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Showing 1 to 15 of 17 results Save | Export
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Gerald Tembrevilla; André Phillion; Melec Zeadin – Journal of Engineering Education, 2024
Background: The evolving transformations of our society at large, academic institutions, and engineering discipline in the 21st century have profound implications for the nature of experiential learning being offered in engineering education. However, what is experiential learning in the context of engineering education? Purpose: The introduction…
Descriptors: Engineering Education, Undergraduate Study, College Curriculum, Experiential Learning
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Carney, Debra; Sanders, Megan; Spiegel, Samuel; Swanson, Rebecca; Vasquez, Ariana – PRIMUS, 2021
This article describes a partially flipped course design for Calculus II which has been implemented by a varied instructional team at a medium-sized public engineering university (Colorado School of Mines (Mines)) over a period of three years. We have identified three main factors which have contributed to the success of the implementation: (1)…
Descriptors: Universities, Engineering Education, College Students, Flipped Classroom
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Delen, Ibrahim; Yuksel, Tugba – Journal of Pre-College Engineering Education Research, 2022
In the past hundred years, there have been a number of pandemics that have affected the entire world, including the 1918 H1N1 influenza pandemic, the 1957 H2N2 influenza pandemic, and the 2009 H1N1 influenza pandemic. While responses to the most recent H1N1 influenza pandemic remained local, the COVID-19 pandemic, on the other hand, resulted in…
Descriptors: Educational Change, Literature Reviews, Elementary Secondary Education, Engineering Education
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Ulseth, Ron; Johnson, Bart; Kennedy, Christine – Advances in Engineering Education, 2021
In this paper, we address the achievements to date and the learnings from the development and ten-year implementation of the Iron Range Engineering (IRE) program while articulating its future directions. IRE uses research-based instructional strategies to implement a project-based learning (PBL) curriculum where authentic design sits at the heart…
Descriptors: Engineering Education, Curriculum Implementation, Student Projects, Active Learning
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Du, Xiangyun; Naji, Khalid Kamal; Ebead, Usama; Ma, Jianping – European Journal of Engineering Education, 2021
This qualitative longitudinal study explored three engineering instructors' professional agency in implementing project-based learning (PBL), including multiple sets of data (18 interviews, observations, and written reflections spanning three semesters). The results show that the instructors' care for students, interest in pedagogical innovation,…
Descriptors: Engineering Education, College Faculty, Professional Identity, Faculty Development
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Balgopal, Meena M. – Science Education, 2020
Most science curricular reform efforts are designed by administrators or science education experts. It is less common for teachers to work collaboratively across disciplines to create, implement, and disseminate an integrated STEM curriculum developed for noncollege-bound students that ended up being popular across student populations at the…
Descriptors: STEM Education, Teacher Empowerment, Case Studies, Educational Change
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Qu, Zejing; Huang, Wen; Zhou, Zhengjun – International Journal of Sustainability in Higher Education, 2020
Purpose: The purpose of this study is to evaluate the effectiveness of applying sustainability to the engineering curriculum at a university in China. Design/methodology/approach: A new curriculum, "ethics, involvement and sustainability," was designed and presented to engineering students from an undergraduate major in quality…
Descriptors: Sustainability, Engineering Education, Instructional Effectiveness, Teaching Methods
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Williams, Tory; Krikorian, Jacqueline; Singer, Jonathan; Rakes, Christopher; Ross, Julia – International Journal of Research in Education and Science, 2019
The Next Generation Science Standards call for the integration of engineering into mainstream science education, yet challenges arise for teachers unfamiliar with engineering-based pedagogy or concepts. The INSPIRES Hemodialysis educative curriculum may address such challenges by explicitly integrating all areas of STEM in an authentic learning…
Descriptors: Educational Quality, Engineering Education, Faculty Development, Teaching Methods
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Arne, Gjengedal; Tor, Schive – Universal Journal of Educational Research, 2016
In 2011 a new national curriculum for the education of engineers was established in Norway. The objective of the curriculum is to ascertain that engineering education is professionally oriented, integrated, research-based and has a high academic standard. Institutions are instructed to facilitate a holistic approach to the engineering profession,…
Descriptors: Introductory Courses, Engineering Education, National Curriculum, Educational Change
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Evenhouse, David; Patel, Nimit; Gerschutz, Maria; Stites, Nick A.; Rhoads, Jeffrey F.; Berger, Edward; DeBoer, Jennifer – European Journal of Engineering Education, 2018
Engineering education has been slow to adopt research-based educational innovations. Few prior works on such adoption have investigated the combined classroom experiences of instructors and students when such innovations are being implemented. Therefore, this work focuses on the lived experiences of an instructor and her students when adopting an…
Descriptors: Educational Change, Undergraduate Students, Engineering Education, College Faculty
Harris, Milton G. – Online Submission, 2018
Science education in the US entered a period of reform in 2011 with the development and implementation of the Next Generation Science Standards (NGSS). The NGSS have subsequently been adopted in 18 states. School districts within these states are in the process of adjusting science curricula to align with the academic expectations described by the…
Descriptors: Middle School Teachers, Science Education, Teacher Attitudes, Inquiry
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Ralston, Patricia A. S.; Tretter, Thomas R.; Kendall-Brown, Marie – Journal of the Scholarship of Teaching and Learning, 2017
Active and collaborative teaching methods increase student learning, and it is broadly accepted that almost any active or collaborative approach will improve learning outcomes as compared to lecture. Yet, large numbers of faculty have not embraced these methods. Thus, the challenge to encourage evidence-based change in teaching is not only how to…
Descriptors: Engineering Education, Curriculum Implementation, Cooperative Learning, Teaching Methods
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Santhiyakumari, N.; Babu, C.; Gomathi, C.; Rajesh, K.; Shenbagapriya, M. – Journal of Educational Technology, 2014
This paper presents a new method to improve the quality in technical education in order to meet the industry expectations. The quality of education and training being imparted in the technical education institutions varies from excellent to poor, with some institutions comparing favourably with the best in the world. Few others are suffering from…
Descriptors: Educational Quality, Technical Education, Industry, Expectation
Kerr, Janel M. – ProQuest LLC, 2013
The purpose of this study was to explore the role of mental models in Idaho's Engineering and Technology Education teachers' in decision making when faced with major curriculum changes. Senge (1990) defined mental models as, "deeply ingrained assumptions, generalizations, or even pictures or images that influence how we understand the world…
Descriptors: STEM Education, Program Implementation, Curriculum Implementation, Engineering Education
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Chandler, John; Fontenot, A. Dean; Tate, Derrick – Journal of Pre-College Engineering Education Research, 2011
This article identifies a number of issues associated with current STEM education reform efforts, especially with regard to efforts to integrate engineering education into the K-12 curriculum. Precollege engineering is especially problematic in STEM reform since there is no well-established tradition of engineering in the K-12 curriculum. This…
Descriptors: Engineering Education, Elementary Secondary Education, Educational Policy, Problems
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