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Rafal Fran´ski – Journal of Chemical Education, 2024
The area of application of electrospray ionization mass spectrometry (ESI-MS), usually coupled with liquid chromatography, seems to be much larger than those of any other ionization method. It gives rise to the demand for new teaching methods that would effectively help students to master the principles of working with and making full use of the…
Descriptors: Science Instruction, Chemistry, Molecular Structure, Science Curriculum
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Bur, Scott K.; Pomerantz, William C. K.; Bade, Morgan L.; Gee, Clifford T. – Journal of Chemical Education, 2021
Curriculum-based undergraduate research experiences (CUREs) have been shown to increase student retention in STEM fields and are starting to become more widely adopted in chemistry curricula. Here we describe a 10-week CURE that is suitable for a second-semester organic chemistry laboratory course. Students synthesize small molecules and use…
Descriptors: Organic Chemistry, College Science, Undergraduate Students, Scientific Research
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Feldman-Maggor, Yael; Tuvi-Arad, Inbal; Blonder, Ron – International Journal of Science Education, 2022
Professional development courses help teachers integrate new content knowledge into the high-school curriculum. Designing practical online courses for this purpose is challenging, particularly in emerging fields such as nanotechnology. In this study, we evaluated such a course in three complementary dimensions: (1) knowledge, (2) the complexity of…
Descriptors: Curriculum Development, Course Evaluation, Online Courses, Technology
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Baji, Fatima; Haeusler, Carole – Research in Science Education, 2022
In common with many other countries, the Iranian science curriculum does not introduce primary children to atoms and molecules but instead leaves the teaching of these concepts until high school. This paper challenges this practice and describes the changes in elementary Iranian children's understanding of atoms and molecules following a 10-h…
Descriptors: Elementary School Students, Science Curriculum, Science Instruction, Scientific Concepts
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Fried, Daniel B.; Tinio, Pablo P. L.; Hughes, Azuri; Paneque, Diana – European Journal of Science and Mathematics Education, 2019
Studying nature from the atomic and molecular perspective gives students access to modern scientific paradigms and could improve achievement and motivation towards science learning. A visual and tactile approach to chemistry can form the foundation for a child-friendly but high-level chemistry curriculum and could be a powerful tool to invigorate…
Descriptors: Science Curriculum, Science Instruction, Molecular Structure, Student Motivation
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Türk, Gülseda Eyceyurt; Tüzün, Ümmüye Nur – Universal Journal of Educational Research, 2018
The purpose of this study was to uncover pre-service science teachers' images and misconceptions regarding atomic orbital and self-ionization concepts. This study involved a total of 68 pre-service science teachers working at a public university during the 2015-2016 academic year. In this qualitative study, data were collated with the use of…
Descriptors: Preservice Teachers, Science Curriculum, Misconceptions, Scientific Concepts
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Gray, Cynthia; Price, Carol W.; Lee, Christopher T.; Dewald, Alison H.; Cline, Matthew A.; McAnany, Charles E.; Columbus, Linda; Mura, Cameron – Biochemistry and Molecular Biology Education, 2015
Undergraduate biochemistry laboratory courses often do not provide students with an authentic research experience, particularly when the express purpose of the laboratory is purely instructional. However, an instructional laboratory course that is inquiry- and research-based could simultaneously impart scientific knowledge and foster a student's…
Descriptors: Undergraduate Students, Biochemistry, Science Laboratories, Inquiry
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Batiza, Ann; Luo, Wen; Zhang, Bo; Gruhl, Mary; Nelson, David; Hoelzer, Mark; Ning, Ling; Roberts, Marisa; Knopp, Jonathan; Harrington, Tom; LaFlamme, Donna; Haasch, Mary Anne; Vogt, Gina; Goodsell, David; Marcey, David – Society for Research on Educational Effectiveness, 2016
The SUN approach to biological energy transfer education is fundamentally different from past practices that trace chemical and energy inputs and outputs. The SUN approach uses a hydrogen fuel cell to convince learners that electrons can move from one substance to another based on differential attraction. With a hydrogen fuel cell, learners can…
Descriptors: Teaching Methods, Biology, Fuels, Scientific Concepts
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Howell, Bob A. – Journal of Chemical Education, 2017
The impact of polymeric materials on the well-being of citizens of the modern world is enormous. These materials enhance virtually every facet of life--from clothing and personal care items to housing and transportation. Yet despite this, and the fact that most chemists work in a polymer or polymer-related area, polymeric materials have…
Descriptors: Chemistry, Science Education, Molecular Structure, Undergraduate Students
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Martini, Sheridan R.; Hartzell, Cynthia J. – Journal of Chemical Education, 2015
Computational chemistry is commonly addressed in the quantum mechanics course of undergraduate physical chemistry curricula. Since quantum mechanics traditionally follows the thermodynamics course, there is a lack of curricula relating computational chemistry to thermodynamics. A method integrating molecular modeling software into a semester long…
Descriptors: Science Instruction, Chemistry, Quantum Mechanics, College Science
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Stowe, Ryan L.; Herrington, Deborah G.; McKay, Robert L.; Cooper, Melanie M. – Journal of Chemical Education, 2019
Connecting the behavior of invisible (to the naked eye) particles governed by the principles of quantum mechanics to the world we can see and touch requires a host of inferences, almost none of which can be extrapolated from experience. Molecular-level sensemaking thus relies upon intellectual resources that must be developed in large part by…
Descriptors: Chemistry, Science Curriculum, High School Students, Standards
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Cheng, Maurice M. W.; Gilbert, John K. – International Journal of Science Education, 2017
This paper proposes a model-based notion of "submicro representations of chemical reactions". Based on three structural models of matter (the simple particle model, the atomic model and the free electron model of metals), we suggest there are two major models of reaction in school chemistry curricula: (a) reactions that are simple…
Descriptors: Science Instruction, Chemistry, Scientific Concepts, Models
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Fages, Volny; Albe, Virginie – Cultural Studies of Science Education, 2015
This paper proposes a study of the various ways in which social and ethical issues are integrated in the curricula of nanoscience and nanotechnology master degrees. During the last decade, new types of courses have appeared in science and technology universities, first in the United States and now reaching Europe and France, associating a call for…
Descriptors: Science Education, Science and Society, Molecular Structure, Technology
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Gencer, Ayse Savran; Dogan, Hilmi; Bilen, Kadir – Turkish Journal of Education, 2020
The theme that structure determines function is one of the most significant cornerstones in understanding natural sciences. On the other hand, recently revised science curriculum in Turkey has emphasized science and engineering practices to help students be able to converge science with the other disciplines by applying theory into practice and…
Descriptors: STEM Education, Teaching Methods, Case Studies, Grade 5
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Underwood, Sonia M.; Reyes-Gastelum, David; Cooper, Melanie M. – Chemistry Education Research and Practice, 2016
The ability to use a chemical structure to predict and explain phenomenon is essential to a robust understanding of chemistry; however, previous research has shown that students find it difficult to make the connection between structure and properties. In this study we examine how student recognition of the connections between structure and…
Descriptors: Molecular Structure, Science Instruction, Prediction, Science Curriculum
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