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Luca Szalay; Zoltán Tóth; Réka Borbás; István Füzesi – Journal of Turkish Science Education, 2025
The main objective of this four-year empirical research project has been to develop the experimental design skills of 12-16 year-old Hungarian pupils in Grades 7-10 of junior high school through guided inquiry, using six chemistry experiment worksheets each school year. Group 1 (control group) and Group 2 follow step-by-step instructions, but…
Descriptors: Chemistry, Problem Solving, Junior High School Students, Intervention
Stephanie L. Mitchell; Jill S. McCourt; Diane J. Nesset-Tollefson; Gabrielle L. Kimball; Jasmine N. Mikesell; Emily J. Tollefson; Erin E. Carlson – Journal of Chemical Education, 2023
Common over-the-counter medicines can be an exciting entry point for introducing students to the interesting chemistries that they encounter in their daily lives. In this inquiry-based activity, students are tasked with using a list of given supplies and information about four medications (Aspirin, Tums, Pepto-Bismol, and Tylenol) to design three…
Descriptors: Medicine, Chemistry, Science Education, Active Learning
Farley, Elijah R.; Fringer, Victoria; Wainman, Jacob W. – Journal of Chemical Education, 2021
In an idealized General Chemistry Laboratory curriculum, students would hone their experimental design ability with practice encouraged by laboratory exercises designed to be open-ended. However, traditional General Chemistry Laboratory courses often lack opportunities for students to design their own experiments, instead opting to provide…
Descriptors: Science Instruction, Chemistry, Undergraduate Study, College Science
Shegufta Shetranjiwalla; Molly S. J. Hu – Journal of Chemical Education, 2023
Green chemistry and chemical safety complement each other in reducing adverse health and safety outcomes. However, it is imperative to train students of advanced synthetic chemistry, beyond reaction mechanisms, to proactively connect complex experiments with hazard analysis, risk minimization, and planetary sustainability. Virtual experiments…
Descriptors: Stakeholders, Science Experiments, Chemistry, Electronic Learning
Szalay, Luca; Tóth, Zoltán; Borbás, Réka; Füzesi, István – Chemistry Education Research and Practice, 2023
The results of an earlier four-year longitudinal research study on the development of experimental design skills led to the conclusion that 12-13 year old students probably need more help to design experiments than had been offered to them in that project. This paper reports the findings of the first year of a further four-year empirical research…
Descriptors: Scaffolding (Teaching Technique), Chemistry, Science Instruction, Comparative Analysis
Debije, Michael G. – Journal of Chemical Education, 2019
This work presents an outline for a full-quartile design-based learning laboratory-based course suitable for final year Bachelor's students. The course has been run for 5 years in the department of Chemical Engineering and Chemistry. The course attempts to provide a complete laboratory experience for its students, including an authentic research…
Descriptors: Design, Chemistry, Science Instruction, College Science
Krawczyk, Tomasz; Slupska, Roksana; Baj, Stefan – Journal of Chemical Education, 2015
This work describes a single-session laboratory experiment devoted to teaching the principles of factorial experimental design. Students undertook the rational optimization of a luminol oxidation reaction, using a two-level experiment that aimed to create a long-lasting bright emission. During the session students used only simple glassware and…
Descriptors: Science Instruction, Science Laboratories, Laboratory Experiments, Science Experiments
Liu, Chang; Zhong, Ying – International Journal of Virtual and Personal Learning Environments, 2014
Multi-level adaptation in end-user development (EUD) is an effective way to enable non-technical end users such as educators to gradually introduce more functionality with increasing complexity to 3D virtual learning environments developed by themselves using EUD approaches. Parameterization, integration, and extension are three levels of…
Descriptors: Chemistry, Science Instruction, Educational Technology, Technology Uses in Education
Peer reviewedWoods, Donald R.; Dunn, Robert W. – Chemical Engineering Education, 1979
For this 12-hour laboratory project students examine a model and explain why equipment is placed where it is, and then install some piping on the model. (BB)
Descriptors: Chemistry, College Science, Design, Engineering Education

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