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Shawcross, Judith K.; Ridgman, Tom W. – European Journal of Engineering Education, 2019
This paper reports on a study aiming to develop theory and improve practice within an Engineering Education context. The focus is on the development of students' graduate-level work skills during Higher Education programmes and a specific practice example provided an ideal study opportunity. Engaged Scholarship, a research approach from Management…
Descriptors: Theory Practice Relationship, Engineering Education, Graduate Students, Skill Development
Eder, Wolfgang Ernst – Universal Journal of Educational Research, 2016
Hubka's theory of technical systems (TTS) is briefly outlined. It describes commonalities in all engineering devices, whatever their physical principles of action. This theory is based on a general transformation system (TrfS), which can be used to show engineering in the contexts of society, economics and historic developments. The life cycle of…
Descriptors: Theories, Engineering Technology, Engineering Education, Systems Approach
Gholami, Hosseinali – International Journal of Mathematical Education in Science and Technology, 2022
Practical problem solving is not common in many mathematical classes in Malaysian upper secondary schools. Usually, students receive the mathematical concepts through abstract materials (students cannot see some of them in their daily life). Thus some students believe that 'mathematics is not necessary for human life'. In this article, the…
Descriptors: Teaching Methods, Mathematics Instruction, Building Design, Problem Solving
Pablo Serna-Gallén; Maria Fortuño-Morte; Héctor Beltrán-Mir; Eloísa Cordoncillo – Journal of Chemical Education, 2022
This article presents and discusses the results of an educational innovation that seeks to introduce the world of molecular gastronomy in chemistry lessons as a means to review stoichiometry and offer an alternative way to learn. In the literature to date, there is no evidence of haute cuisine having been employed to contextualize stoichiometry…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Game Based Learning
Marmur, Ofer; Koichu, Boris – Mathematical Thinking and Learning: An International Journal, 2023
This paper explores student emotion and learning experiences fostered by lecturing-style instruction in Real-Analysis problem-centered lessons. We focus on two lessons that were taught by two reputable instructors and involved challenging, mathematically-related problems the students did not understand. Nonetheless, one lesson evoked negative…
Descriptors: Heuristics, Discourse Analysis, Recall (Psychology), Correlation
Rafi Rashid; Rick Szostak – Issues in Interdisciplinary Studies, 2023
The literature on interdisciplinary teaching has tended to stress undergraduate teaching. As interdisciplinary graduate teaching becomes increasingly common, we need to reflect on what graduate students need to know. This article discusses key ideas that all interdisciplinary graduate programs should communicate. In particular, we need to teach…
Descriptors: Graduate School Faculty, Interdisciplinary Approach, Graduate Study, Student Needs
Gopinath, B.; Santhi, R. – Higher Education for the Future, 2021
In this article, Fishbone-based advanced computational thinking (FACT) pedagogy is proposed by fusing fishbone pedagogy and computational thinking pedagogy for enhancing teaching-learning process while teaching engineering and science courses, for engineering and science students respectively. The proposed FACT pedagogy has been implemented using…
Descriptors: Problem Solving, Thinking Skills, Computation, Visual Learning
Hughes, Andrew J.; Merrill, Chris – Technology and Engineering Teacher, 2021
Technology and Engineering Education (T&EE) includes "engineering design challenges" to establish a connection to designing and problem-solving indicative of being an Engineer. Engineering design challenges involving bridges (or towers) have been a common feature of the discipline. These bridge design challenges ask students to…
Descriptors: Design, Engineering Education, Teaching Methods, Problem Solving
Lai, Ying-Hsun; Chen, Shih-Yeh; Lai, Chin-Feng; Chang, Yao-Chung; Su, Yu-Sheng – Interactive Learning Environments, 2021
Due to their applications on varied and complex issues, Artificial Intelligence (AI) and Internet of Things (IoT) (collectively, AIoT) have become popular new-generation courses, but the learning of such courses needs to consider actual situations and to analyze complicated problems, making it difficult for students to improve their academic…
Descriptors: Artificial Intelligence, Internet, Computation, Thinking Skills
Anggoro, Florencia K.; Dubosarsky, Mia; Kabourek, Sarah – Education Sciences, 2021
In the Next Generation Science Standards (NGSS), problem-solving skills are part of science and engineering practices for K-12 students in the United States. Evaluating these skills for the youngest learners is difficult due to the lack of established measures. This paper reports on our process of developing an observation instrument to measure…
Descriptors: Problem Solving, Preschool Education, Preschool Children, Observation
Rowan Nas – Mathematics Education Research Group of Australasia, 2024
Creativity is a task-specific construct that exhibits diverse characteristics depending on the context it operates in. Currently, there is little consensus on how creativity can be defined and taught within STEM education. In this study, mathematics teachers' beliefs about STEM creativity and their pedagogical approaches to teaching creativity…
Descriptors: Mathematics Teachers, Beliefs, Teacher Attitudes, Teaching Methods
Ai-Jou Pan; Yu-Che Huang; Chin-Feng Lai – Interactive Learning Environments, 2024
Engineering education emphasizes experiential learning and laboratory experience, an approach which has faced significant challenges during the COVID-19 pandemic. The inability to conduct hands-on laboratory experiments in engineering courses can significantly impede the student's learning experience, as well as their acquisition and retention of…
Descriptors: Learning Management Systems, Hands on Science, Distance Education, Laboratories
Redman, Christine – Theory Into Practice, 2017
The main focus here is to examine the benefits of defining and developing an engineering curriculum for elementary schools. Like many other international educational systems, Australian educational settings have been seeking to effectively implement science, technology, engineering, and mathematics (STEM) education. However, current assumptions…
Descriptors: STEM Education, Engineering, Engineering Education, Science Education
Wu, Sally P. W.; Van Veen, Barry; Rau, Martina A. – Journal of Engineering Education, 2020
Background: Recent engineering education research has found improved learning outcomes when instructors engage students actively (e.g., through practice problems) rather than passively (e.g., in lectures). As more instructors shift toward active learning, research needs to identify how different types of activities affect students' cognitive…
Descriptors: Freehand Drawing, Prompting, Cues, Active Learning
Zeid, Abe – Athens Journal of Education, 2020
Teaching STEM concepts to today's high school students has been challenging. Span of attention is short. Students are glued to their electronic devices. They cannot appreciate the abstract method of teaching, meaning covering concepts followed by solving problems from a textbook. Research has shown that students become excited and motivated to…
Descriptors: Engineering Education, STEM Education, High School Students, Problem Based Learning

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