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Abby L. Manning; Bryanna N. Roos; Amber Flynn Charlebois; Kelly Hutchinson-Anderson; Stephen G. Tajc – Journal of Chemical Education, 2023
In an effort to further develop critical thinking and problem solving skills, a guided-inquiry-based, multioutcome organic chemistry synthesis and characterization experiment was developed. Students were provided with the protocol for a time-saving microwave-assisted acetanilide synthesis reaction from acetic anhydride and an unknown primary aryl…
Descriptors: Active Learning, Inquiry, Organic Chemistry, Laboratory Experiments
Jessie King; Barnaby Kelly; Nayla Rhein; Rhonda Rosengren – Biochemistry and Molecular Biology Education, 2024
To best prepare students for the real-world research environment, key skills, including experimental design, data analysis, communication of results, and critical thinking, should be key components of undergraduate science courses. Furthermore, the impact of the COVID-19 pandemic on in-person teaching has resulted in a need to develop courses that…
Descriptors: Undergraduate Students, Laboratory Experiments, Research Design, Data Interpretation
Thaveesangsakulthai, Isaya; Kulsing, Chadin – Journal of Chemical Education, 2021
Optimization of experimental conditions in chromatography is recognized as a wear-and-tear process involving hundreds of experiments in order to maximize the number of separated compounds for each sample. The critical thinking skills and practices entailed cannot be achieved with students in a conventional lecture class. This report provides a…
Descriptors: Spreadsheets, Simulation, Biochemistry, Laboratory Procedures
Floris A. Valentijn; Michael Y. Schakelaar; Maria A. Hegeman; Willemijn D. Schot; Wim J. A. G. Dictus; Sandra Crnko; Toine ten Broeke; Niels Bovenschen – Biochemistry and Molecular Biology Education, 2024
Translational medicine (TM) is an interdisciplinary branch of biomedicine that bridges the gap from bench-to-bedside to improve global health. Fundamental TM skills include interdisciplinary collaboration, communication, critical thinking, and creative problem-solving (4Cs). TM is currently limited in undergraduate biomedical education programs,…
Descriptors: Barriers, Interdisciplinary Approach, Patients, Physicians
Andi Wahyudi; Yusinta Dwi Ariyani – Biochemistry and Molecular Biology Education, 2024
Many studies have reported various interventions to increase critical thinking, but very few studies have examined the impact of learning in classrooms and laboratories. This study aimed to find a learning pattern (practice to theory or theory to practice) in improving students' critical thinking skills (CTs). Pre and posttest nonequivalent group…
Descriptors: Critical Thinking, Science Instruction, Science Teachers, Intervention
Tracy N. Vassiliev; Douglas J. Gardner; David J. Neivandt – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2024
This STEM research project asks middle school or high school students to work towards creating ecologically friendly packaging. Packaging that can be composted instead of thrown away and collected in landfills and oceans like plastics. This inquiry uses nanocellulose and focuses on water permeability. The fibers of nanocellulose can be dried to…
Descriptors: STEM Education, Middle School Students, Environmental Education, Science Activities
Walsh, Cole; Lewandowski, H. J.; Holmes, N. G. – Physical Review Physics Education Research, 2022
Instructional labs are fundamental to an undergraduate physics curriculum, but their possible learning goals are vast with limited evidence to support any particular goal. In this study, we evaluate the efficacy of labs with different goals and structures on students' critical thinking skills and views about experimentation, using an extensive…
Descriptors: Science Process Skills, Science Instruction, Critical Thinking, Science Experiments
Sierra McCormick; Jodi L. Davenport; Anna N. Rafferty; Sandra Raysor; Jacklyn Yani; David Yaron – Journal of Chemical Education, 2023
The Next Generation Science Standards encourage students to develop the reasoning and practice skills of scientists. Rather than promoting rote memorization, teachers engage students with real-world phenomena and prompt students to think critically. ChemVLab+ is a series of freely available, online modules that require students to reason like…
Descriptors: Chemistry, Science Instruction, Science Process Skills, Critical Thinking
Lapanantnoppakhun, Somchai; Tengjaroensakul, Urai; Mungkornasawakul, Pitchaya; Puangpila, Chanida; Kittiwachana, Sila; Saengtempiam, Jeeraphithak; Hartwell, Supaporn Kradtap – Journal of Chemical Education, 2020
A green chemistry experiment is presented for teaching an undergraduate quantitative analysis/analytical chemistry laboratory class through the use of black tea leaf extract for the determination of iron in supplement tablets. Dried tea leaf is a safe, low cost, and widely available source of natural extract that can be used in place of more toxic…
Descriptors: Chemistry, Science Experiments, Spectroscopy, College Science
Sanchez, Juan M. – Journal of Chemical Education, 2021
Systematic errors are unfortunately common in analyses performed by students in teaching laboratories. Quality control (QC) tools are required to detect and solve bias in laboratory analyses. However, although QC has become routine in real-world laboratories, it is still rarely applied in teaching laboratories. For this reason, systematic errors…
Descriptors: Critical Thinking, Science Experiments, Problem Solving, Error Patterns
Viennot, Laurence; Décamp, Nicolas – Contributions from Science Education Research, 2020
This chapter illustrates the main warning signals that could help us to detect the flaws of an explanation in physics: internal contradiction (two examples); direct contradiction of a law of physics (one example); indirect contradiction of a law of physics (one example); logical incompleteness of an explanation (three examples); overgeneralization…
Descriptors: Critical Reading, Critical Thinking, Physics, Misconceptions
Michael Vignal; Gayle Geschwind; Benjamin Pollard; Rachel Henderson; Marcos D. Caballero; H. J. Lewandowski – Physical Review Physics Education Research, 2023
[This paper is part of the Focused Collection on Instructional labs: Improving traditions and new directions.] Measurement uncertainty is a critical feature of experimental research in the physical sciences, and the concepts and practices surrounding measurement uncertainty are important components of physics lab courses. However, there has not…
Descriptors: Scientific Concepts, Science Experiments, Physics, Science Laboratories
Maureen E. Dunbar; Jacqueline J. Shade – HAPS Educator, 2024
Teaching introductory anatomy and physiology (A&P) requires a careful balance of conveying core content while at the same time fostering a deep interest in the subject matter. This is especially true in the laboratory where students are expected to not only master experimental procedures but also connect what they learn in the laboratory to…
Descriptors: Undergraduate Students, Anatomy, Physiology, Science Instruction
Wang, Chun; Chen, Pengwen; Wang, Jingying; Ling, Yizhou – Journal of Chemical Education, 2021
Evidence-based reasoning and critical thinking are two crucial scientific abilities of students, sharing a close relationship with each other critical thinking is not just randomly refuting but a logical-reasoning thinking based on solid evidence. However, in real teaching circumstances of experiment classes, students easily directly accept the…
Descriptors: Science Process Skills, Evidence, Critical Thinking, Logical Thinking
Tomas Shivolo; Hamza Omari Mokiwa – Journal of Education in Science, Environment and Health, 2024
Contemporary science teaching pedagogy in Namibia places a strong emphasis on fostering inquiry-based instruction and practical work in secondary school science education. In recent years, there has been a growing recognition of the need to move beyond traditional, rote-based methods towards more learner-centred approaches that encourage active…
Descriptors: Secondary School Teachers, Science Instruction, Teaching Methods, Instructional Design