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Landa, Ilse; Westbroek, Hanna; Janssen, Fred; van Muijlwijk, Jacqueline; Meeter, Martijn – Science & Education, 2020
The importance of learning "chemical ways of thinking" is widely recognized. Various frameworks have been developed to address the essence of chemistry and chemical thinking. However, very few studies have focused on how chemical ways of thinking can be defined. To elaborate chemical ways of thinking, this paper draws on scientific…
Descriptors: Science Instruction, Chemistry, Scientific Concepts, Concept Formation
Jiménez-Liso, Maria Rut; López-Banet, Luisa; Dillon, Justin – Science & Education, 2020
We propose explicit and implicit approaches for the teaching of acid-base chemistry based on research into the history and nature of science (NoS). To support these instructional proposals, we identify four rationales for students to understand acid-base processes: daily life, socio-scientific, curriculum, and history of science. The extensive…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Scientific Concepts
Alameh, Sahar; Abd-El-Khalick, Fouad – Science & Education, 2018
Stemming from the realization of the importance of the role of explanation in the science classroom, the Next Generation Science Standards (NGSS Lead States 2013) call for appropriately supporting students to learn science, argue from evidence, and provide explanations. Despite the ongoing emphasis on explanations in the science classroom, there…
Descriptors: Science Education, Scientific Concepts, Concept Formation, Teaching Methods
Prentis, Jeffrey J.; Obsniuk, Michael J. – Physics Teacher, 2016
Energy and entropy are two of the most important concepts in science. For all natural processes where a system exchanges energy with its environment, the energy of the system tends to decrease and the entropy of the system tends to increase. Free energy is the special concept that specifies how to balance the opposing tendencies to minimize energy…
Descriptors: Energy, Physics, Science Instruction, Scientific Concepts
Kerstiens, Geri Anne – ProQuest LLC, 2019
Recently, there have been many calls for an increase in instruction on the nature of science (NOS) in schools (i.e. NRC, 1996; NGSS Lead States, 2013). These calls recognize the importance of this topic at all levels of science education, but there is little guidance in terms of how to address it effectively in curricula. Similarly, there have…
Descriptors: Scientific Principles, Science Instruction, Chemistry, Science Laboratories
Malgieri, Massimiliano; Onorato, Pasquale; De Ambrosis, Anna – Physical Review Physics Education Research, 2017
In this paper we present the results of a research-based teaching-learning sequence on introductory quantum physics based on Feynman's sum over paths approach in the Italian high school. Our study focuses on students' understanding of two founding ideas of quantum physics, wave particle duality and the uncertainty principle. In view of recent…
Descriptors: Teaching Methods, Science Instruction, Quantum Mechanics, Physics
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
Newman, Micah – Science & Education, 2013
In learning chemistry at the entry level, many learners labor under misconceptions about the subject matter that are so fundamental that they are typically never addressed. A fundamental misconception in chemistry appears to arise from an adding of existing phenomenal concepts to newly-acquired chemical concepts, so that beginning learners think…
Descriptors: Science Education, Chemistry, Misconceptions, Scientific Concepts
Shultz, Ginger V.; Gere, Anne Ruggles – Journal of Chemical Education, 2015
Traditional methods for teaching the Lewis dot structure model emphasize rule-based learning and often neglect the purpose and function of the model. Thus, many students are unable to extend their understanding of molecular structures in new contexts. The assignment described here addresses this issue by asking students to read and write about the…
Descriptors: Science Instruction, Chemistry, Teaching Methods, Scientists
Brown, Patrick – Science and Children, 2014
A rich science learning experience not only captures students' attention but also motivates them to investigate and solve problems and investigate how scientists carry out their work. This article describes how secondary science coordinator Patrick Brown's found success teaching students the nature of science by engaging them in…
Descriptors: Science Instruction, Scientific Principles, Hands on Science, Physics
Schwartz, Marc S.; Shapiro, Irwin I.; Gregory, Bruce – Higher Education Studies, 2013
During a five-year period the authors taught over 100 students in a graduate course (The Nature of Science) counting toward teacher certification at the Harvard Graduate School of Education. Despite the fact that students had undergraduate degrees in the sciences, most of them found the application of models in science challenging and the…
Descriptors: Preservice Teacher Education, Science Education, Scientific Principles, Concept Formation
Al-Balushi, Sulaiman M. – International Journal of Science and Mathematics Education, 2009
This study explores the mental images at the microscopic level of matter created by 22 preservice science teachers in Oman. Participants were encouraged during a guided imagery session to construct mental images for a scenario written about the explanation of the reaction of sodium in water. They were then asked to describe what they envisioned in…
Descriptors: Imagination, Imagery, Chemistry, Long Term Memory
Bouwma-Gearhart, Jana; Stewart, James; Brown, Keffrelyn – International Journal of Science Education, 2009
Understanding the particulate nature of matter (PNM) is vital for participating in many areas of science. We assessed 11 students' atomic/molecular-level explanations of real-world phenomena after their participation in a modelling-based PNM unit. All 11 students offered a scientifically acceptable model regarding atomic/molecular behaviour in…
Descriptors: Science Activities, Causal Models, Heat, Science Instruction

Gilbert, John K.; Boulter, Carolyn; Rutherford, Margaret – International Journal of Science Education, 1998
Seeks to identify some of the issues associated with the role of models in scientific explanations. Develops a typology of explanations and explores the notion of appropriateness in scientific explanations. Investigates the nature of models and their contribution to explanations. (DDR)
Descriptors: Cognitive Processes, Concept Formation, Epistemology, Foreign Countries

Gilbert, John K.; Boulter, Carolyn; Rutherford, Margaret – International Journal of Science Education, 1998
Seeks to identify some of the issues associated with the role of models in scientific explanations. Discusses factors which may influence the way that those explanations are understood and the judgment of their appropriateness by the various audiences involved. Contains 55 references. (DDR)
Descriptors: Cognitive Processes, Concept Formation, Epistemology, Foreign Countries
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