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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
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Marlowe, Justin; Tsilomelekis, George – Journal of Chemical Education, 2020
The importance of utilizing spectroscopic techniques for unraveling structural and compositional changes in nonreacting and reacting systems is unquestionable. Nowadays, efforts are directed towards the introduction of relevant spectroscopic techniques to undergraduate students in order to prepare them for future careers in industry and academia,…
Descriptors: Science Instruction, College Science, Spectroscopy, Chemistry
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Lewin, Daniel R. – Chemical Engineering Education, 2022
This reflective practice contribution presents the lessons learned from teaching plant design using an online flipped format to a small cohort of students in the first COVID-19 semester. These lessons were applied to the online teaching of the capstone design course to a full-sized cohort. The impact of the implemented recommendations on the…
Descriptors: COVID-19, Pandemics, Online Courses, Flipped Classroom
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Joss, Lisa; Müller, Erich A. – Journal of Chemical Education, 2019
Recent advances in computer hardware and algorithms are spawning an explosive growth in the use of computer-based systems aimed at analyzing and ultimately correlating large amounts of experimental and synthetic data. As these machine learning tools become more widespread, it is becoming imperative that scientists and researchers become familiar…
Descriptors: Science Instruction, Science Laboratories, Chemical Engineering, Educational Technology
Kevin Morgan – Journal of Chemical Education, 2023
Practical classes are an important and essential part of undergraduate programs in Chemical Engineering, as each experiment provides an opportunity to reinforce the theory of discrete unit operations that are taught elsewhere in the course. While an expensive pedagogical method, when practical sessions are delivered well, they can be one of the…
Descriptors: Student Experience, Chemical Engineering, Science Laboratories, Laboratory Training
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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)
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Tabassum, Tahseen; Iloska, Marija; Scuereb, Daniel; Taira, Noriko; Jin, Chongguang; Zaitsev, Vladimir; Afshar, Fara; Kim, Taejin – Journal of Chemical Education, 2018
3D printing technology has an enormous potential to apply to chemical engineering education. In this paper, we describe several designs of 3D printed mesoreactors (Y-shape, T-shape, and Long channel shape) using the following steps: reactor sketching, CAD modeling, and reactor printing. With a focus on continuous plug flow mesoreactors (PFRs, i.d.…
Descriptors: College Science, Science Instruction, Undergraduate Study, Hands on Science
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Amos, Delaina A.; Pittard, Caroline M.; Snyder, Kate E. – Chemical Engineering Education, 2018
Typically the material and energy balance (MEB) course is taught at a freshman or sophomore level. Success in this early course is generally believed to be a metric for future success within the chemical engineering curriculum. However, the complexities and dynamics of the course stem from not only the difficulty of the subject matter, but also…
Descriptors: Energy, Chemical Engineering, College Students, Teaching Methods
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Koretsky, Milo – Chemical Engineering Education, 2018
This profile describes the AIChE Concept Warehouse (CW) website, a community developed, web-based tool to decrease instructional barriers and to help faculty implement concept-based active learning in class. The CW provides three distinct but complementary functions: (a) a content repository, (b) an audience response system and learning management…
Descriptors: Active Learning, Web Sites, Concept Formation, Audience Response Systems
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Falconer, John L.; Nicodemus, Garret D. – Chemical Engineering Education, 2014
Interactive Mathematica simulations with graphical displays of system behavior are an excellent addition to chemical engineering courses. The Manipulate command in Mathematica creates on-screen controls that allow users to change system variables and see the graphical output almost instantaneously. They can be used both in and outside class. More…
Descriptors: Computer Simulation, Mathematics, Engineering Education, Chemical Engineering
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Falconer, John L.; Nicodemus, Garret D.; Medlin, J. Will; deGrazia, Janet; McDanel, Katherine P. – Chemical Engineering Education, 2014
A ready-to-use package of active-learning materials for a semester-long chemical engineering thermodynamics course was prepared for instructors, and similar materials are being prepared for a material and energy balance course. The course package includes ConcepTests, explanations of the ConcepTests for instructors, links to screencasts, chapter…
Descriptors: Science Instruction, Chemical Engineering, Thermodynamics, Energy
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Foley, Greg – Chemical Engineering Education, 2014
A problem that illustrates two ways of computing the break-even radius of insulation is outlined. The problem is suitable for students who are taking an introductory module in heat transfer or transport phenomena and who have some previous knowledge of the numerical solution of non- linear algebraic equations. The potential for computer algebra,…
Descriptors: Chemical Engineering, College Science, Computation, Scientific Concepts
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Anastasio, Daniel; Suresh, Aravind; Burkey, Daniel D. – Chemical Engineering Education, 2013
Mobile platforms and cloud computing allow collaborative sharing and submission of work in ways not feasible until recently. In this article, we detail how we took a writing-intensive laboratory and made the submission, reading, grading, and returning of student work online and paper-free, while maintaining familiar elements of pen-and-paper…
Descriptors: Internet, Information Storage, Educational Technology, Chemical Engineering
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Alnaizy, Raafat; Abdel-Jabbar, Nabil; Ibrahim, Taleb H.; Husseini, Ghaleb A. – Chemical Engineering Education, 2014
Introductions of computer-aided software and simulators are implemented during the sophomore-year of the chemical engineering (ChE) curriculum at the American University of Sharjah (AUS). Our faculty concurs that software integration within the curriculum is beneficial to our students, as evidenced by the positive feedback received from industry…
Descriptors: Computer Software, Computer Simulation, College Science, Chemical Engineering
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Kaushik, V. V. R.; Ghosh, S.; Das, G.; Das, P. K. – Chemical Engineering Education, 2011
This paper deals with the use of commercial CFD software in teaching graduate level computational fluid dynamics. FLUENT 6.3.26 was chosen as the CFD software to teach students the entire CFD process in a single course. The course objective is to help students to learn CFD, use it in some practical problems and analyze as well as validate the…
Descriptors: Computer Software, Computer Uses in Education, Graduate Study, Educational Technology
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