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Davis, Richard A. – Chemical Engineering Education, 2020
A case study of regression analysis based on modeling Gilliland's correlation was described for use in a computational methods course. The case study uses a familiar example to train students in nonlinear least squares regression and to use standardized residual plots for model assessment. Previously published equations for Gilliland's correlation…
Descriptors: Case Studies, Regression (Statistics), Correlation, Least Squares Statistics
Park, Joontaek; Matejka, Elizabeth; Nelson, Alyssa K.; Rhodes, Jared A. – Chemical Engineering Education, 2018
A sample class project utilizing Excel spreadsheets to develop a flash drum simulator is demonstrated. In addition to solving equations for mole and enthalpy balances, students are trained to carry out vapor-liquid equilibrium calculations. More importantly, students gain a solid understanding of the link between hand calculations and simulator…
Descriptors: Spreadsheets, Class Activities, Chemical Engineering, Simulation
Capela, Emanuel V.; Santos, João H. P. M.; Boal-Palheiros, Isabel; Carvalho, Pedro J.; Coutinho, João A. P.; Ventura, Sónia P. M.; Freire, Mara G. – Chemical Engineering Education, 2019
Through the experiments described in this article, students become acquainted with the principles behind ternary liquid-liquid systems and/or Aqueous Two-Phase Systems (ATPS), and their characterization by the determination of the binodal curve, tie-lines, tie-line lengths and critical point, as well as in applying the non-random two-liquid model…
Descriptors: Chemistry, Science Instruction, Science Experiments, Scientific Concepts
Teppaitoon, Wittaya – Chemical Engineering Education, 2016
This work aims to demonstrate the use of Excel spreadsheets for solving L-L extraction problems. The key to solving the problems successfully is to be able to determine a tie line on the ternary diagram where the calculation must be carried out. This enables the reader to analyze the extraction process starting with a simple operation, the…
Descriptors: Spreadsheets, Courseware, Problem Solving, Computation
Anastasio, Daniel; McCutcheon, Jeffrey – Chemical Engineering Education, 2012
A crossflow reverse osmosis (RO) system was built for a senior-level chemical engineering unit operations laboratory course. Intended to teach students mass transfer fundamentals related to membrane separations, students tested several commercial desalination membranes, measuring water flux and salt rejections at various pressures, flow rates, and…
Descriptors: Chemical Engineering, Scientific Concepts, Undergraduate Study, Science Laboratories
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
Kosmopoulou, Georgia; Freeman, Margaret; Papavassiliou, Dimitrios V. – Chemical Engineering Education, 2011
A major challenge that chemical engineering graduates face at the modern workplace is the management and operation of plants under conditions of uncertainty. Developments in the fields of industrial organization and microeconomics offer tools to address this challenge with rather well developed concepts, such as decision theory and financial risk…
Descriptors: Chemical Engineering, Engineering Education, Risk, Computation
Nijdam, Justin J. – Chemical Engineering Education, 2013
A homework assignment is outlined in which students learn Computational Fluid Dynamics (CFD) concepts of discretization, numerical stability and accuracy, and verification in a hands-on manner by solving physically realistic problems of practical interest to engineers. The students solve a transient-diffusion problem numerically using the common…
Descriptors: Homework, Assignments, Computation, Concept Teaching
Book, Neil L.; Sitton, Oliver C. – Chemical Engineering Education, 2010
The thermodynamic equations used to define and compute the fugacity of a pure substance are depicted as processes on a semi-logarithmic plot of pressure vs. molar Gibbs energy (PG diagram) with isotherms for the substance behaving as an ideal gas superimposed. The PG diagram clearly demonstrates the physical basis for the definitions and the…
Descriptors: Thermodynamics, Graphs, Computation, Engineering Education
Wood, Brian D. – Chemical Engineering Education, 2009
Although the multiscale structure of many important processes in engineering is becoming more widely acknowledged, making this connection in the classroom is a difficult task. This is due in part because the concept of multiscale structure itself is challenging and it requires the students to develop new conceptual pictures of physical systems,…
Descriptors: Engineering Education, Evaluation, Geometry, Computation
Joye, Donald D.; Hoffman, Adam; Christie, Jacqueline; Brown, Mayo; Niemczyk, Jennifer – Chemical Engineering Education, 2011
Three undergraduate students functioned as teaching assistants in unit ops lab for their senior project, which included developing a purchased size exclusion chromatography experiment, supervising the running of this experiment, and assisting the junior students with their calculations. They also read the reports, graded them, and commented on…
Descriptors: Undergraduate Students, Student Projects, Chemistry, Active Learning
Norman, James J.; Andrews, Samantha N.; Prausnitz, Mark R. – Chemical Engineering Education, 2011
To introduce students to an application of chemical engineering directly related to human health, we developed an experiment for the unit operations laboratory at Georgia Tech examining diffusion across cadaver skin in the context of transdermal drug delivery. In this laboratory module, students prepare mouse skin samples, set up diffusion cells…
Descriptors: Science Laboratories, Chemical Engineering, Science Instruction, Undergraduate Study
Elliott, J. Richard – Chemical Engineering Education, 2010
The topics of solution thermodynamics, activity coefficients, and complex formation are introduced through computational exercises and sample applications. The presentation is designed to be accessible to freshmen in a chemical engineering computations course. The MOSCED model is simplified to explain complex formation in terms of hydrogen…
Descriptors: Thermodynamics, Chemistry, Chemical Engineering, Scientific Concepts
Olaya, Maria del Mar; Reyes-Labarta, Juan A.; Serrano, Maria Dolores; Marcilla, Antonio – Chemical Engineering Education, 2010
Phase thermodynamics is often perceived as a difficult subject with which many students never become fully comfortable. The Gibbsian geometrical framework can help students to gain a better understanding of phase equilibria. An exercise to interpret the vapor-liquid equilibrium of a binary azeotropic mixture, using the equilibrium condition based…
Descriptors: Thermodynamics, Chemistry, Science Instruction, Scientific Concepts
Ortiz-Rodriguez, Estanislao; Vazquez-Arenas, Jorge; Ricardez-Sandoval, Luis A. – Chemical Engineering Education, 2010
An overview of a course on modeling and simulation offered at the Nanotechnology Engineering undergraduate program at the University of Waterloo. The motivation for having this course in the undergraduate nanotechnology curriculum, the course structure, and its learning objectives are discussed. Further, one of the computational laboratories…
Descriptors: Course Content, Laboratories, Undergraduate Students, Universities

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