into engineering courses, no studies exist that explore the use of writing poetry about technical topics to develop creative thinking skills in undergraduate engineering education. This study explores engineering students' perceptions of incorporating poetry writing within an upper-level…
Descriptors: Technical Writing, Poetry, Undergraduate Students, Engineering Education
Maya Usher; Miri Barak – International Journal of STEM Education, 2024
As artificial intelligence (AI) technology rapidly advances, it becomes imperative to equip students with tools to navigate through the many intricate ethical considerations surrounding its development and use. Despite growing recognition of this necessity, the integration of AI ethics into higher education curricula remains limited. This paucity…
Descriptors: Artificial Intelligence, Ethics, Ethical Instruction, Online Courses
Sevinç Parlak; Neriman Tokel; Ünal Cakiroglu – International Journal of Computer Science Education in Schools, 2024
This study explores the impact of robotics activities on the creativity and problem-solving performances of secondary school students. The participants consisted of 10 students from a computer science class at a secondary school. The robotics activities utilized Lego Ev3 kits and incorporated reverse engineering principles. Data were gathered…
Descriptors: Engineering Education, Robotics, Creative Thinking, Problem Solving
Deesha Chadha; Jerry Y. Y. Heng – Cogent Education, 2024
Engineering students are expected to develop their professional skills throughout the course of their degrees. Yet, there is no clear consensus among educators of which skills are being developed or how this is done effectively. This scoping review has been produced to draw together and disseminate information on effective techniques for…
Descriptors: Professional Education, Engineering Education, Communication Skills, Teamwork
Yi Ding; Qian Wang; Ru-De Liu; Jolene Trimm; Jiayi Wang; Shu Feng; Wei Hong; Xian-Tong Yang – SAGE Open, 2024
The paper examined the relations among problem solving, automaticity, and working memory load (WML) by changing the difficulty level of task characteristics through two applications. In Study 1, involving 68 engineering students, a 2 (automaticity) x 2 (WML) design was utilized for arithmetic problems. In Study 2, involving 76 engineering…
Descriptors: Short Term Memory, Cognitive Processes, Difficulty Level, Problem Solving
Ramesh Singh – Chemical Engineering Education, 2025
The overall performance of a chemical plant goes beyond engineering design and optimization. Operational factors such as teamwork, communication, human oversight, and process troubleshooting are crucial in determining the plant's safety and profitability. This paper proposes the integration of simulation-based teaching into the chemical…
Descriptors: Chemical Engineering, Facilities, Job Skills, Computer Simulation

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