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Williams, Ursula J.; Dries, Daniel R. – Journal of Chemical Education, 2022
In order to evaluate students' development of scientific competence at the intermediate level, a guided-inquiry course was developed to increase student independence, including opportunities for project ownership and significant collaborative learning expectations. A survey was developed to assess students' experiences learning the scientific…
Descriptors: Scientific Literacy, Science Process Skills, Personal Autonomy, Inquiry
Alcantara, Marlon C.; Braga, Marco; van den Heuvel, Charles – Science & Education, 2020
This paper discusses the potential of the creation and analysis of historical networks as didactic strategies in science education. To this end, we first argue the importance of combining critical approaches of the history of science with historical network research. This will be followed by a report of an empirical experiment in which the history…
Descriptors: Science Education, Network Analysis, High School Students, Science History
Christiaan H. L. Tempelman; Annemiek Rijgersberg; Michel van der Eijk – Journal of Chemical Education, 2023
The redesign of the first year basic chemistry course is described at the Rotterdam University of Applied Sciences Chemical Engineer educational course. This was done with the aim to reduce student drop-out during the first year of the educational program. On one hand, it was chosen to teach the basic chemistry course in the laboratory where…
Descriptors: Science Instruction, Chemistry, Science Laboratories, College Freshmen
Schwarz, Gunnar; Picotti, Vincenzo; Bleiner, Davide; Gundlach-Graham, Alexander – Journal of Chemical Education, 2020
This paper summarizes a project seminar in analytical chemistry that includes a method comparison approach and collaborative learning. In this project seminar, 12 students worked in four groups, each of which focused on one method for quantitative element analysis, including flame atomic absorption spectroscopy, inductively coupled plasma mass…
Descriptors: Student Centered Learning, Teaching Methods, Cooperative Learning, Chemistry
Flener-Lovitt, Charity; Bailey, Karl; Han, Rui – Journal of Chemical Education, 2020
Structured collaborative peer teams are widely recognized as a high-impact pedagogy that supports learning outcomes for diverse learners but it can be difficult to implement this pedagogy in an online environment. This communication describes a structure to use collaborative teams to develop and sustain a community of inquiry in an asynchronous…
Descriptors: Teamwork, Cooperative Learning, Teaching Methods, Online Courses
Campbell, Todd; Oh, Phil Seok; Maughn, Milo; Kiriazis, Nick; Zuwallack, Rebecca – EURASIA Journal of Mathematics, Science & Technology Education, 2015
The current review examined modeling literature in top science education journals to better understand the pedagogical functions of modeling instruction reported over the last decade. Additionally, the review sought to understand the extent to which different modeling pedagogies were employed, the discursive acts that were identified as important,…
Descriptors: Science Education, Periodicals, Teaching Methods, Models
Constible, Juanita; Sandro, Luke – Journal of College Science Teaching, 2008
In this problem-based learning activity designed for nonscience majors, students assume the roles of scientists working for a public relations firm. Teams of students design communication products illustrating links between climate change and pollen allergies. Students develop a variety of process skills critical to scientists, including working…
Descriptors: Allergy, Problem Based Learning, Science Process Skills, Climate
National Center for Education Statistics, 2012
This report presents results of the National Assessment of Educational Progress (NAEP) U.S. science assessment in 2011. A representative sample of 122,000 eighth-graders participated in the 2011 NAEP science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and…
Descriptors: National Competency Tests, Science Tests, Grade 8, Scores
De Avila, Paulo, Jr.; Torres, Bayardo B. – Biochemistry and Molecular Biology Education, 2010
Understanding the scientific method fosters the development of critical thinking and logical analysis of information. Additionally, proposing and testing a hypothesis is applicable not only to science, but also to ordinary facts of daily life. Knowing the way science is done and how its results are published is useful for all citizens and…
Descriptors: Undergraduate Students, Critical Thinking, Logical Thinking, Publications
Yager, Robert E.; Choi, AeRan; Yager, Stuart O.; Akcay, Hakan – Journal of Elementary Science Education, 2009
Fifteen 4th-, 5th-, and 6th-grade teachers from five school districts each taught two sections of science--one with a Science-Technology-Society (STS) approach and the other with a more traditional textbook approach in which basic science concepts were the major organizers. Local, current, and personally relevant issues provided the context and…
Descriptors: Science and Society, Effect Size, Science Teachers, Teaching Methods

Zuckerman, Galina A.; Chudinova, Elena V.; Khavkin, Emil E. – Cognition and Instruction, 1998
Describes science curriculum for elementary children which incorporated Vygotskian approach to development of students' ability to engage in persistent, systematic inquiry. Discusses three factors: (1) instruction began by introducing ideas that are central and general to the discipline; (2) students invented and adapted cultural tools for…
Descriptors: Cooperative Learning, Curriculum Design, Curriculum Development, Educational Philosophy
Komis, Vassilis; Ergazaki, Marida; Zogza, Vassiliki – Computers & Education, 2007
This study aims at highlighting the collaborative activity of two high school students (age 14) in the cases of modeling the complex biological process of plant growth with two different tools: the "paper & pencil" concept mapping technique and the computer-supported educational environment "ModelsCreator". Students' shared activity in both cases…
Descriptors: Plants (Botany), Concept Mapping, Models, High Schools
Carson, Kathleen M.; Hodgen, Brian; Glaser, Rainer E. – Educational Research and Reviews, 2006
Teaching philosophy should be based on the desired outcome of the teaching. In the case of science education, the guiding principle for a teaching philosophy should start with the desire to help students understand and use science, regardless of their major or profession. To effectively teach students how to understand science, one must include…
Descriptors: Science Education, Peer Evaluation, Scientific Research, Chemistry