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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
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
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
Marley Belot – Online Submission, 2025
Space exploration requires individuals who can think critically, adapt to uncertainty, and learn in cognitively complex environments. This paper examines how Human Systems Engineering (HSE) and cognitive design principles can enhance both astronaut training and STEM education on Earth. The same methodologies that help astronauts manage stress,…
Descriptors: Human Factors Engineering, Cognitive Processes, STEM Education, Aerospace Education
Dziob, Daniel; Górska, Urszula; Kolodziej, Tomasz; Cepic, Mojca – International Journal of Technology and Design Education, 2022
The Chain Experiment competition has been held successfully for 6 years in Poland and is attracting growing interest. The competition provides participants with a task that involves designing and constructing a contraption that is an element in a chain of events that are based on various physical phenomena. The contraptions are then linked…
Descriptors: Physics, Competition, Foreign Countries, Science Experiments
Nedaei, Mahboubeh; Radmehr, Farzad; Drake, Michael – Mathematical Thinking and Learning: An International Journal, 2022
Previous studies have suggested that problem-posing activities could be used to improve the teaching, learning, and assessment of mathematics. The purpose of this study is to explore undergraduate engineering students' problem posing in relation to the integral-area relationship. The goal is to help fill a gap in tertiary level research about…
Descriptors: Engineering Education, Undergraduate Students, Calculus, Mathematics Instruction
Clay, John D.; Collins, Eric – Chemical Engineering Education, 2020
Generating a problem that addresses multiple course learning objectives can be a challenging, but worthwhile exercise for a professor. These types of problems are particularly useful late in a course to help students tie together seemingly disparate concepts to solve an integrated problem that requires them to review concepts mastered throughout…
Descriptors: Smoking, Electronic Equipment, Educational Objectives, Teaching Methods
Sung, Euisuk; Kelley, Todd R. – International Journal of Science and Mathematics Education, 2023
With the increasing importance of teaching STEM to young students, the engineering design process (EDP) has become a popular learning platform in K-12 STEM education. The engineering design process guides students in solving engineering problems, but there is a lack of understanding of how students utilize this process. In this study, we explored…
Descriptors: Elementary School Students, Engineering, Design, STEM Education
Weng, Chunmeng; Chen, Congying; Ai, Xianfeng – International Journal of Technology and Design Education, 2023
This paper illustrates the design-based learning (DBL) approach to promoting the deep learning of students and improving the quality of teaching in engineering design education. We performed three aspects of research with students in a typical educational activity. The first study investigated students' deep learning before and after the DBL…
Descriptors: Learning Processes, Teaching Methods, Educational Quality, Design
Jung Han; Euisuk Sung; Todd Kelley; John Geoffrey Knowles – Canadian Journal of Science, Mathematics and Technology Education, 2023
There is a notable shift towards prioritizing the teaching of engineering design within K-12 education, coupled with a strong recommendation for engineering design-based integrated STEM education. This approach underscores the sharing of science and engineering practices as a means to facilitate the learning of various STEM disciplines.…
Descriptors: STEM Education, Engineering Education, Elementary Schools, Secondary Schools
Shechter, Taly; Eden, Sigal; Spektor-Levy, Ornit – Journal of Cognitive Education and Psychology, 2021
The objective of this study was to examine in what ways and to what extent preschoolers (5-6 years of age) manifest early Engineering Habits of Mind (EHoM) while engaging in an open-ended problem-solving construction task. The study comprised 228 children (120 boys and 108 girls). The study implemented a quantitative approach. The main research…
Descriptors: Preschool Children, Thinking Skills, Engineering, Problem Solving
Ahmet Erol – Education and Information Technologies, 2024
STEM education, which means integrated thinking, attracts the attention of early childhood educators and researchers. Engineering education, which naturally serves STEM integration, contributes to children's problem-solving skills with failure analysis and continual improvement habits of mind. Children need adult support in this process due to…
Descriptors: STEM Education, Early Childhood Education, Problem Solving, Teacher Role
Wasukree Sangpom; Narongsak Sangpom – Educational Planning, 2024
Problem-posing has been recognized for enhancing students' engagement, problem-solving skills, and mathematical knowledge, which leads to higher mathematics achievement. This research is experimental research with a randomized comparison groups pre-test and post-test design, which aims to examine the effect of using online problem-posing to…
Descriptors: Foreign Countries, Mathematics Instruction, Mathematics Achievement, Problem Solving

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