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Wolff, Karin; Winberg, Chris – Teaching in Higher Education, 2022
The increasingly complex socio-technical and economic challenges of our time place considerable pressure on engineering programmes. To ensure that graduates are well-prepared to address these challenges requires curriculum developers to select the appropriate knowledge for the engineering programme. A number of key theorists, notably from the…
Descriptors: Curriculum Development, Engineering Education, Knowledge Level, Higher Education
Ottemo, Andreas; Berge, Maria; Silfver, Eva – Science Education, 2020
A diverse body of feminist scholarship has addressed the masculine orientation of Western engineering education for at least four decades. Among critiques specifically targeting curriculum, a recurrent line of argumentation highlights its reductionist framing and narrow focus on mathematics and technology. The argument is that these traits…
Descriptors: Cultural Influences, Gender Bias, Engineering Education, Undergraduate Study
Santos, Gilberto; Mandado, Enrique; Silva, Rui; Doiro, Manuel – European Journal of Engineering Education, 2019
The different technology fields have increased in complexity, especially during the last two decades, giving place to the concept of Complex Technology. An example is Electronics also characterised as a horizontal technology being incorporated in many products and processes of other technological areas. Bloom's taxonomy of learning objectives and…
Descriptors: Engineering Education, Computer Assisted Instruction, Taxonomy, Educational Objectives
Lowe, David; Goldfinch, Tom; Kadi, Anthony; Willey, Keith; Wilkinson, Tim – European Journal of Engineering Education, 2022
The professional formation of new graduates and their ability to perform well at the start of their career depends on the development of both technical skills and professional competencies. Whilst the latter aspects have become increasingly considered within engineering programs, they are often learnt within an academic context rather than a…
Descriptors: Engineering Education, College Graduates, Competency Based Education, Skill Development
Kim, Yeon; Ahn, Changsun – IEEE Transactions on Education, 2018
Contribution: This paper illustrates how to design and implement curricula in terms of the combined use of flipped learning and inquiry-based learning in an engineering course. Background: Elementary courses in engineering schools are conventional and foundational, and involve a considerable amount of knowledge. Throughout such courses, students…
Descriptors: Blended Learning, Educational Technology, Technology Uses in Education, Homework
Muller, Johan – Higher Education: The International Journal of Higher Education Research, 2015
This paper begins from the assumption that "knowledge specialisation and differentiation" will continue to increase, and that these features of contemporary STEM knowledge will increasingly pose questions which science and engineering education must address. Two typical responses are outlined. The first response, the default position,…
Descriptors: Higher Education, Knowledge Level, STEM Education, Specialization
Caspersen, Joakim; Smeby, Jens-Christian – Quality in Higher Education, 2018
Although grades are still considered important signifiers of graduates' quality, greater attention has been paid to other measures of learning outcomes in higher education. This shift in attention is attributed to an increased focus on study quality, employability, quality development and accountability. This article examines how grades relate to…
Descriptors: Foreign Countries, College Students, Outcome Measures, Higher Education
Marra, Rose M.; Jonassen, David H.; Palmer, Betsy; Luft, Steve – Journal on Excellence in College Teaching, 2014
Problem-based learning (PBL) is an instructional method where student learning occurs in the context of solving an authentic problem. PBL was initially developed out of an instructional need to help medical school students learn their basic sciences knowledge in a way that would be more lasting while helping to develop clinical skills…
Descriptors: Problem Based Learning, Teaching Methods, Problem Solving, Constructivism (Learning)
Blum, Nicole; Bourn, Douglas – Compare: A Journal of Comparative and International Education, 2013
The discourses around globalisation and internationalisation within higher education to date have tended to focus on institutional change. While recognising the importance of these debates, this paper suggests that issues around curriculum change and teaching and learning through global professions such as health and engineering have so far been…
Descriptors: Foreign Countries, Higher Education, International Education, Health Education
Shyr, Wen-Jye – European Journal of Engineering Education, 2010
This study develops a Multiprog virtual laboratory for a mechatronics education designed to teach how to programme a programmable logic controller (PLC). The study was carried out with 34 students in the Department of Industry Education and Technology at National Changhua University of Education in Taiwan. In total, 17 students were assigned to…
Descriptors: Laboratories, Programming, Foreign Countries, Higher Education
Langdon, G. S.; Balchin, K.; Mufamadi, P. – European Journal of Engineering Education, 2010
This paper examines the development of risk awareness among undergraduate students studying mechanical engineering at a South African university. A questionnaire developed at the University of Liverpool was modified and used on students from the first, second and third year cohorts to assess their awareness in the areas of professional…
Descriptors: Undergraduate Students, Engineering Education, Mechanics (Physics), Risk
Wilson, Judith; Krakowsky, Arthur M.; Herget, Charles J. – IEEE Transactions on Education, 2010
Teaching Opportunities for Partners in Science (TOPS) is an outreach program using volunteers (the "partners") for: 1) assisting teachers in grades K-8 with preparation and delivery of science and engineering (S&E) lessons in the classroom; 2) providing content knowledge to teachers when needed to teach quality science and…
Descriptors: Engineering Education, Science Instruction, Retirement, Scientists
Hall, Cathy; Dickerson, Jeremy; Batts, David; Kauffmann, Paul; Bosse, Michael – Journal of Technology Education, 2011
The disciplines of science, technology, engineering, and mathematics (STEM) have experienced problems in producing adequate numbers of graduates to meet workforce needs in these fields. Although entrance into the STEM fields has grown, this growth is not keeping pace with the overall needs of the labor market. Better understanding of the important…
Descriptors: Careers, Majors (Students), Career Choice, Student Interests
Mielke, Monica; LaFleur, Jennifer; Sanzone, Joy – Policy Studies Associates, Inc., 2010
With the support of the Noyce Foundation, National 4-H Council has contracted with Policy Studies Associates (PSA) to evaluate the implementation of the 4-H Science, Engineering and Technology (SET) Initiative. The goals of this initiative are to increase the number and quality of science, engineering, and technology programs that 4-H offers…
Descriptors: Youth, Learner Engagement, Student Attitudes, Knowledge Level
Atman, Cynthia J.; Sheppard, Sheri D.; Turns, Jennifer; Adams, Robin S.; Fleming, Lorraine N.; Stevens, Reed; Streveler, Ruth A.; Smith, Karl A.; Miller, Ronald L.; Leifer, Larry J.; Yasuhara, Ken; Lund, Dennis – Center for the Advancement of Engineering Education (NJ1), 2010
Today's engineering graduates will solve tomorrow's problems in a world that is advancing faster and facing more critical challenges than ever before. This situation creates significant demand for engineering education to evolve in order to effectively prepare a diverse community of engineers for these challenges. Such concerns have led to the…
Descriptors: Engineering Education, Educational Research, Student Experience, Undergraduate Students
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