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Fan, Szu-Chun; Yu, Kuang-Chao; Lin, Kuen-Yi – International Journal of Science and Mathematics Education, 2021
Integrated science, technology, engineering, and mathematics (STEM) curricula have taken center stage in the recent education reforms. However, the challenge in teaching STEM curricula lies in finding ways to develop students' content knowledge and plan suitable learning activities and instructional strategies. This paper is focused on the…
Descriptors: Curriculum Implementation, Engineering Education, STEM Education, Integrated Curriculum
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
Chen, Ke; Lu, Weisheng; Wang, Jing – Industry and Higher Education, 2020
Over the past decade, the global construction industry has shown a clear and urgent need for its professionals to command building information modeling (BIM) knowledge. Many educational institutions have thus incorporated BIM into their construction engineering and management-related programs. However, BIM education faces several challenges, such…
Descriptors: Foreign Countries, Universities, School Business Relationship, Construction Industry
Harris, Daniel M.; Schlueter-Kuck, Kristy; Austin, Elizabeth; Cohen, Kristina L. – Journal of STEM Education: Innovations and Research, 2021
Course-based undergraduate research experiences (CUREs) have been implemented and studied throughout the sciences, with well-documented benefits now clear for both students and faculty. Despite their increasingly widespread application, there remain very few documented implementations within engineering curricula. In the present work, we describe…
Descriptors: Undergraduate Students, Student Research, Scientific Research, Engineering Education
Ozkan, Desen S.; McNair, Lisa D.; Bairaktarova, Diana – IEEE Transactions on Education, 2019
Contribution: This paper analyzes reflective thinking within organizational structures in higher education and draws parallels between the challenges faced by educators developing interdisciplinary courses and their students working in ill-structured projects. Background: Interdisciplinarity as a learning goal is prevalent across engineering…
Descriptors: Administrative Organization, Interdisciplinary Approach, Reflection, Campuses
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
Tan, Songxin; Shen, Zixing – IEEE Transactions on Education, 2018
Contribution: This paper reports a curriculum development in hybrid problem-based learning (h-PBL), addresses the design, implementation, effectiveness, and assessment issues of h-PBL, and explains the mixed results observed regarding the impact of problem-based learning (PBL) on student grades from a hybrid perspective. Background: The effect of…
Descriptors: Problem Based Learning, Blended Learning, Case Studies, Curriculum Development
Wallace, Maria F. G.; Webb, Angela W. – Journal of College Science Teaching, 2016
In the engineering field, problem- and project-based learning, both of which are often referred to as PBL, are the dominant instructional models called for by accreditation agencies. The aim of this qualitative case study is to analyze and capture a holistic perspective of PBL course design and its implementation in two communication-intensive…
Descriptors: Undergraduate Study, STEM Education, Active Learning, Student Projects
Vanfretti, Luigi; Farrokhabadi, Mostafa – European Journal of Engineering Education, 2015
This article presents the implementation of the constructive alignment theory (CAT) in a power system analysis course through a consensus-based course design process. The consensus-based design process involves both the instructor and graduate-level students and it aims to develop the CAT framework in a holistic manner with the goal of including…
Descriptors: Alignment (Education), Engineering Education, Power Technology, Systems Analysis
Pyburn, Daniel T.; Pazicni, Samuel; Benassi, Victor A.; Tappin, Elizabeth M. – Journal of Chemical Education, 2014
Past work has demonstrated that language comprehension ability correlates with general chemistry course performance with medium effect sizes. We demonstrate here that language comprehension's strong cognitive grounding can be used to inform effective and equitable pedagogies, namely, instructional interventions that differentially aid low-skilled…
Descriptors: Chemistry, Intervention, Limited English Speaking, Instructional Design
Zhan, Wei; Porter, Jay R.; Morgan, Joseph A. – IEEE Transactions on Education, 2014
This paper discusses the design and implementation of laboratories and course projects using LabVIEW in an instrumentation course. The pedagogical challenge is to enhance students' learning of digital communication using LabVIEW. LabVIEW was extensively used in the laboratory sessions, which better prepared students for the course projects. Two…
Descriptors: Experiential Learning, Virtual Classrooms, Courseware, Database Management Systems
Davis, Richard A.; Klein, James A. – Chemical Engineering Education, 2012
This paper presents our pedagogy for chemical process safety (CPS) education across the curriculum. Building on a unifying theme of "Conservation of Life" (COL), we have four goals: 1) Make students aware of CPS/COL principles, 2) Promote a culture of safety, 3) Assess student learning, 4) Require minimal resources. We discuss our experience and…
Descriptors: Safety, Chemical Engineering, Curriculum Development, Curriculum Implementation
Alorda, B.; Suenaga, K.; Pons, P. – Computers & Education, 2011
This paper reports on the design, implementation and assessment of a new approach course structure based on the combination of three cooperative methodologies. The main goal is to reduce the percentage of non-passed students focusing the learning process on students by offering different alternatives and motivational activities based on working in…
Descriptors: Student Projects, Learning Strategies, Foreign Countries, Robotics
Henry, Holly R.; Tawfik, Andrew A.; Jonassen, David H.; Winholtz, Robert A.; Khanna, Sanjeev – Interdisciplinary Journal of Problem-based Learning, 2012
This qualitative case study examines the initial implementation of a problem-based version of an undergraduate course in materials science for the purpose of identifying areas of improvement to the curriculum prior to a planned second implementation. The course was designed around problems that students work in small teams to solve under the…
Descriptors: Undergraduate Students, Participant Satisfaction, Student Attitudes, Science Materials
Ringwood, J. V.; Monaghan, K.; Maloco, J. – European Journal of Engineering Education, 2005
This paper examines a particular methodology of teaching engineering design to undergraduate engineering students, which relies on Lego[R] Mindstorms[TM]. A number of important issues are addressed, including the timing of the design module within the programme, prior knowledge required and assessment components. The module, which has been running…
Descriptors: Engineering Education, Engineering, Design Crafts, Undergraduate Students