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Showing 1 to 15 of 306 results Save | Export
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Marie-Jetta den Otter; Alma Kuijpers; Michiel Dam; Ludo Juurlink; Fred Janssen – Research in Science Education, 2024
Chemical reasoning, and in particular structure--property reasoning, is an important goal of chemistry education. Johnstone's triangle (1982, 1991) is often used to explicate this type of reasoning. This triangle describes the multilevel thought chemical reasoning requires and shows why students find chemistry so difficult. However, this model…
Descriptors: Scientific Literacy, Thinking Skills, Scientists, Chemistry
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John O'Donoghue; Natalia Garci´a Dome´nech; Fiona McArdle; Mary Connolly; Yvonne Lang; Niamh McGoldrick – Journal of Chemical Education, 2023
Over the course of the COVID-19 pandemic, school students suffered from a reduction in opportunities to connect with higher education institutions, meet scientific role models in person, discuss scientific career options, and carry out hands-on practical laboratory activities. Current Chemistry Investigators (CCI) is a successful…
Descriptors: Chemistry, Energy, Workshops, Scientists
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Pernaa, Johannes; Law, Gareth T. W.; Ranjan, Sanjeev – Journal of Chemical Education, 2021
Radiochemistry faces a well-documented training and recruitment crisis. Older radiochemists are retiring, and fewer young people are studying radiochemistry. In turn, this is leading to a shortage in newly qualified radiochemists, as well as a loss of historical knowledge (as know-how is often not passed-on). Here, we analyzed the relevance of the…
Descriptors: Chemistry, Radiation, Science Education, Relevance (Education)
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Shaohui Chi; Zuhao Wang; Li Qian – Science & Education, 2024
Enabling students to learn about science is essential for science education. Students are expected to not only gain scientific knowledge but also need to develop a deep understanding of science. One approach to equipping students with a sense of science is to present science as a living collective human enterprise. As essential educational…
Descriptors: Scientists, Textbooks, Stereotypes, Chemistry
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Kelechi O. Uleanya; Samantha K. Furfari; Leonie C. Jones; Kgato P. Selwe; Amelia B. Milner; Caroline E. H. Dessent – Journal of Chemical Education, 2023
In our taught chemistry curricula, the majority of individuals who are used to illustrate historical aspects of chemistry topics are white, western chemists. Decolonizing the undergraduate chemistry curricula is increasingly recognized as an important step toward developing a more inclusive higher-education environment for students from…
Descriptors: Chemistry, Science Instruction, Undergraduate Students, Scientists
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Inbar Haimovich; Malka Yayon; Vered Adler; Hagit Levy; Ron Blonder; Shelley Rap – Journal of Chemical Education, 2022
Chemical escape rooms (ChEsRms) are educational games in which students use their brain, chemical knowledge, intuition, and a bit of luck to solve a mystery. At the Weizmann Institute, we have developed ChEsRms that are implemented by teachers in their classes. Since the COVID-19 pandemic stopped all the educational activities that took place in…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Science Activities
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Ries, Kate R.; Mensinger, Zachary L. – Journal of Chemical Education, 2022
In undergraduate classrooms, a majority of chemistry discoveries introduced are by white men and a small group of white women. There is greater online representation of chemists of diverse backgrounds, but the emphasis on diversity is mainly based on a monthly theme from Black History Month to Women's History Month. The "Diversity in…
Descriptors: Diversity, Scientists, Chemistry, Undergraduate Students
McCormick, Sierra; Powers, Jacklyn; Davenport, Jodi; Yaron, David – Grantee Submission, 2021
In today's science classrooms, with the integration of the Next Generation Science Standards (NGSS), teachers are encouraged to guide instruction through real-world phenomena and promote critical thinking through inquiry-based learning that helps students learn the reasoning and practical skills of scientists, rather than just rote memorization of…
Descriptors: Science Instruction, Chemistry, Inquiry, Thinking Skills
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Michelle L. Kovarik; Betty Cristina Galarreta; Peter J. Mahon; Daniel A. McCurry; Aren E. Gerdon; Steven M. Collier; Marjorie E. Squires – Journal of Chemical Education, 2022
This article reports the results of a curriculum survey of 322 analytical chemistry instructors (92% U.S.-based) conducted during Spring 2021. This snapshot of current course formats, topics, and pedagogical methods will be useful to both seasoned and novice teachers of analytical chemistry. The majority of respondents reported that their major…
Descriptors: Chemistry, Science Instruction, Active Learning, Evidence Based Practice
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Shwartz, Gabriella; Shav-Artza, Or; Dori, Yehudit Judy – Journal of Science Education and Technology, 2021
In response to the realization that qualified applicants' choice of a career in chemistry is declining, we investigated the factors involved in chemistry and chemical education career choice. Building on the social cognitive theory (SCT) and the social cognitive career theory (SCCT), this research examines the personal, environmental, and…
Descriptors: Chemistry, Career Choice, Science Careers, Teaching (Occupation)
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Algarni, Norah A.; Alahmad , Nidhal Sh. – Journal of Baltic Science Education, 2023
Understanding nature of science (NOS) is a fundamental goal in science education standards. Due to the role of specialised and educational teachers' preparation programmes in developing their NOS concepts, this study aims to identify views on NOS and attitudes toward teaching NOS among Saudi undergraduate chemistry students and the differences…
Descriptors: Foreign Countries, Scientific Principles, Chemistry, College Science
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Busby, Brittany D.; Harshman, Jordan – Chemistry Education Research and Practice, 2021
The goal of graduate education has consistently been to produce independent scientists who can advance the knowledge of their fields, which has led to a series of staple elements in graduate components (i.e. research, courses, seminars, etc.) However, criticisms of graduate education in chemistry have been raised, stating that the current…
Descriptors: College Science, Doctoral Students, Chemistry, Professional Development
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Teo, Tang Wee; Tan, Yong Leng Kelvin – Cultural Studies of Science Education, 2020
The science laboratory is a politically entrenched space where complex power relations interplay while social agents learn about the rules and routines to ensure safety, precision and reproducibility in research work. This paper presents a case study of two Singaporean students undergoing apprenticeship in a 3-year school-based School Scientist…
Descriptors: Foreign Countries, Power Structure, Science Laboratories, Apprenticeships
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Calvert, Ryan D.; Crawford, Ciera R.; Running, Cordelia A. – Journal of Food Science Education, 2020
Properly made solutions are critical to the scientific method. However, in various laboratories and collaborative environments, we have noticed a lack of proper technique for making solutions. Instead of measuring the moles of solute then filling up to the needed volume with solvent, we observed many individuals would measure the moles of solute…
Descriptors: Scientists, Science Process Skills, Scientific Methodology, Chemistry
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Pence, Harry E.; Pence, Laura E. – Journal of Chemical Education, 2022
Nationally, as the chemical community aspires to become more diverse, it is essential to make students of all races, ethnicities, gender expressions, and physical abilities feel welcomed and represented in the introductory courses in the field. One way to accomplish this goal is to present examples of scientists who are not traditionally included…
Descriptors: Chemistry, Introductory Courses, College Science, Diversity
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