Publication Date
In 2025 | 0 |
Since 2024 | 0 |
Since 2021 (last 5 years) | 2 |
Since 2016 (last 10 years) | 2 |
Since 2006 (last 20 years) | 12 |
Descriptor
Chemical Engineering | 15 |
Computation | 15 |
Teaching Methods | 15 |
Problem Solving | 8 |
Chemistry | 7 |
College Science | 6 |
Engineering Education | 5 |
Equations (Mathematics) | 5 |
Foreign Countries | 5 |
Science Instruction | 5 |
Higher Education | 4 |
More ▼ |
Source
Chemical Engineering Education | 11 |
Advances in Engineering… | 1 |
European Journal of… | 1 |
International Journal of STEM… | 1 |
Journal of Chemical Education | 1 |
Author
Publication Type
Journal Articles | 15 |
Reports - Descriptive | 8 |
Reports - Research | 5 |
Guides - Classroom - Teacher | 1 |
Reports - Evaluative | 1 |
Education Level
Higher Education | 11 |
Postsecondary Education | 3 |
Audience
Practitioners | 3 |
Teachers | 3 |
Researchers | 2 |
Students | 1 |
Location
South Africa | 3 |
Illinois | 1 |
New Jersey | 1 |
Pennsylvania | 1 |
Spain | 1 |
Tunisia | 1 |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Gómez Siurana, Amparo; Font Escamilla, Alicia – Chemical Engineering Education, 2022
Examples of applications of equilibrium-based methods for multicomponent separations usually require the use of simulation packages, which do not allow students to follow the involved algorithms step by step. Excel spreadsheets with examples of six such rigorous methods have been used with MSc students of Chemical Engineering of the University of…
Descriptors: Spreadsheets, Chemical Engineering, Graduate Students, Teaching Methods
The Use of Student Question-Posing in Reactor Design to Encourage an Open-Ended Approach to Learning
Pott, Robert W. M.; Nortjé, Sunel – European Journal of Engineering Education, 2021
A concern in engineering education is students adopting a 'recognise and reproduce' approach to problem solving. In this study, an assignment was conceived and analysed through Legitimation Code Theory -- which allows for visualisation of students' thinking, and to illuminate how students construct knowledge in open-ended problem solving. The…
Descriptors: Teaching Methods, Learning Processes, Engineering Education, Problem Solving
Siyepu, Sibawu Witness – International Journal of STEM Education, 2015
Background: This article reports on an analysis of errors that were displayed by students who studied mathematics in Chemical Engineering in derivatives of mostly trigonometric functions. The poor performance of these students triggered this study. The researcher (lecturer) works in a mathematics support programme to enhance students'…
Descriptors: Mathematics Instruction, Error Patterns, Qualitative Research, Case Studies
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
Hanyak, Michael E., Jr. – Advances in Engineering Education, 2015
In an introductory chemical engineering course, the conceptual framework of a holistic problem-solving methodology in conjunction with a problem-based learning approach has been shown to create a learning environment that nurtures deep learning rather than surface learning. Based on exam scores, student grades are either the same or better than…
Descriptors: Chemical Engineering, Problem Solving, Teaching Methods, Problem Based Learning
Simeon, Tomekia; Aikens, Christine M.; Tejerina, Baudilio; Schatz, George C. – Journal of Chemical Education, 2011
The Northwestern University Initiative for Teaching Nanosciences (NUITNS) at nanohub.org Web site combines several tools for doing electronic structure calculations and analyzing and displaying the results into a coordinated package. In this article, we describe this package and show how it can be used as part of an upper-level quantum chemistry…
Descriptors: Chemistry, Engineering, Teaching Methods, Computation
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
Savage, Phillip E. – Chemical Engineering Education, 2008
Students rarely see closed-form analytical rate equations derived from underlying chemical mechanisms that contain more than a few steps unless restrictive simplifying assumptions (e.g., existence of a rate-determining step) are made. Yet, work published decades ago allows closed-form analytical rate equations to be written quickly and easily for…
Descriptors: Equations (Mathematics), Algebra, Teaching Methods, Computation
Liu, Xue; Howley, Maureen A.; Johri, Jayati; Glasser, Benjamin J. – Chemical Engineering Education, 2008
A simplified model of an industrially relevant fluid-particle flow system is analyzed using linear stability theory. Instabilities of the uniform state of a fluidized bed are investigated in response to small flow perturbations. Students are expected to perform each step of the computational analysis, and physical insight into key mechanistic…
Descriptors: Models, Investigations, Chemical Engineering, Problem Solving
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
Monroe, Charles W.; Newman, John – Chemical Engineering Education, 2007
The Onsager reciprocal relations are essential to multicomponent transport theory. A discussion of the principles that should be used to derive flux laws for coupled diffusion is presented here. Fluctuation theory is employed to determine the reciprocal relation for transport coefficients that characterize coupled mass and heat transfer in binary…
Descriptors: Heat, Graduate Students, Chemical Engineering, Computation
Metzger, Matthew J.; Glasser, Benjamin J.; Glasser, David; Hausberger, Brendon; Hildebrandt, Diane – Chemical Engineering Education, 2007
Ask a graduating chemical engineering student the following question: What makes one reactor different from the next? The answers received will often be unsatisfactory and will vary widely in scope. Some may cite the difference between the basic design equations, others may point out a PFR is "longer," and still others may state that it…
Descriptors: Graduate Students, Chemical Engineering, Equations (Mathematics), Teaching Methods

Eubank, Philip T.; Barrufet, Maria A. – Chemical Engineering Education, 1988
Describes an algorithm that provides more rapid convergence for more complicated forms of phase separation requiring the use of a digital computer. Demonstrates that this "inside-out" algorithm remains efficient for determination of the equilibrium states for any type of phase transition for a binary system. (CW)
Descriptors: Algorithms, Chemical Engineering, Chemistry, College Science

Misovich, Michael; Biasca, Karyn – Chemical Engineering Education, 1991
Discussed are the possible uses of spreadsheets in the undergraduate curriculum in chemical engineering classes. The advantages and flexibility of spreadsheets, spreadsheet instruction, graphing capabilities, assignment examples, and conclusions are described. (KR)
Descriptors: Chemical Engineering, Chemistry, College Science, Computation

Joye, Donald D.; Koko, F. William Jr. – Chemical Engineering Education, 1988
Presents a new method to teach the subject of evaporators which is both simple enough to use in the classroom and accurate and flexible enough to be used as a design tool in practice. Gives an example using a triple evaporator series. Analyzes the effect of this method. (CW)
Descriptors: Algorithms, Chemical Engineering, Chemistry, College Science