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Janna van Grunsven; Taylor Stone; Lavinia Marin – European Journal of Engineering Education, 2024
It is crucial for engineers to anticipate the socio-ethical impacts of emerging technologies. Such acts of anticipation are thoroughly normative and should be cultivated in engineering ethics education. In this paper we ask: 'how do we anticipate the socio-ethical implications of emerging technologies responsibly?' And 'how can such responsible…
Descriptors: Engineering Education, Ethical Instruction, Interdisciplinary Approach, Educational Innovation
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Hanna Mattila; Signe Hald; Dylan Chau Huynh – Journal of Problem Based Learning in Higher Education, 2023
This paper examines a PBL project module "Sustainable Urban Transformation" in an Urban Design master's education. The module combines urban design and hydrology engineering. Within the module, students are supported by lectures and study circles on various dimensions of sustainability, especially vis-a-vis climate change. However, they…
Descriptors: Engineering Education, Urban Planning, Design, Problem Based Learning
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Hochmuth, Reinhard; Peters, Jana – International Journal of Research in Undergraduate Mathematics Education, 2021
The contribution aims at subject-specific analyses of student solutions of an exercise from an electrical engineering signal theory course. The basis for the analyses is provided by praxeological studies (in the sense of the Anthropological Theory of Didactics) and the identification of two institutional mathematical discourses, one related to…
Descriptors: Mathematics Education, Engineering Education, Mathematical Concepts, Problem Solving
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Mann, Llewellyn; Chang, Rosemary; Chandrasekaran, Siva; Coddington, Alicen; Daniel, Scott; Cook, Emily; Crossin, Enda; Cosson, Barbara; Turner, Jennifer; Mazzurco, Andrea; Dohaney, Jacqueline; O'Hanlon, Tim; Pickering, Janine; Walker, Suzanne; Maclean, Francesca; Smith, Timothy D. – European Journal of Engineering Education, 2021
Problem-based learning (PBL) has a history of producing strong educational results in engineering; however, global society is challenged by highly complex environmental, socio-political and technical problems summarised in the UN Sustainable Development Goals (SDGs). This obliges us to explore educational approaches that address complexity. Yet,…
Descriptors: Problem Based Learning, Engineering Education, Educational Innovation, Holistic Approach
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Guo, William – European Journal of Science and Mathematics Education, 2023
Transitional engineering students are those who are academically ineligible to enter a bachelor's engineering program but are enrolled in an associate engineering program with a university. Successful completion of such an associate engineering program allows the higher achievers to transfer to a full bachelor's engineering program. The associate…
Descriptors: Word Problems (Mathematics), Geometric Concepts, Problem Solving, Mathematics Instruction
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Cipparrone, Flavio A. M.; Consonni, Denise – IEEE Transactions on Education, 2022
Contribution: Two general rules for calculating, in the time domain, step discontinuities of voltages and currents in electric circuits, combining physical principles and basic mathematical treatment. The two general rules, resulting from a formal method of analysis, provide a straightforward way to update the states of a circuit, immediately…
Descriptors: Computation, Electronic Equipment, Time, Simulation
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English, Niall J. – Chemical Engineering Education, 2022
Molecular-, fluid- and field-dynamics simulation are becoming more mainstream tools for practicing process engineers; here, the academic community needs to pay close attention to "upskilling" demands from industry, where remote working/training emphasizes the need for sophisticated computational-engineering design tools with molecular…
Descriptors: Engineering Education, Skill Development, Computation, Design
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Shen Zhan; Ling Wang – Education Research and Perspectives, 2024
The rapid integration of artificial intelligence (AI) in higher education has been significantly propelled by developments in generative AI tools, which hold considerable promise for transforming teaching and assessment methodologies. This paper explores the distinctive opportunities and challenges associated with the incorporation of generative…
Descriptors: Artificial Intelligence, Technology Uses in Education, Evaluation Methods, Engineering Education
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Bertel, Lykke Brogaard; Askehave, Inger; Brohus, Henrik; Geil, Olav; Kolmos, Anette; Ovesen, Nis; Stoustrup, Jakob – Advances in Engineering Education, 2021
Since its establishment in 1974, Aalborg University has aimed to deliver cutting-edge research and innovative practices in engineering education. However, increasing complexity related to rapid developments in digitalization and emerging societal challenges offer new opportunities, requirements, and expectations across disciplines for educational…
Descriptors: Interdisciplinary Approach, Problem Based Learning, Student Projects, Active Learning
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Jacob Pleasants – Science & Education, 2024
As part of a growing emphasis on "STEM," engineering has gained prominence in precollege education. In response to that trend, an emerging area of educational research focuses on the "Nature of Engineering" (NOE), a collection of ideas about what engineering is, what engineers do, and how engineering is related to science and…
Descriptors: Social Environment, STEM Education, Engineering, Engineering Education
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Mehrabi Boshrabadi, Abbas; Hosseini, M. Reza – Assessment & Evaluation in Higher Education, 2021
This paper argues that development of students' evaluative judgement capability, which encapsulates a range of cognitive and social skills, should be considered as a primary objective of the collaborative problem-solving assessment practices in engineering. This is a response to call for preparing job-ready students. To meet the multiple demands…
Descriptors: Cooperative Learning, Problem Solving, Engineering Education, Test Construction
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Pessoa, M. V. Pereira – European Journal of Engineering Education, 2023
Real-world design settings can be complex, ill-structured, open and typically uncertain and/or ambiguous about their goals and solution paths. This study contributes to understanding how to work with these types of problems in a course project setting. The main objective of the study is to identify, propose and validate a set of practical…
Descriptors: Guidelines, Teaching Methods, Engineering Education, Active Learning
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Merrett, Craig G. – Advances in Engineering Education, 2023
Students should be exposed to open-ended, complex design challenges during their courses to better prepare the students for the design challenges that they will encounter during their careers. This preparation may be achieved by combining flipped classroom instruction, case based learning in an active classroom, and authentic assessments. Between…
Descriptors: Flipped Classroom, Classroom Techniques, Case Method (Teaching Technique), Introductory Courses
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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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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
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