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Analysis of Chemical Engineering Curricula Using Graph Theory

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Conference

2024 ASEE Annual Conference & Exposition

Location

Portland, Oregon

Publication Date

June 23, 2024

Start Date

June 23, 2024

End Date

July 12, 2024

Conference Session

Perspectives in Chemical Engineering Education

Tagged Division

Chemical Engineering Division (ChED)

Permanent URL

https://peer.asee.org/46570

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Paper Authors

biography

Blake Lopez University of Wisconsin, Madison

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University of Wisconsin-Madison Chemical Engineering PhD Candidate

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Abstract

Chemical engineering is a complex interconnected major. Just as chemical engineers have broken complex processes into unit operations, the chemical engineering curriculum has been broken up into courses. The organization of these courses varies amongst institutions and are based on years of prior teaching and research. Despite this, there have been calls to reevaluate the curriculum from both industry and academia. We propose a graph-based representation of curricula in which topics are represented by nodes and topic dependencies are represented by directed edges forming a directed acyclic graph. This enables using graph theory measures and tools to provide formal ways of evaluating a curriculum. Additionally, the abstraction is readily understandable meaning conversations between instructors regarding the curriculum can occur within a department and even across institutions. This abstraction is explained with a simplified curriculum and applied to the undergraduate chemical engineering curriculum of a subject university. Highly and lowly connected topics are identified and approaches for grouping the topics into modules are discussed.

Lopez, B. (2024, June), Analysis of Chemical Engineering Curricula Using Graph Theory Paper presented at 2024 ASEE Annual Conference & Exposition, Portland, Oregon. https://peer.asee.org/46570

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