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Gao, Ruomei; Lloyd, Judith; Emenike, Bright U.; Quarless, Duncan; Kim, Youngjoo; Emenike, Mary E. – Journal of Chemical Education, 2021
Engaging students in scientific practices has become an important pedagogical component in STEM education, although its implementation in laboratories is still emerging. This paper uses three types of guiding questions to facilitate scientific practices in introductory and analytical chemistry laboratories. What makes our instructional model…
Descriptors: College Science, Science Instruction, Questioning Techniques, Teaching Methods
Burkett, Jeremy R.; Dwyer, Timothy M. – Journal of Chemical Education, 2019
High-impact practices, and other pedagogical advancements, have been successfully used to deepen student engagement with courses over a wide variety of disciplines. Here, we describe the design, implementation, and assessment of a cross-disciplinary, inquiry-based lab course built on the proven success of these deeply engaging principles. This new…
Descriptors: Active Learning, Inquiry, Team Teaching, Teaching Models
Durham, Mary F.; Knight, Jennifer K.; Bremers, Emily K.; DeFreece, Jameson D.; Paine, Alex R.; Couch, Brian A. – International Journal of STEM Education, 2018
Background: The Scientific Teaching (ST) pedagogical framework encompasses many of the best practices recommended in the literature and highlighted in national reports. Understanding the growth and impact of ST requires instruments to accurately measure the extent to which practitioners implement ST in their courses. Researchers have typically…
Descriptors: Science Instruction, Teaching Models, Interrater Reliability, Measures (Individuals)
Pérez de Villarreal, Maider – Universal Journal of Educational Research, 2018
Teaching Experimental Sciences is a compulsory subject in the Bachelor's Degree in Primary Education (BDPE). It belongs to the discipline of Education and to the field of "Knowledge of the social and natural environment", and consists of a total of 24 ECTS, of which 6 ECTS correspond to "Teaching Natural Sciences" (TNS). This…
Descriptors: Teaching Methods, Teaching Models, Natural Sciences, Science Instruction
Baze, Christina L.; Gray, Ron – Journal of College Science Teaching, 2018
Inquiry methods have been successful in improving science literacy in students of all ages. Model-Based Inquiry (MBI) is an instructional model that engages students in the practices of science through the collaborative development of scientific models to explain an anchoring phenomenon. Student ideas are tested through engagement in content-rich…
Descriptors: Models, Inquiry, Community Colleges, Two Year College Students
Bonham, Scott W.; Jones, Kolton; Luna, Brian; Pauley, Lance – Journal of College Science Teaching, 2018
Students in introductory science laboratory courses benefit from comprehensive technical writing instruction. Written communication is an important skill for people in the workforce as well as education; STEM (science, technology, engineering, and mathematics) students need to develop good technical writing skills, and most enter college with…
Descriptors: Writing Instruction, Technical Writing, Introductory Courses, College Science
Heddy, Benjamin C.; Sinatra, Gale M.; Seli, Helena; Taasoobshirazi, Gita; Mukhopadhyay, Ananya – Educational Psychology, 2017
The Teaching for Transformative Experience in Science (TTES) model has shown to be a useful tool to generate learning and engagement in science. We investigated the effectiveness of TTES for facilitating transformative experience (TE), learning, the development of topic interest and transfer of course concepts to other courses employing a…
Descriptors: At Risk Students, Undergraduate Students, Science Instruction, Teaching Models
Sickel, Aaron J.; Witzig, Stephen B.; Vanmali, Binaben H.; Abell, Sandra K. – Research in Science Education, 2013
Large enrolment science courses play a significant role in educating undergraduate students. The discourse in these classes usually involves an instructor lecturing with little or no student participation, despite calls from current science education reform documents to elicit and utilize students' ideas in teaching. In this study, we used the 5E…
Descriptors: College Science, Biology, Large Group Instruction, Undergraduate Students
Lysne, Steven; Miller, Brant – Journal of College Science Teaching, 2015
The purpose of this article is to describe a model for teaching introductory biology coursework within the Vision and Change framework (American Association for the Advancement of Science, 2011). The intent of the new model is to transform instruction by adopting an active, student-centered, and inquiry-based pedagogy consistent with Vision and…
Descriptors: Two Year Colleges, Two Year College Students, Community Colleges, Science Instruction
Bigoni, Davide; Dal Corso, Francesco; Misseroni, Diego; Tommasini, Mirko – European Journal of Physics, 2012
A classroom demonstration model has been designed, machined and successfully tested in different learning environments to facilitate understanding of the mechanics of truss structures, in which struts are subject to purely axial load and deformation. Gaining confidence with these structures is crucial for the development of lattice models, which…
Descriptors: Mechanics (Physics), Demonstrations (Educational), Teaching Models, Science Instruction
Martin, Elaine Luna – Education, 2011
Ecofeminist science pedagogy has received scant attention in the educational literature. This article presents an ecofeminism framework for the teaching of college-level botany courses. This didactic approach emphasizes women's experiences, appreciation for the accomplishments of women in science, connection to real world learning exercises, group…
Descriptors: Feminism, Botany, College Science, Science Instruction
Menon, Deepika; Sinha, Somnath – Electronic Journal of Science Education, 2013
Recent efforts to reform science education have strongly emphasized the understanding of the nature of science (NOS) as important to achieving broader scientific literacy. Despite the realization that students' understanding of NOS is important, there is a gap between research and practice. In order to teach NOS effectively in pre-college or…
Descriptors: Periodicals, Scientific Principles, Science Instruction, Information Sources
Levy Nahum, Tami; Mamlok-Naaman, Rachel; Hofstein, Avi; Taber, Keith S. – Studies in Science Education, 2010
Chemical bonding is one of the key and basic concepts in chemistry. The learning of many of the concepts taught in chemistry, in both secondary schools as well as in the colleges, is dependent upon understanding fundamental ideas related to chemical bonding. Nevertheless, the concept is perceived by teachers, as well as by learners, as difficult,…
Descriptors: Teaching Models, Chemistry, Misconceptions, Teaching Methods
Bozlee, Brian J.; Janebo, Maria; Jahn, Ginger – Journal of Chemical Education, 2008
The chemistry of dissolved inorganic carbon in seawater is reviewed and used to predict the potential effect of rising levels of carbon dioxide in the atmosphere. In agreement with more detailed treatments, we find that calcium carbonate (aragonite) may become unsaturated in cold surface seawater by the year 2100 C.E., resulting in the destruction…
Descriptors: Chemistry, Teaching Models, Prediction, College Science
Vosburg, David A. – Journal of Chemical Education, 2008
In this course, students encounter reactions and mechanisms in the context of landmark syntheses of biologically important molecules. Students closely examine pairs of syntheses of related or identical molecules to facilitate their appreciation for synthetic strategy. They then write short, creative papers that critically compare the two synthetic…
Descriptors: Graduate Students, Teaching Models, Chemistry, Case Method (Teaching Technique)
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