2010IEEE Technology and Society MagazineRequires access

Understanding Sustainability Through Reverse Engineering

Luisa Dempere

Open publisher page 9 citations

Abstract

Keeping engineering students' educations up to date with the demands and needs of the engineering industry is challenging, given the limitations on credit hours, topics, and time imposed upon undergraduate engineering curricula. Critical topics such as global warming, climate change, green practices and sustainable engineering solutions are central to recent changes to regulations and policies impacting the practice of engineering. Engineering education accreditation programs, such as the Accreditation Board for Engineering and Technology (ABET), are increasing emphasis educating students to “understand the impact of engineering solutions in a global, economic, environmental, and societal context” [1].

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What this paper is about

Keeping engineering students' educations up to date with the demands and needs of the engineering industry is challenging, given the limitations on credit hours, topics, and time imposed upon undergraduate engineering curricula. Critical topics such as global warming, climate change, green practices and sustainable engineering solutions are central to recent changes to regulations and policies impacting the practice of engineering. Engineering education accreditation programs, such as the Accreditation Board for Engineering and Technology (ABET), are increasing emphasis educating students to “understand the impact of engineering solutions in a global, economic, environmental, and societal context” [1].

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OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Keeping engineering students' educations up to date with the demands and needs of the engineering industry is challenging, given the limitations on credit hours, topics, and time imposed upon undergraduate engineering curricula. Critical topics such as global warming, climate change, green practices and sustainable engineering solutions are central to recent changes to regulations and policies impacting the practice of engineering. Engineering education accreditation programs, such as the Accreditation Board for Engineering and Technology (ABET), are increasing emphasis educating students to “understand the impact of engineering solutions in a global, economic, environmental, and societal context” [1].

Key concepts: Accreditation, Sustainability, Engineering education, Context (archaeology), Health systems engineering, Curriculum, Engineering management, Engineering ethics

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