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Boutilier, Justin J.; Chan, Timothy C. Y. – INFORMS Transactions on Education, 2023
Artificial intelligence (AI) and operations research (OR) have long been intertwined because of their synergistic relationship. Given the increasing popularity of AI and machine learning in particular, we face growing demand for educational offerings in this area from our students. This paper describes two courses that introduce machine learning…
Descriptors: Artificial Intelligence, Operations Research, Undergraduate Students, Engineering Education
Andrew K. Schulz; Cassie Shriver; Anika Patka; Caroline Greiner; Benjamin Seleb; Rebecca Watts Hull; Carol Subiño Sullivan; Julia M. Sonnenberg-Klein; Roxanne Moore – Advances in Engineering Education, 2025
To address global challenges such as climate change, we must prepare an engineering workforce of sustainability-minded engineers ready to tackle complex socio-technical problems with multiple stakeholders. Frameworks like the United Nations (UN) Sustainable Development Goals (SDGs) have begun to drive structural changes in engineering education,…
Descriptors: Interdisciplinary Approach, Sustainability, Engineering Education, Conservation (Environment)
Saxena, Nitin Kumar; Chauhan, Bhavesh Kumar; Gouri, Sonia; Kumar, Ashwani; Gupta, Anmol – IEEE Transactions on Education, 2023
Contribution: The proposed work carries out the training and testing of the available data through an artificial neural network and develops a model to allocate the subject for maximum outcome. The system also provides percentagewise correlation among all the possible subjects of best fit to allocate among the faculty members. Background: Data…
Descriptors: Knowledge Management, Artificial Intelligence, Higher Education, Information Technology
David A. Rubenstein – Biomedical Engineering Education, 2024
Biomedical engineering (BME) undergraduate curricula have begun to address gaps in diversity, especially in response to the newly proposed ABET diversity, equity, and inclusion (DEI) criteria. However, there is a significant lack of teaching resources, and pedagogical training available for those interested in including DEI into their course…
Descriptors: Biomedicine, Engineering Education, Undergraduate Study, Diversity
Wai Tong Chor; Kam Meng Goh; Li Li Lim; Kin Yun Lum; Tsung Heng Chiew – Education and Information Technologies, 2024
The programme outcomes are broad statements of knowledge, skills, and competencies that the students should be able to demonstrate upon graduation from a programme, while the Educational Taxonomy classifies learning objectives into different domains. The precise mapping of a course outcomes to the programme outcome and the educational taxonomy…
Descriptors: Artificial Intelligence, Engineering Education, Taxonomy, Educational Objectives
Sui, Jinxue; Yang, Li – International Journal of Distance Education Technologies, 2023
It is imperative to bridge the disparity between college students' practical capabilities and professional expectations. To help facilitate such a progression, an electronic engineering course oriented around the Creative Innovation Practice project has been designed with the objectives of student-centric instruction, integration of both…
Descriptors: Blended Learning, Engineering Education, Constructivism (Learning), Experiential Learning
Amanda Singer; Stacie Aguirre-Jaimes; Antonique White; Margot Vigeant; Michelle Jarvie-Eggart – IEEE Transactions on Education, 2024
Contribution: This article provides an examination of changes in first-year engineering students' perceptions of the role of an engineer after completing the Engineers Without Borders Challenge. Background: Essential pre- and post-comparisons missing in existing studies on the Challenge are provided, as well as comparison to other first-year…
Descriptors: College Freshmen, Student Attitudes, Engineering Education, Engineering
Al-Jarf, Reima – Online Submission, 2022
To help ESP college instructors improve the English curriculum taught at polytechnic institutes, colleges and universities, the current study proposes a model for designing English for Polytechnic Purposes (EPP) courses for undergraduate students majoring in mechanical engineering, chemistry, technology, economics, textile industry and other…
Descriptors: English for Special Purposes, Second Language Learning, Second Language Instruction, Outcomes of Education

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