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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
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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
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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
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van Brederode, Marion E.; Zoon, Sebastiaan A.; Meeter, Martijn – Chemistry Education Research and Practice, 2020
Developing students' critical thinking skills is often seen as an important educational goal for inquiry assignments. In this study, we investigated to what extent pre-laboratory activities of a chemical inquiry assignment influence students' independent critical thinking. We compared two forms of pre-laboratory activities that are frequently used…
Descriptors: Science Instruction, Teaching Methods, Critical Thinking, Chemistry
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Rising, Zoe; Rising, Letty – Montessori Life: A Publication of the American Montessori Society, 2022
Science is the study of the world around us, and a scientist's job is to ask questions about the world and then experiment to find the answers. There is not a more natural scientist than the Elementary child, whose reasoning mind is eager to ask questions, investigate, and discuss and compare findings with their peers. In this article, the authors…
Descriptors: Elementary School Science, Science Instruction, Equal Education, Critical Thinking
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Smith, Emily M.; Holmes, N. G. – Physical Review Physics Education Research, 2020
The goals for lab instruction are receiving critical attention in the physics education community due to multiple reports and research findings. In this paper, we describe a theoretically motivated scheme to evaluate instructional lab curricula and apply that scheme to three implementations of an electricity and magnetism lab curriculum. The…
Descriptors: Critical Thinking, Thinking Skills, Physics, Teaching Methods
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Mataniari, Raissa; Willison, John; Effendi Hasibuan, M. H.; Sulistiyo, Urip; Dewi, Fatria – Journal of Turkish Science Education, 2020
Because critical thinking is essential for scientific learning, academics and casual staff struggle to effectively develop students' critical thinking. This study examined the integration of the Research Skill Development (RSD) framework into a Biology course in an Indonesian University and tested how it helped academics and casual staff develop…
Descriptors: Critical Thinking, Biology, Science Instruction, Research Skills
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Frazer, Laszlo; Higginbotham, Heather F.; Bell, Toby D. M.; Funston, Alison M. – Journal of Chemical Education, 2020
Analysis of stochastic processes can be used to engender critical thinking. Quantum dots have a reversible, stochastic transition between luminescent and nonluminescent states. The luminescence intermittency is known as blinking and is not evident from ensemble measurements. In order to stimulate critical thinking, students design, perform, and…
Descriptors: Teaching Methods, Critical Thinking, Science Instruction, Interdisciplinary Approach
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Kylie L. Luska – Journal of Chemical Education, 2022
A multioutcome, guided inquiry-based liquid--liquid extraction (LLE) experiment has been designed for introductory organic chemistry. Multiple outcomes were established by identifying a series of red and blue dyes that are (1) soluble in organic solvent, (2) soluble in aqueous solution, or (3) soluble in either the organic or aqueous layers by…
Descriptors: Science Instruction, Teaching Methods, Inquiry, Active Learning
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Vanderveen, Jesse R.; Jessop, Philip G. – Journal of Chemical Education, 2021
Selecting less hazardous chemicals is a core tenet of green chemistry but is difficult to teach in practice. The upper-year undergraduate or graduate level exercise described here empowers students to make such decisions themselves. Students are tasked with finding the greenest chemical for a specific purpose described in a hypothetical scenario,…
Descriptors: Teaching Methods, Decision Making, Chemistry, Hazardous Materials
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Jiang, Shuaipu; Sun, Qi – American Association for Adult and Continuing Education, 2021
This paper explores the experience of how Chinese international doctoral students develop critical thinking. Narrative interviews are conducted. Narrative thematic analysis is adopted. Four big themes are generated, which are understanding of critical thinking, comparison and contrasts, factors contributing to development of critical thinking and…
Descriptors: Foreign Students, Doctoral Students, Critical Thinking, Comparative Analysis
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Large, Delaney N.; Van Doorn, Nathaniel A.; Timmons, Shannon C. – Biochemistry and Molecular Biology Education, 2023
Laboratory courses should cultivate enthusiasm for research and an appreciation for real-world scientific challenges to retain undergraduate students and encourage them to pursue STEM-related careers. Course-based undergraduate research experiences (CURE) have emerged as an inclusive pedagogical model that facilitates laboratory skill development,…
Descriptors: Cancer, Laboratory Experiments, Undergraduate Students, STEM Careers
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Astrof, Nathan S.; Horowitz, Gail – Journal of Chemical Education, 2018
A set of biochemistry experiments based on the technique of protein colorimetry is described. Students used the Biuret and Bradford assays to qualitatively and quantitatively assess solutions for protein. Two unique features of these experiments are (1) the use of intentional discrepancies within each experiment to promote critical thinking and…
Descriptors: Science Experiments, Biochemistry, Critical Thinking, Scientific Concepts
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Schaber, Peter M.; Hobika, Geoffrey – Journal of Chemical Education, 2018
The case study approach provides students with a better appreciation of how scientists solve problems and conduct themselves in the "real world". When applied to the undergraduate chemistry laboratory, this approach also challenges critical thinking skills and creativity in ways "cook book" experiments very often do not. This…
Descriptors: Chemistry, Case Studies, Undergraduate Students, Critical Thinking
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Purwanto, Agung; Rahmawati, Yuli; Rahmayanti, Novia; Mardiah, Alin; Amalia, Risky – Journal of Technology and Science Education, 2022
Students difficulty in relating chemistry concepts to everyday life leads to their inability to explore and developed skills needed, especially critical thinking. Therefore, this study aimed to develop students' critical thinking skills by integrating socio-critical and problem-oriented approaches to chemistry learning with environmental issues in…
Descriptors: Problem Based Learning, Science Instruction, Teaching Methods, Critical Thinking
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