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Héctor Ruiz Martín – Jossey-Bass, An Imprint of Wiley, 2024
The international bestseller "How Do We Learn?" decodes years of cognitive science research into actionable strategies for K-12 teachers, curricula designers, and administrators. You'll discover how classic and emerging findings can transform pedagogy by pointing at practices that take advantage of the innate structures of the human…
Descriptors: Educational Practices, Evidence Based Practice, Learning Processes, Scientific Principles
Agustian, Hendra Y. – Chemistry Education Research and Practice, 2022
This article seeks to provide researchers and practitioners in laboratory education, particularly those involved in the curriculum design and implementation of teaching laboratories at university level, with a conceptual framework and a working model for an integrated assessment of learning domains, by attending to a more holistic approach to…
Descriptors: Chemistry, Science Instruction, Laboratory Experiments, Curriculum Design
Cappellaro, Evren; Seban, Demet – Electronic Journal for Research in Science & Mathematics Education, 2021
This study investigates the preservice elementary teachers' ability to use the components of an argument structure on a given science topic as well as the quality of the developed argument during their sophomore and senior year. In doing so, the study also aimed to discuss the effect of teacher education programs on the development of…
Descriptors: Persuasive Discourse, Preservice Teachers, Misconceptions, Elementary School Teachers
Taber, Keith S. – Center for Educational Policy Studies Journal, 2021
This article argues that what is most at risk in schooling during a global pandemic, or other similar broad challenges to normal functioning, are those elements that might be considered the less traditional and so the most progressive. After setting out some general background common to the challenge faced by schools and school teachers, this…
Descriptors: Educational Change, COVID-19, Pandemics, Progressive Education
Miller, Sarah; Tanner, Kimberly D. – CBE - Life Sciences Education, 2015
In an introductory biology course, undergraduate students are expected to become familiar with, and be able to use, hundreds of new terms to navigate the complex ideas in biology. And this is just in the introductory course! Juxtapose this student situation with the common frustration expressed by biologists that there is "just too much…
Descriptors: Biology, Vocabulary, College Science, Undergraduate Study
Chang, Hsin-Yi; Lin, Tzung-Jin; Lee, Min-Hsien; Lee, Silvia Wen-Yu; Lin, Tzu-Chiang; Tan, Aik-Ling; Tsai, Chin-Chung – Studies in Science Education, 2020
In this study, we reviewed 76 journal articles on employing drawing assessment as a research tool in science education. Findings from the systematic review suggest four justifications for using drawing as a type of research tool, including assessment via drawing as (a) an alternative method considering young participants' verbal or writing…
Descriptors: Science Education, Formative Evaluation, Student Evaluation, Cognitive Tests
Maurício, Paulo; Valente, Bianor; Chagas, Isabel – International Journal of Science and Mathematics Education, 2017
In this work, we present a teaching-learning sequence on colour intended to a pre-service elementary teacher programme informed by History and Philosophy of Science. Working in a socio-constructivist framework, we made an excursion on the history of colour. Our excursion through history of colour, as well as the reported misconception on colour…
Descriptors: Science History, Scientific Principles, Philosophy, Scientific Concepts
Wiener, Gerfried J.; Schmeling, Sascha M.; Hopf, Martin – European Journal of Science and Mathematics Education, 2015
This study introduces a teaching concept based on the Standard Model of particle physics. It comprises two consecutive chapters--elementary particles and fundamental interactions. The rationale of this concept is that the fundamental principles of particle physics can run as the golden thread through the whole physics curriculum. The design…
Descriptors: Concept Teaching, Physics, Scientific Principles, Microteaching
Krell, Moritz; Upmeier zu Belzen, Annette; Krüger, Dirk – Research in Science Education, 2014
It is argued that knowledge about models is an important part of a profound understanding of Nature of Science. Consequently, researchers have developed different "levels of understanding" to analyse students', teachers', or experts' comprehension of this topic. In some approaches, "global" levels of understanding have been…
Descriptors: Foreign Countries, Models, Secondary School Students, Biology
Bouwma-Gearhart, Jana; Bouwma, Andrew – American Biology Teacher, 2015
The "Next Generation Science Standards" (NGSS Lead States, 2013) recommend that science courses engage communities of students in scientific practices that include building accurate conceptual models of phenomena central to the understanding of scientific disciplines. We offer a set of activities, implemented successfully at both the…
Descriptors: Scientific Concepts, Scientific Literacy, Scientific Principles, Science Activities
Brooks, Bill J.; Gilbuena, Debra M.; Krause, Stephen J.; Koretsky, Milo D. – Chemical Engineering Education, 2014
Active learning in class helps students develop deeper understanding of chemical engineering principles. While the use of multiple-choice ConcepTests is clearly effective, we advocate for including student writing in learning activities as well. In this article, we demonstrate that word clouds can provide a quick analytical technique to assess…
Descriptors: Active Learning, Chemical Engineering, Engineering Education, Science Education
Wilcox, Jesse; Kruse, Jerrid – Science Scope, 2012
Although inquiry is more engaging and results in more meaningful learning (Minner, Levy, and Century 2010) than traditional science classroom instruction, actually involving students in the process is difficult. Furthermore, many students have misconceptions about Earth's seasons, which are supported by students' prior knowledge of heat sources.…
Descriptors: Investigations, Prior Learning, Misconceptions, Science Instruction
Pongsanon, Khemmawadee – ProQuest LLC, 2012
Although teacher educators have successfully helped K-12 teachers' develop adequate views of NOS, their views have not been transferred to their students. It is evident that K-12 students' understanding of NOS still does not align with the recommendation of the reforms document, indicating that holding an adequate view of NOS is…
Descriptors: Scientific Principles, Elementary School Teachers, Reflective Teaching, Elementary School Science
Olson, Joanne – Science and Children, 2008
Helping young children avoid developing deeply held misconceptions and promoting developmentally appropriate Nature of Science (NOS) ideas will establish a foundation for students from which they will later develop more accurate and sophisticated NOS understanding. This article delineates important NOS ideas and practical K-4 classroom teaching…
Descriptors: Scientific Principles, Misconceptions, Teaching Methods, Science Instruction
Thompson, Stephen – Journal of College Science Teaching, 2007
This set of botany demonstrations is a continuation of the inquiry-based lecture activities that provide realistic connections to the history and nature of science and employ technology in data collection. The demonstrations also provide examples of inquiry-based teaching practices in the life sciences. (Contains 5 figures.) [For Part 1, see…
Descriptors: Student Evaluation, Scientific Principles, Botany, Sciences
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