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Justin F. Shaffer – Chemical Engineering Education, 2024
High structure course design involves scaffolding students' learning via pre-class content acquisition and assessment, in-class active learning exercises, after-class review and assessment, and frequent summative assessments. Research has demonstrated the efficacy of high structure courses including improved student performance, reduced…
Descriptors: Program Design, Chemical Engineering, Instructional Design, Scaffolding (Teaching Technique)
Ford Versypt, Ashlee N.; Bara, Jason E.; Getman, Rachel B.; Kieslich, Chris A.; Voronov, Roman S. – Chemical Engineering Education, 2020
Applications or "apps" for computers and mobile devices are ubiquitous in modern technology. Several apps are available for teaching chemical engineering and are disseminated inexpensively or are freely available online. This paper highlights software apps that chemical engineering instructors may use "off the shelf" for iOS,…
Descriptors: Chemical Engineering, Teaching Methods, Computer Oriented Programs, Educational Technology
Wilkens, Robert; Comfort, Kristen – Chemical Engineering Education, 2016
The goal of this article is to provide critical information to chemical engineers seeking a tenure-track faculty position within academia. We outline the application and submission process from start to finish, including a discussion on critical evaluation metrics sought by search committees. In addition, we highlight frequent mistakes made by…
Descriptors: College Faculty, Tenure, Research Universities, Criticism
Heys, Jeffrey J. – Chemical Engineering Education, 2018
The application of Machine Learning (ML) tools to a wide range of problems from image recognition to movie recommendations is increasing rapidly. After a brief overview of ML, select ML tools are demonstrated through the analysis of student grades in various chemical engineering courses. ML tools are shown to help in the identification of…
Descriptors: Artificial Intelligence, Man Machine Systems, Teaching Methods, Grades (Scholastic)
Farrell, Stephanie; Godwin, Allison; Riley, Donna M. – Chemical Engineering Education, 2021
This paper describes a sociocultural learning framework for classroom inclusion based on research in three interconnected areas: learner identity, classroom context, and engineering culture. This paper is intended to serve as a resource for "CEE" authors to incorporate research-based inclusive pedagogy into the design and implementation…
Descriptors: Inclusion, Equal Education, Social Environment, Classroom Environment
Farrell, Stephanie; Vernengo, Jennifer – Chemical Engineering Education, 2012
This paper describes a simple, cost-effective experiment which introduces students to drug delivery and modeling using alginate beads. Students produce calcium alginate beads loaded with drug and measure the rate of release from the beads for systems having different stir rates, geometries, extents of cross-linking, and drug molecular weight.…
Descriptors: Engineering Education, Engineering, Data Analysis, Scientific Research
Montanes, M. T.; Palomares, A. E.; Sanchez-Tovar, R. – Chemistry Education Research and Practice, 2012
The principles of sustainable development have been integrated in chemical engineering education by means of an environmental management system. These principles have been introduced in the teaching laboratories where students perform their practical classes. In this paper, the implementation of the environmental management system, the problems…
Descriptors: Engineering Education, Management Systems, Wastes, Laboratories
Savelski, Mariano J.; Slater, C. Stewart; Del Vecchio, Christopher A.; Kosteleski, Adrian J.; Wilson, Sarah A. – Chemical Engineering Education, 2010
Educational problem sets have been developed on structured organic particulate systems (SOPS) used in pharmaceutical technology. The sets present topics such as particle properties and powder flow and can be integrated into K-12 and college-level curricula. The materials educate students in specific areas of pharmaceutical particulate processing,…
Descriptors: Problem Sets, Chemical Engineering, Engineering Education, Pharmaceutical Education
Ponsa, Sergio; Sanchez, Antoni – Chemical Engineering Education, 2011
At present, due to the overall adaptation to the European Higher Education Area (EHEA), a new concept regarding the teaching methodology was thought to be essential for engineering subjects. In this paper we describe our experience teaching the altered content of the courses on two classical subjects; Chemical Reactors (Chemical Engineering) and…
Descriptors: Student Surveys, Chemistry, Chemical Engineering, Foreign Countries
McCarthy, Ray – Technology and Engineering Teacher, 2011
Late in the winter of 2010, teachers across Massachusetts received invitations to apply for six- to eight-week Research Experiences for Teachers (RET) in which middle or high school teachers in STEM subjects would work alongside scientists and their graduate students as they sought to solve real-world problems. This country-wide effort was funded…
Descriptors: Graduate Students, Student Attitudes, Chemical Engineering, Secondary School Teachers
Forbes, Neil S. – Chemical Engineering Education, 2008
This article describes a teaching module designed to enhance engineering creativity in an introductory chemical engineering course. The module includes an exercise to design column packing material, and an open-ended research project to describe the societal impact of chemical engineering. These assignments were created to illustrate the benefit…
Descriptors: Creativity, Research Projects, Chemical Engineering, Engineering Education
Seay, Jeffrey R.; Eden, Mario R. – Chemical Engineering Education, 2008
This paper introduces, via case study example, the benefit of including risk assessment methodology and inherently safer design practices into the curriculum for chemical engineering students. This work illustrates how these tools can be applied during the earliest stages of conceptual process design. The impacts of decisions made during…
Descriptors: Engineering Education, Chemical Engineering, Methods, Risk
Binous, Housam – Chemical Engineering Education, 2008
We show a new approach, based on the utilization of Matlab and Mathematica, for solving liquid-liquid extraction and binary distillation problems. In addition, the author shares his experience using these two softwares to teach equilibrium staged separations at the National Institute of Applied Sciences and Technology. (Contains 7 figures.)
Descriptors: Computation, Teaching Methods, Chemical Engineering, Educational Technology

Crosser, O. K. – Chemical Engineering Education, 1985
Discusses the nature of adjoint variables (the sensitivity coefficients in optimal search problems) and their role in optimal reactors in chemical engineering. (JN)
Descriptors: Chemical Engineering, Engineering Education, Higher Education

Ng, Ka M. – Chemical Engineering Education, 2002
Introduces a chemistry course offered to business and science students as an elective course. Provides an understanding of chemical engineering among students and features six sections: (1) "Introduction"; (2) "Chemicals and Their Sources"; (3) "The Production of Chemicals"; (4) "The Financial Performance of Chemical Corporations"; (5) "Product…
Descriptors: Chemical Engineering, Chemistry, Course Descriptions, Higher Education