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Hussain, Shahid; Jamwal, Prashant K.; Munir, Muhammad T.; Zuyeva, Aigerim – International Journal of Educational Technology in Higher Education, 2020
Students have different learning approaches and acquire knowledge in different ways owing to their varied perceptions and grasping abilities. Treating students equally, following the traditional teacher-cantered approach, may not be effective and calls for innovations in knowledge dissemination. This article takes a student-centric approach to…
Descriptors: Teaching Methods, Flipped Classroom, Constructivism (Learning), Engineering Education
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Dahl, Bettina – European Journal of Engineering Education, 2018
Problem and Project-Based Learning (PBL) emphasise collaborate work on problems relevant to society and emphases the relation between theory and practice. PBL fits engineering students as preparation for their future professions but what about mathematics? Mathematics is not just applied mathematics, but it is also a body of abstract knowledge…
Descriptors: Problem Based Learning, Problem Solving, Teaching Methods, Mathematics Instruction
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Azodo, Adinife Patrick; Ismaila, Salami Olasunkanmi; Adejuyigbe, Samuel Babatunde – Comparative Professional Pedagogy, 2018
Occupational training is a crucial feature in enhancing workforce efficiency and the expertise involved in any profession. This is carried out through a variety of ways such as institutional training, basic instructions, excursions, industrial training, laboratory lessons, workshop operations, field studies, intensive problem-solving based…
Descriptors: Engineering Education, Problem Solving, Work Experience, Workshops
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Clark, Renee M.; Mahboobin, Arash – IEEE Transactions on Education, 2018
Background: Engineering programs must equip students to solve open-ended workplace problems. However, the literature points to actual or potential difficulties faced by students in solving open-ended or complex problems. During Fall 2014, the authors' students experienced difficulties in solving open-ended bio-signals laboratory problems of…
Descriptors: Scaffolding (Teaching Technique), Problem Solving, Case Studies, Biotechnology
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Wenwen, Xiao; Yunfei, Gu – English Language Teaching, 2018
The CDIO teaching mode is one kind of the engineering education concept, and now it is gradually adopted in English language teaching. Integrated English is one of the basic courses for English major students, and adopting the CDIO teaching mode in this course can improve different abilities of English major students, such as the professional…
Descriptors: English (Second Language), Second Language Learning, Second Language Instruction, Critical Thinking
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Schnittka, Christine; Richards, Larry – Science Teacher, 2016
Solar energy is clean, free, and abundant worldwide. The challenge, however, is to convert it to useful forms that can reduce our reliance on fossil fuels. This article presents an activity for physical science classes in which students learn firsthand how solar energy can be used to produce electricity specifically for transportation. The…
Descriptors: Energy, Fuels, Science Instruction, Teaching Methods
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Berge, Maria – Research in Science Education, 2017
We all know that they do it, but what do students laugh "about" when learning science together? Although research has shown that students do use humor when they learn science, the role of humor in science education has received little attention. In this study, undergraduate students' laughter during collaborative work in physics has been…
Descriptors: Undergraduate Students, Physics, Humor, Science Instruction
Barry, Katie L. – ProQuest LLC, 2017
Engineering is a relevant tool to solve current challenges in a variety of fields. There is a demand for engineers in the workforce and a method to solve that demand is to introduce students to engineering prior to college coursework. One of the ways that students can engage with engineering earlier is through engineering design projects. This…
Descriptors: High School Freshmen, Engineering, Design, Student Projects
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Espinosa, Tobias; Miller, Kelly; Araujo, Ives; Mazur, Eric – Physical Review Physics Education Research, 2019
Self-efficacy represents an individual's belief that he or she can perform a particular task in a given domain. It is a strong predictor for performance and persistence in STEM education. Research shows that there is a large and persistent gender gap in student self-efficacy in STEM academic disciplines. In some cases, active teaching strategies…
Descriptors: Physics, Science Instruction, Self Efficacy, STEM Education
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Senra, Michael; Fogler, H. Scott – Chemical Engineering Education, 2014
In their collegiate studies, students are given a wide range of concepts, theories, and equations to assist them in their future endeavors. However, students have not been sufficiently exposed to practical critical thinking methodologies that will benefit them as they encounter open-ended problems. A course developed at the University of Michigan…
Descriptors: Science Instruction, College Science, Creative Thinking, Chemical Engineering
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Siyepu, Sibawu Witness – International Journal of STEM Education, 2015
Background: This article reports on an analysis of errors that were displayed by students who studied mathematics in Chemical Engineering in derivatives of mostly trigonometric functions. The poor performance of these students triggered this study. The researcher (lecturer) works in a mathematics support programme to enhance students'…
Descriptors: Mathematics Instruction, Error Patterns, Qualitative Research, Case Studies
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Malm, Joakim; Bryngfors, Leif; Mörner, Lise-Lotte – European Journal of Engineering Education, 2015
Supplemental Instruction (SI) is a programme that is attached to difficult courses with the objective of increasing student performance and retention. However, an SI programme also has the potential to increase overall student performance and retention during the first critical year if applied to introductory courses. In this study the latter…
Descriptors: Foreign Countries, Engineering, Engineering Education, Supplementary Education
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Meyer, Jan H. F.; Knight, David B.; Callaghan, David P.; Baldock, Tom E. – European Journal of Engineering Education, 2015
Threshold concepts are transformative, integrative, and provocative; understanding these difficult concepts allows students to be capable of solving advanced problems. This investigation and evaluation of a metacognitive curricular approach explore variation in students' and teachers' discernment of structural complexity of concepts and its…
Descriptors: Course Descriptions, Civil Engineering, Engineering Education, Statistical Analysis
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Lawanto, Oenardi; Minichiello, Angela; Uziak, Jacek; Febrian, Andreas – International Education Studies, 2018
Understanding problems or tasks is a critical step in any problem-solving activity and the heart of self-regulated learning. When encountering a problem, students draw upon information available in the environment, along with knowledge, concepts, and perceptions derived from prior learning experiences, to interpret the demands of the task.…
Descriptors: Engineering Education, Problem Solving, Thermodynamics, Task Analysis
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Dailey, Debbie – Gifted Child Today, 2017
With the release of the Next Generation Science Standards and the adoption of the standards by many states, teachers are encouraged to use the engineering design process (EDP) as an instructional approach to teaching science. However, teachers have limited time to teach science and will often neglect science in favor of mathematics and literacy…
Descriptors: Elementary School Students, Engineering Technology, Gifted, Talent
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