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Al-Sobhi, Saad; Al-Muhtaseb, Shaheen; Elfaki, Hesan – Advances in Engineering Education, 2021
Proper chemical process simulation knowledge is valuable for senior chemical engineering students to deliver optimal design outcomes and achieve many learning objectives. This study aims to highlight the benefits of continuous improvements and innovations in chemical engineering's undergraduate curriculum. In particular, curriculum restructuring…
Descriptors: Chemical Engineering, Undergraduate Study, Curriculum Development, Computer Software
Kim, Dayoung; Jesiek, Brent K.; Zoltowski, Carla B.; Loui, Michael C.; Brightman, Andrew O. – Advances in Engineering Education, 2020
In light of both social and ABET expectations, engineering educators need to consider how to effectively infuse engineering ethics education into current engineering curricula. This article describes our initial efforts in that realm. We considered how to improve ethics education in engineering through establishing an academic-industry…
Descriptors: School Business Relationship, Partnerships in Education, Engineering Education, Technical Occupations
Tang, Xiaofeng; Catchmark, Jeffrey M.; Mendieta, Eduardo; Litzinger, Thomas A. – Advances in Engineering Education, 2020
To meet complex ethical challenges in the engineering profession, students need ethics learning experiences that are integrated systematically across the engineering curriculum. Sustaining systematic changes in the engineering curriculum also calls for processes that respect and engage the engineering faculty. This paper reports the work to date…
Descriptors: Ethics, Biology, Engineering Education, Learning Experience
Reeping, David; McNair, Lisa – Advances in Engineering Education, 2020
The Department of Electrical and Computer Engineering (ECE) at Virginia Tech is in the fourth year of a large-scale change project called "Revolutionizing Engineering Departments" (NSF RED) (Lord et al., 2018). Our project has three interrelated goals: (1) broaden the range of students entering the department, (2) expand the boundaries…
Descriptors: Systems Approach, Engineering Education, College Faculty, Teacher Attitudes
Hailes, Stephen; Jones, Liz; Micheletti, Martina; Mitchell, John E.; Nyamapfene, Abel; Roach, Kate; Tilley, Emanuela; Truscott, Fiona – Advances in Engineering Education, 2021
In 2014, the UCL Faculty of Engineering Sciences introduced the Integrated Engineering Programme -- a revision of eight existing degree programmes across a range of engineering disciplines. Centred on a thread of authentic project-based activities, the programme aimed to enhance the students' understanding of key theoretical concepts and heighten…
Descriptors: Engineering Education, Authentic Learning, Student Projects, Active Learning
Sul, Jung-Hoon; Peng, Zhongxiao; Kessissoglou, Nicole – Advances in Engineering Education, 2020
Engineering mechanics is a core course for mechanical engineering university students. In recent years, the lecturers of a second-year undergraduate engineering mechanics course faced many new challenges arising from ever-increasing class sizes, as well as evolving learning styles and expectations of new generation students due to advances in…
Descriptors: Blended Learning, Educational Change, Large Group Instruction, Engineering Education
Coblentz, Dori; Realff, Mary Lynn; Alemdar, Meltem – Advances in Engineering Education, 2021
The Effective Team Dynamics (ETD) Initiative at Georgia Tech developed curriculum to improve function of student teams. ETD uses the language of CliftonStrengths® to help students identify the areas in which they are the strongest and to apply those strengths to interpersonal contexts. ETD has developed curriculum for five "Touchpoints,"…
Descriptors: Teamwork, Engineering Education, Teaching Methods, Minority Group Students
Streiner, Scott Charles; Bodnar, Cheryl Anne – Advances in Engineering Education, 2019
Implementation of educational innovations on a local scale requires consideration of a variety of different factors including stakeholders, curriculum design, classroom context, and culture. Although theories exist for dimensions of scale and diffusion of educational innovations across multiple institutions, they do not focus on the elements…
Descriptors: Curriculum Development, Educational Games, Homework, College Freshmen
Nazzal, Dima; Zabinski, Joseph; Hugar, Alexander; Reinhart, Debra; Karwowski, Waldemar; Madani, Kaveh – Advances in Engineering Education, 2015
Sustainability in operations, production, and consumption continues to gain relevance for engineers. This trend will accelerate as demand for goods and services grows, straining resources and requiring ingenuity to replace boundless supply in meeting the needs of a more crowded, more prosperous world. Industrial engineers are uniquely positioned…
Descriptors: Industrial Education, Engineering Education, Surveys, Sustainability
Toto, Roxanne; Colledge, Thomas; Frederick, David; Pung, Wik Hung – Advances in Engineering Education, 2014
Reflective of current trends in industry, engineering design professionals are expected to have knowledge of 3D modeling software. Responding to this need, engineering curricula seek to effectively prepare students for the workforce by requiring instruction in the use of 3D parametric solid modeling. Recent literature contains many examples that…
Descriptors: Engineering, Engineering Education, Computer Software, College Curriculum
Kellam, Nadia; Walther, Joachim; Costantino, Tracie; Cramond, Bonnie – Advances in Engineering Education, 2013
Traditional curricular approaches within engineering education tend to be fragmented, with opportunities for content- and meta-level synthesis being mostly limited to freshman and senior year design courses. In this paper, we are proposing a curricular model, the Synthesis and Design Studio, to combat the tendency towards fragmented curricula. The…
Descriptors: Engineering, Engineering Education, College Curriculum, Curriculum Development
Delale, Feridun; Liaw, Benjamin M.; Jiji, Latif M.; Voiculescu, Ioana; Yu, Honghui – Advances in Engineering Education, 2011
From October 2003 to April 2008 a systemic reform of the Mechanical Engineering program at The City College of New York was undertaken with the goal of incorporating emerging technologies (such as nanotechnology, biotechnology, Micro-Electro-Mechanical Systems (MEMS), intelligent systems) and new teaching methodologies (such as project based…
Descriptors: Engineering, Engineering Education, Teaching Methods, College Curriculum
Karabulut-Ilgu, Aliye; Jahren, Charles – Advances in Engineering Education, 2016
Engineering educators call for a widespread implementation of hybrid learning to respond to rapidly changing demands of the 21st century. In response to this call, a junior-level course in the Construction Engineering program entitled Construction Equipment and Heavy Construction Methods was converted into a hybrid learning model. The overarching…
Descriptors: Program Evaluation, Blended Learning, Construction Industry, Engineering Education
Cheville, Alan; Bunting, Chuck – Advances in Engineering Education, 2011
Through support of the National Science Foundation's Department Level Reform program, "Engineering Students for the 21st Century" (ES21C) has implemented a ten-course sequence designed to help students develop into engineers. Spread across the Electrical and Computer Engineering (ECE) curriculum at Oklahoma State University, these…
Descriptors: Engineering, Engineering Education, Learner Engagement, Student Development
Cogger, Steven D.; Miley, Daniel H. – Advances in Engineering Education, 2012
This paper proposes that project-based active learning is a key part of engineering education at the middle school level. One project from a comprehensive middle school engineering curriculum developed by the authors is described to show how active learning and state frameworks can coexist. The theoretical basis for learning and assessment in a…
Descriptors: Engineering Education, Middle School Students, Energy, Teaching Methods
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