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Jerry Easdon – Journal of Chemical Education, 2022
Water and an immiscible organic liquid are placed in a small plastic bottle. Ten small pieces of a notecard which is shaded on one side by crayon or pencil (graphite or colored) are cut out and placed inside the bottle. After capping and shaking, the notecard pieces float at the liquid-liquid interface with the shaded side facing the nonpolar…
Descriptors: Elementary Secondary Education, Chemistry, Science Instruction, Science Activities
Leonora Kaldaras; Hope O. Akaeze; Joseph Krajcik – Journal of Research in Science Teaching, 2024
Chemical bonding is central to explaining many phenomena. Research in chemical education and the Framework for K-12 Science Education (the "Framework") argue for new approaches to learning chemical bonding grounded in (1) using ideas of the balance of electric forces and energy minimization to explain bond formation, (2) using learning…
Descriptors: Science Education, Academic Standards, Chemistry, Energy
Nahlik, Philip; Kempf, Lauren; Giese, Jayke; Kojak, Elizabeth; Daubenmire, Patrick L. – Chemistry Education Research and Practice, 2023
Green chemistry developed historically from twelve industrial principles for research chemists. Recently, interest has grown to begin introducing these principles in science classrooms even at the secondary and pre-secondary school levels. However, teachers must do significant work to adapt and translate green chemistry from the industrial or…
Descriptors: Chemistry, Sustainability, Science Instruction, Elementary Secondary Education
Bing Wei; Zhangyu Zhan; Zhimeng Jiang; Linwei Yu – Research in Science Education, 2025
Intellectual demands of learning outcomes in the intended curriculum have always been a concern across the field of science education. In particular, the representation of those learning outcomes stipulated by the intended curriculum in science textbooks has become a big issue for both science curriculum studies and science teaching practice. To…
Descriptors: Foreign Countries, Elementary Secondary Education, Chemistry, Science Instruction
Gamze Comez; Gulbin Ozkan – International Journal of Education in Mathematics, Science and Technology, 2025
This study aims to investigate the effect of the flipped learning model in science education. Therefore, articles in the Web of Science database were analyzed using the systematic review method. During the research, 1627 data points were obtained using the keyword 'flipped learning.' Articles between 2013 and 2023 were examined during the research…
Descriptors: Blended Learning, Teaching Methods, Science Education, Educational Benefits
Julieth Tatiana Garci´a-Sa´nchez; Karen Amorocho-Cubides; Juan Correa-Delgado; Carol Espinosa-Lobo; Edgar Rodri´guez-Marti´nez; Magola Nin~o-Maldonado; Javier Sanabria-Cala; Maritza Me´ndez-Angarita; Vi´ctor Gabriel Baldovino-Medrano; Rogelio Ospina; Sergio Rinco´n-Orti´z – Journal of Chemical Education, 2023
MóviLab (Moving Lab) was an educational strategy developed at Universidad Industrial de Santander, Colombia, to promote chemistry and science among schoolchildren and teenagers from far rural areas of the Santurbán moor in Colombia during the COVID-19 pandemic. The strategy consisted of designing a kit with chemistry experiments that could be done…
Descriptors: Science Instruction, Rural Schools, Chemistry, Science Experiments
Ying Chen – ProQuest LLC, 2024
This three-paper dissertation systematically investigates the methodology issues related to using observational systems to observe, analyze, and interpret teachers' reformed teaching practices within the K-12 classroom context. Each paper contributes a distinct perspective to evaluate instructional practices accurately, consistently, and…
Descriptors: Teacher Evaluation, Measurement, Teaching Methods, Elementary Secondary Education
Shauna Schechtel; Amanda Bongers – Chemistry Education Research and Practice, 2024
A goal in chemistry education research and teaching is to make chemistry education inclusive to our diverse students. Ethnography is one approach that can support this goal, because it supports researchers and educators in questioning what is considered ordinary by exploring chemistry as a culture. By exploring chemistry as a culture, we can…
Descriptors: Chemistry, Science Instruction, Inclusion, Student Diversity
Roche Allred, Zahilyn D.; Farias, Anthony J.; Kararo, Alex T.; Parent, Kristin N.; Matz, Rebecca L.; Underwood, Sonia M. – Biochemistry and Molecular Biology Education, 2021
Students tend to think of their science courses as isolated and unrelated to each other, making it difficult for them to see connections across disciplines. In addition, many existing science assessments target rote memorization and algorithmic problem-solving skills. Here, we describe the development, implementation, and evaluation of an activity…
Descriptors: Chemistry, Scientific Concepts, Genetics, Learning Activities
Du Juan; Dorothy DeWitt – Journal of Education and Learning (EduLearn), 2024
Numerous studies have delved into the application of augmented reality (AR) in chemistry education, focusing on specific topics, equipment requirements, and advantages. However, there remains a notable dearth of research examining the evolutionary characteristics of AR in this context. This study, employing bibliometric analysis on 66 articles…
Descriptors: Journal Articles, Chemistry, Science Education, Simulation
Cannon, Amy S.; Keirstead, Amy E.; Hudson, Reuben; Levy, Irvin J.; MacKellar, Jennifer; Enright, Mollie; Anderson, Kate R.; Howson, Elizabeth M. – Journal of Chemical Education, 2021
Green chemistry provides unique opportunities for student engagement through K-12 and community outreach. As a platform for safe, engaging outreach, green chemistry activities allow for hands-on approaches to introducing science and chemistry concepts in informal settings. Green chemistry outreach also is a means for American Chemical Society…
Descriptors: Chemistry, Hands on Science, Science Activities, Informal Education
Kuntzleman, Thomas S.; Imhoff, Amanda M. – Journal of Chemical Education, 2021
This article reports on a new device, called a geyser guide, that allows for quantitative measurements of both bubble sizes and kinetics of foam production in the so-called Diet Coke and Mentos experiment. The device is easily constructed, is made using readily available materials, and allows the experiment to be carried out indoors with no mess.…
Descriptors: Food, Chemistry, Science Instruction, Science Experiments
Joseph M. Furner – International Journal of Education in Mathematics, Science and Technology, 2024
This paper will provide several examples of science and mathematics integration: navigation/map-reading, ecology/ecosystems/population growth, and chemistry/molecular structures. This paper underscores integrating STEM subjects with problem-based learning with technology such as video/computer simulations/programming/coding and the dynamic free…
Descriptors: Problem Based Learning, Mathematics Instruction, Educational Technology, Geometry
Michailidi, Emily; Stavrou, Dimitris – International Journal of Science Education, 2022
This study focuses on post-induction mentoring as a vehicle for science teachers' training in implementing a nanotechnology teaching-learning sequence. Five mentors and 15 mentee-teachers participated in a 9-months long mentoring programme. Qualitative methods of analysis were used to examine the content of the mentoring conversations and the…
Descriptors: Mentors, Science Teachers, Molecular Structure, Technology
Gong, Xiaoyang; Bergey, Bradley W.; Jin, Ying; Mao, Kexin; Cheng, Yan – Chemistry Education Research and Practice, 2023
Students' perceived values and costs of learning chemistry influence their performance and intentions of choosing chemistry-related majors or careers. Based on Situated Expectancy-Value Theory, this study adopted a mixed method approach to examine the conceptualization of values and costs among Chinese high school students and identify their…
Descriptors: Gender Differences, High School Students, Chemistry, Science Instruction