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Uchenna Asogwa; T. Ryan Duckett; Amanda P. Malefyt; Lindsey Stevens; Gale Mentzer; Matthew W. Liberatore – Journal of Chemical Education, 2023
Complex problem solving is one of the skills desired in the 21st century workforce. Students can improve their problem-solving skills by working on homework problems, and creating new problems can be a stimulating and inventive exercise for student as well. Our previous studies explored the impacts of a novel homework pedagogy where students…
Descriptors: Video Technology, Student Centered Learning, Textbooks, Comparative Analysis
Gopinath, B.; Santhi, R. – Higher Education for the Future, 2021
In this article, Fishbone-based advanced computational thinking (FACT) pedagogy is proposed by fusing fishbone pedagogy and computational thinking pedagogy for enhancing teaching-learning process while teaching engineering and science courses, for engineering and science students respectively. The proposed FACT pedagogy has been implemented using…
Descriptors: Problem Solving, Thinking Skills, Computation, Visual Learning
Maungchang, Rasimate; Dam-O, Punsiri – Physics Education, 2021
This paper demonstrates an experimental integrated lesson of physics and calculus in a topic of fluid force applying on different shapes of dams. This lesson was designed for the first year students in engineering program in an attempt to show them the connection between these two disciplines, as well as to introduce more advanced…
Descriptors: Physics, Calculus, Science Instruction, Scientific Concepts
Shacham, Mordechai; Brauner, Neima – Chemical Engineering Education, 2017
Chemical engineering problems often involve the solution of systems of nonlinear algebraic equations (NLE). There are several software packages that can be used for solving NLE systems, but they may occasionally fail, especially in cases where the mathematical model contains discontinuities and/or regions where some of the functions are undefined.…
Descriptors: Chemical Engineering, College Science, Equations (Mathematics), Science Instruction
Rodriguez, Jon-Marc G.; Bain, Kinsey; Hux, Nicholas P.; Towns, Marcy H. – Chemistry Education Research and Practice, 2019
Problem solving is a critical feature of highly quantitative physical science topics, such as chemical kinetics. In order to solve a problem, students must cue into relevant features, ignore irrelevant features, and choose among potential problem-solving approaches. However, what is considered appropriate or productive for problem solving is…
Descriptors: Science Instruction, Problem Solving, Chemistry, Kinetics
Delahunty, Thomas; Pérez, Lance C.; Rivera-Reyes, Presentacion – Engineering Design Graphics Journal, 2018
Spatial skills have a known beneficiary role in STEM students' academic success. This paper explores data relating to the role of spatial skills in electrical engineering problem solving which is a relatively under researched area. Data indicate a significant association between electrical engineering problem solving and spatial skills and a…
Descriptors: Spatial Ability, STEM Education, Problem Solving, Engineering
Johnson, Kristen C.; Sabel, Jaime L.; Cole, Judith; Pruett, Christin L.; Plymale, Ruth; Reyna, Nathan S. – Biochemistry and Molecular Biology Education, 2022
The need for changing how science is taught and the expansion of undergraduate research experiences is essential to foster critical thinking in the Natural Sciences. Most faculty research programs only involve a small number of upper-level undergraduate students each semester. The course-based undergraduate research experience (CURE) model enables…
Descriptors: Undergraduate Students, College Science, Science Education, Science Instruction
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
Vidak, Andrej; Odžak, Senad; Mešic, Vanes – Research in Science & Technological Education, 2019
Background: It is widely known that for many students it is very difficult to correctly predict how thermal expansion affects the appearance of a metal plate with a circular hole. Interviews with school teachers show that the source of this difficulty could stem from the fact that students' internal visualizations of an arbitrary object's thermal…
Descriptors: Physics, College Science, Science Instruction, Prediction
Foutz, Timothy L. – European Journal of Engineering Education, 2019
Research suggests that a significant reason that a large number of students earn low grades in the fundamental engineering science course Statics is that they may be entering the course with incorrect conceptual knowledge of mathematics and physics. The self-explanation learning approach called collective argumentation helps k-12 students to…
Descriptors: Persuasive Discourse, Learning Strategies, Engineering Education, Academic Achievement
Immethun, Cheryl M.; Daher, Tareq; Saha, Rajib – Chemical Engineering Education, 2019
The use of active learning techniques in engineering classrooms has been limited despite substantial evidence supporting their efficacy in helping students construct problem-solving expertise. A blended classroom, which combines online and in-class learning, was employed in a Chemical Engineering Computation class to address instructional…
Descriptors: Science Instruction, Teaching Methods, Chemical Engineering, Blended Learning
Senra, Michael; Fogler, H. Scott – Chemical Engineering Education, 2014
In their collegiate studies, students are given a wide range of concepts, theories, and equations to assist them in their future endeavors. However, students have not been sufficiently exposed to practical critical thinking methodologies that will benefit them as they encounter open-ended problems. A course developed at the University of Michigan…
Descriptors: Science Instruction, College Science, Creative Thinking, Chemical Engineering
Adorno, Dominique Persano; Pizzolato, Nicola; Fazio, Claudio – Physical Review Physics Education Research, 2018
This paper investigates the efficacy of an open-inquiry approach to achieve a long term stability of physics instruction. This study represents the natural continuation of a research project started four years ago when a sample of thirty engineering undergraduates, having already attended traditional university physics instruction, were involved…
Descriptors: Outcomes of Education, Undergraduate Students, Inquiry, Science Instruction
Eren-Sisman, E. N.; Cigdemoglu, C.; Geban, O. – Chemistry Education Research and Practice, 2018
This study aims to compare the effectiveness of a Peer-Led Team Learning (PLTL) model with that of traditional college instruction (TCI) in enhancing the conceptual understanding and reducing both the state anxiety and social anxiety of undergraduate engineering students in a general chemistry course in a quasi-experimental design. 128 engineering…
Descriptors: Undergraduate Students, Anxiety, Engineering Education, Quasiexperimental Design
Hoare, Todd – Chemical Engineering Education, 2015
The implementation of troubleshooting within a pre-existing expository laboratory is described and evaluated. Student feedback indicated that troubleshooting activities are highly effective in providing a hands-on opportunity to exercise problem-solving skills and gain a better understanding of the whole process in addition to effectively…
Descriptors: Science Instruction, College Science, Chemical Engineering, Science Laboratories