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Christopher Greer; Devon Eichfeld; Sara Sattarzadeh; Siu Ling Leung – Advances in Engineering Education, 2024
When engineering students are unable to evaluate the validity of their solutions, they are unprepared to solve complex, real-world engineering problems that require decomposition or knowledge transfer. A proper framework is key to successful implementation and can encourage more institutions to adopt problem-solving engineering labs. This paper…
Descriptors: Problem Solving, Engineering Education, Learning Laboratories, Scientific Concepts
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
Ogilvie, Andrea M.; Knight, David B. – Advances in Engineering Education, 2019
To make the transfer student pathway viable to meet workforce needs, it is essential to think beyond simply linking two institutions and getting students in the door--students need to be supported throughout the adjustment period. In this article, we address the "support" aspect of the problem by reporting findings from 306 engineering…
Descriptors: College Transfer Students, Engineering Education, Hispanic American Students, Student Adjustment
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
Okudan Kremer, Gül E.; Simpson, Timothy W.; Ashour, Omar M. – Advances in Engineering Education, 2013
In this paper, we present our efforts in embedding product archeology inspired curricula into two engineering courses along with assessment results. The assessment focuses on the effectiveness of the embedded curricula in enhancing students' understanding on the global, societal, environmental, and economic (GSEE) implications of engineering…
Descriptors: Engineering Education, College Curriculum, Archaeology, Undergraduate Students
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
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
Moore-Russo, Deborah; Cormier, Phillip; Lewis, Kemper; Devendorf, Erich – Advances in Engineering Education, 2013
Historically, the teaching of design theory in an engineering curriculum has been relegated to a senior capstone design experience. Presently, however, engineering design concepts and courses can be found through the entirety of most engineering programs. Educators have recognized that engineering design provides a foundational platform that can…
Descriptors: Engineering Education, Integrated Curriculum, College Curriculum, Archaeology
Hayden, Nancy J.; Rizzo, Donna M.; Dewoolkar, Mandar M.; Neumann, Maureen D.; Lathem, Sandra; Sadek, Adel – Advances in Engineering Education, 2011
This paper presents a brief overview of the changes made during our department level reform (DLR) process (Grant Title: "A Systems Approach for Civil and Environmental Engineering Education: Integrating Systems Thinking, Inquiry-Based Learning and Catamount Community Service-Learning Projects") and some of the effects of these changes on…
Descriptors: Systems Approach, Engineering Education, Civil Engineering, Environmental Education
Vanasupa, Linda – Advances in Engineering Education, 2011
This paper represents a narrative of the process of department-level reform through the eyes of the initiating agent of change. Over the course of reform, our program has grown by 40%, primarily through retaining students. We exhibit a 10% net important rate of engineering students in the first two years of the curriculum relative to the college's…
Descriptors: Educational Change, Departments, Change Agents, Engineering Education
Yeary, Mark; Yu, Tian-You; Palmer, Robert; Biggerstaff, Michael; Fink, L. Dee; Ahem, Carolyn; Tarp, Keli Pirtle – Advances in Engineering Education, 2007
This paper describes the details of a National Science Foundation multi-year educational project at the University of Oklahoma (OU). The goal of this comprehensive active-learning and hands-on laboratory program is to develop an interdisciplinary program, in which engineering, geoscience, and meteorology students participate, which forms a…
Descriptors: Experiential Learning, Interdisciplinary Approach, Active Learning, Laboratories