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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
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
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
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
Protein Colorimetry Experiments That Incorporate Intentional Discrepancies and Historical Narratives
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
Quattrucci, Joseph G. – Journal of Chemical Education, 2018
A new method for teaching advanced laboratories at the undergraduate level is presented. The intent of this approach is to get students more engaged in the lab experience and apply critical thinking skills to solve problems. The structure of the lab is problem-based and provides students with a research-like experience. Students read the current…
Descriptors: Problem Based Learning, Thinking Skills, Teaching Methods, Critical Thinking
Bustamante, Andres S.; Greenfield, Daryl B.; Nayfeld, Irena – Education Sciences, 2018
Early childhood science and engineering education offer a prime context to foster approaches-to-learning (ATL) and executive functioning (EF) by eliciting children's natural curiosity about the world, providing a unique opportunity to engage children in hands-on learning experiences that promote critical thinking, problem solving, collaboration,…
Descriptors: Science Education, Critical Thinking, Persistence, Engineering Education
Bustamante, Andres S.; Greenfield, Daryl B.; Nayfeld, Irena – Grantee Submission, 2018
Early childhood science and engineering education offer a prime context to foster approaches-to-learning (ATL) and executive functioning (EF) by eliciting children's natural curiosity about the world, providing a unique opportunity to engage children in hands-on learning experiences that promote critical thinking, problem solving, collaboration,…
Descriptors: Science Education, Critical Thinking, Persistence, Engineering Education
Edelmann, Hans G.; Martius, Thilo; Hahn, Achim; Schlüter, Kirsten; Nessler, Stefan H. – School Science Review, 2016
Enquiry learning and teaching about the nature of science (NoS) is a key element of science education. We have designed an experimental setting for students aged 12-14 years to exercise enquiry-learning skills and to introduce students to the NoS aspects of creativity and imagination. It also illustrates the impact of carbon dioxide on the growth…
Descriptors: Scientific Principles, Science Instruction, Teaching Methods, Secondary School Students
Tamang, Sushmika; Nopparatjamjomras, Suchai; Chitaree, Ratchapak; Nopparatjamjomras, Thasaneeya R. – Physics Education, 2015
A container was placed on top of a piece of white paper, and a pin positioned so that it vertically touched an outside wall of the container. Students were asked to predict the image of the pin when it was observed from the top of the container. Two scenarios of either an empty container or a container completely filled with water were considered…
Descriptors: Scientific Concepts, Scientific Principles, Critical Thinking, Science Activities
Steury, Michael D.; Poteracki, James M.; Kelly, Kevin L.; Rennhack, Jonathan; Wehrwein, Erica A. – Advances in Physiology Education, 2016
Physiology instructors often are faced with the challenge of providing informative and educationally stimulating laboratories while trying to design them in such a way that encourages students to be actively involved in their own learning. With many laboratory experiments designed with simplicity and efficiency as the primary focus, it is…
Descriptors: Science Instruction, Discovery Learning, Problem Based Learning, Physiology
Dede, Chris; Grotzer, Tina A.; Kamarainen, Amy; Metcalf, Shari – Educational Technology & Society, 2017
Young people now must compete in a global, knowledge-based, innovation-centered economy; they must acquire not just academic knowledge, but also character attributes such as intrinsic motivation, persistence, and flexibility. To accomplish these ambitious goals, the National Research Council (2012) of the United States recommends the use of…
Descriptors: Teaching Methods, Middle School Students, Case Method (Teaching Technique), Vignettes
Kraus, Rudolf V. – Science Teacher, 2014
This article describes a two-day optics laboratory activity that investigates the scientific phenomenon of reflection, which students are generally familiar with but usually have not studied in depth. This investigation can be used on its own or as part of a larger unit on optics. This lesson encourages students to think critically and…
Descriptors: Science Instruction, Science Laboratories, Optics, Scientific Concepts
Gobert, Janice D.; Kim, Yoon Jeon; Sao Pedro, Michael; Kennedy, Michael; Betts, Cameron – Grantee Submission, 2015
Many national policy documents underscore the importance of 21st century skills, including critical thinking. In parallel, recent American frameworks for K-12 Science education call for the development of critical thinking skills in science, also referred to as science inquiry skills/practices. Assessment of these skills is necessary, as indicated…
Descriptors: Learning Analytics, Science Education, Teaching Methods, 21st Century Skills
Farrell, Ivan; Hamed, Kastro M. – Science Activities: Classroom Projects and Curriculum Ideas, 2016
This article describes the use of project-based instruction in activities and labs intended to develop higher-order thinking skills with high school students and pre-service teachers through the use of soap making.
Descriptors: Active Learning, Student Projects, Teaching Methods, Preservice Teacher Education
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