2014•Cambridge University Press eBooksRequires access

Engineering Design Education

Cynthia J. Atman, Özgür Eriş, Janet T. McDonnell, Monica Cardella, Jim Borgford-Parnell

Open publisher page 73 citations

Abstract

Introduction Designing is a key component of professional practice in many fields of human endeavor (e.g., architecture, engineering, industrial design, art, and literature). For engineers, designing integrates engineering knowledge, skill, and vision in the pursuit of innovations to solve problems and enable modern life. With this understanding, engineering educators have, for several decades, been infusing their programs with design curricula and pedagogical experiences in order to enhance the design competencies of engineering graduates. Paralleling the development of these curricula and experiences, a growing body of research has been providing a scholarly basis for engineering design education. The goal of this chapter is to acquaint readers with engineering design education research and practice. To situate engineering design education in the larger context, we first present a brief history of research on design processes across several fields and then move to a more specific description of research on engineering design processes. We then focus on research that investigates effective ways to teach and assess the design process and review curricular structures and pedagogies that are commonly used in undergraduate engineering programs.

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Introduction Designing is a key component of professional practice in many fields of human endeavor (e.g., architecture, engineering, industrial design, art, and literature). For engineers, designing integrates engineering knowledge, skill, and vision in the pursuit of innovations to solve problems and enable modern life. With this understanding, engineering educators have, for several decades, been infusing their programs with design curricula and pedagogical experiences in order to enhance the design competencies of engineering graduates. Paralleling the development of these curricula and experiences, a growing body of research has been providing a scholarly basis for engineering design education. The goal of this chapter is to acquaint readers with engineering design education research and practice. To situate engineering design education in the larger context, we first present a brief history of research on design processes across several fields and then move to a more specific description of research on engineering design processes. We then focus on research that investigates effective ways to teach and assess the design process and review curricular structures and pedagogies that are commonly used in undergraduate engineering programs.

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Available abstract

Introduction Designing is a key component of professional practice in many fields of human endeavor (e.g., architecture, engineering, industrial design, art, and literature). For engineers, designing integrates engineering knowledge, skill, and vision in the pursuit of innovations to solve problems and enable modern life. With this understanding, engineering educators have, for several decades, been infusing their programs with design curricula and pedagogical experiences in order to enhance the design competencies of engineering graduates. Paralleling the development of these curricula and experiences, a growing body of research has been providing a scholarly basis for engineering design education. The goal of this chapter is to acquaint readers with engineering design education research and practice. To situate engineering design education in the larger context, we first present a brief history of research on design processes across several fields and then move to a more specific description of research on engineering design processes. We then focus on research that investigates effective ways to teach and assess the design process and review curricular structures and pedagogies that are commonly used in undergraduate engineering programs.

Key concepts: Component (thermodynamics), Key (lock), Architecture, Engineering, Engineering ethics, Engineering management, Computer science, Systems engineering

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