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Showing 1 to 15 of 36 results Save | Export
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Kashif Raza; Simon Li; Catherine Chua – Science & Education, 2024
Traditional engineering education (Eng. Ed) has received criticism for restricting student learning and experiences to practical skills development while ignoring the significance of fostering cognitive skills that encourage higher order thinking, criticality, and self-reflexivity. Imaginative education (IE) has emerged as a consideration for…
Descriptors: Engineering Education, Imagination, Higher Education, Conventional Instruction
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Fan, Hua; Xie, Huajiang; Feng, Quanyuans; Bonizzoni, Edoardo; Heidari, Hadi; McEwan, Michael P.; Ghannam, Rami – IEEE Transactions on Education, 2023
Continuous developments in the electronics industry have led to constantly changing career roles and graduate skills requirements. Students in the University of Electronic Science and Technology of China (UESTC) have complained that numerous courses in electronic engineering are heavily focused on theoretical knowledge that is disconnected from…
Descriptors: Interdisciplinary Approach, Student Projects, Active Learning, Electronics
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Oliveira, Leonam Cordeiro de; Guerino, Guilherme Corredato; Oliveira, Leander Cordeiro de; Pimentel, Andrey Ricardo – Informatics in Education, 2023
Industry 4.0 technologies are being applied in the teaching and learning process, called Education 4.0. However, there is no specification of what is being considered when developing technologies for education in the 4.0 context. Therefore, we performed a Systematic Mapping Study to investigate the information and communication technologies (ICTs)…
Descriptors: Computer Software, Teaching Methods, Learning Processes, Information Technology
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Almusaed, Amjad; Almssad, Asaad; Andersson, Nina; Brunzell, Lena – International Society for Technology, Education, and Science, 2022
New trends such as globalization, knowledge economy, and information technology revolution have become essential factors affecting the development of universities in the new era. These trends have had a profound impact on the survival and growth of universities. First, universities need to shoulder the knowledge creation work in many fields…
Descriptors: Learner Engagement, College Students, Educational Change, Curriculum Development
Miosotis Hernandez – ProQuest LLC, 2023
This retrospective quasi-experimental design research compared student achievement of students in two active learning environments. One is referred to as Student Centered Active Learning Environment with Upside-Down Pedagogies (SCALE-UP), and the other is referred to as traditional classroom environments. Student final course grades of physics…
Descriptors: Educational Environment, Physics, Research Universities, Urban Universities
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Mahajan, Rashima; Bansal, Dipali – Journal of Education, 2023
The identification and development of efficient assessment and evaluation procedures (Performance Metrics) is crucial for analyzing Student Outcome attainment in Engineering Programs. The present paradigm shift in the education system has diverted the focus from teacher-centric approach to learner-centric approach. It involves the active…
Descriptors: Engineering Education, Outcomes of Education, Student Centered Learning, Experiential Learning
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Ravikantha Prabhu; Sharun Mendonca; Pavana Kumara Bellairu; Noel Deepak Shiri – Innovations in Education and Teaching International, 2025
In response to evolving engineering education, there is a growing focus on fostering students' practical skills. This study implemented a Mini Project Based Learning (MPBL) approach within the Computer Integrated Manufacturing (CIM) course. The tasks involved SOLIDWORKS modelling, writing CNC code using CADEM seeNC Turn software, and hands-on CNC…
Descriptors: Engineering Education, Student Projects, Active Learning, Computer Uses in Education
Shields, Samantha Michele – ProQuest LLC, 2022
Engineering education has a long and well-researched history; however, recent declines in the number of undergraduate students entering and matriculating through to graduation has commanded the engineering education community's attention. To help counter the declining number of students entering and persisting in engineering, an engineering…
Descriptors: Engineering Education, Active Learning, Undergraduate Students, Academic Persistence
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Higuera-Martínez, Oscar Iván; Corazza, Giovanni Emanuele; Fernández-Samacá, Liliana – European Journal of Engineering Education, 2022
This article presents how Problem- and Project-Based Learning (PBL) in engineering education can exploit the theoretical framework of the Space-Time (ST)-Continuum, according to which educational contexts can be classified in terms of the tightness vs. looseness of the relevant conceptual space S and available time T. By crossing these two…
Descriptors: Problem Based Learning, Engineering Education, Teaching Methods, Intervention
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Boylan-Ashraf, Peggy C. – Journal of STEM Education: Innovations and Research, 2020
Introductory fundamental engineering mechanics (IFEM) courses, such as statics, mechanics of materials, dynamics, and fluids are based primarily on physics and mathematical concepts. In this paper, we suggest that new methodologies and active learning pedagogies, must be included in IFEM classrooms. This study focuses on a new paradigm in IFEM…
Descriptors: Introductory Courses, Engineering Education, Mechanics (Physics), Active Learning
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Case, Jennifer M. – European Journal of Engineering Education, 2019
Most of the contemporary critiques of university teaching are variants of a central argument that sets up a polarity between socalled 'traditional' teaching, often termed 'teacher-centred' and 'transmissive', and approaches that by contrast are considered 'student-centred', often also referred to with the phrase 'active learning'. This editorial…
Descriptors: Engineering Education, Teaching Methods, Conventional Instruction, Student Centered Learning
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Yang, Yisi; Zhang, Yan; Xiong, Xujie; Zhang, Wanju; Chen, Wen; Ge, Shiping – Journal of Chemical Education, 2021
Project-based learning (PJBL) is student-centered and teamwork educational activity that prepares students for the challenge of real-world problems. This kind of instructional method is highly recommended by the Accreditation Board for Engineering and Technology (ABET).This paper describes an authentic project that focuses on the preparation of…
Descriptors: Student Projects, Active Learning, Science Instruction, Learning Activities
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Andrei, Mihaela; Pricopie-Filip, Alina; Filimon, Veronica – International Society for Technology, Education, and Science, 2022
The didactic strategy is given by the set of methods and techniques by which the cooperation between the teacher and students, between students and teacher, between students and students is achieved to obtain the anticipated results. For a positive result of the didactic approach, there must be a good didactic strategy capable of leading to the…
Descriptors: Teaching Methods, Learning Processes, Teacher Student Relationship, Educational Objectives
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Bozzi, Matteo; Raffaghelli, Juliana E.; Zani, Maurizio – Education Sciences, 2021
Over the last decade, policy makers have urged universities to innovate their teaching methodologies. Although educational research has shown that active methods lead to improvements in learners' performance more than traditional lectures in small classes, some factors impede active methods from spreading in large size classes. In this paper we…
Descriptors: Foreign Countries, College Students, Engineering Education, Science Instruction
Hamid Mohammed Nadir – ProQuest LLC, 2021
There is an increased interest in integrating engineering design into K-12 classrooms because it equips students to solve real-world problems. However, before students are introduced to real-world problems, K-12 teachers may need to develop inquiry pedagogies and establish a learning context that supports student problem-solving. This study…
Descriptors: Elementary Secondary Education, Elementary School Teachers, Secondary School Teachers, Scaffolding (Teaching Technique)
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