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Xing Yang; Huixin Tan; Mengjiao Yuan; Yan Zhou; Meixia Cao; Hongyang Zhang; Ping Hu; Min Zhang – Journal of Chemical Education, 2022
The chirality of chemicals is a well-known concept among undergraduates. The examples of chiral molecules in daily life are introduced to high school students as well. However, the chirality of single-walled carbon nanotubes (SWCNTs) remains unpopular in these groups. In this paper, a simple visualization of SWCNTs was first performed via paper…
Descriptors: High School Students, Undergraduate Students, Science Projects, Chemistry
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Alan Chant; Christina M. Kraemer-Chant – Journal of Chemical Education, 2024
Colleges throughout the United States typically expect their students to take at least one course in the sciences to fulfill liberal studies curriculum requirements. For nonscience majors, the choice of science class can include introductory chemistry, introductory biology, and astronomy, among others. Based upon interactions both in and out of…
Descriptors: Liberal Arts, Science Education, Learning Strategies, College Science
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Bertram Schmidkonz – Journal of Chemical Education, 2022
Simple, often artificial problems are normally preferred for introductory lab courses and are restricted to indoor participation. Microtitrations make it possible to leave the lab and study water chemistry directly in the natural environment. An exemplary outdoor challenge is presented here: travertine formation is context-rich, has to be examined…
Descriptors: Inorganic Chemistry, Laboratory Experiments, Outdoor Education, Science Instruction
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Chun Wang; Hepei Jiang; Yanjie Wu; Jing Hou; Zhangbin Su; Yiling Lin; Rongxian Zhang – Journal of Chemical Education, 2022
In the face of an increasingly severe global climate change situation, carbon neutrality initiatives have been included in the development action plans of many countries around the world. The carbon neutrality vision will also accelerate the revolution in the energy systems of countries around the world, injecting new vitality into the upgrading…
Descriptors: Instructional Design, Science Instruction, Science Education, Active Learning
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Bogucki, Ryan; Greggila, Mary; Mallory, Paul; Feng, Jiansheng; Siman, Kelly; Khakipoor, Banafsheh; King, Hunter; Smith, Adam W. – Journal of Chemical Education, 2019
Low cost, open-source analytical instrumentation has the potential to increase educational outcomes for students and enable large-scale citizen science projects. Many of these instruments rely on smartphones to collect the data, mainly because they can effectively leverage a dramatic price-to-performance ratio of the optical sensors. However,…
Descriptors: Telecommunications, Handheld Devices, Science Instruction, Chemistry
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Ramm, Julia G.; Dorscheid, Gabryel L.; Passos, Camila. G.; Sirtori, Carla – Journal of Chemical Education, 2018
The general objective of this study was to analyze the development and implementation process of a waste management project (WMP) at a public school in the city of Porto Alegre in the state of Rio Grande do Sul, Brazil, that offers a course for chemistry technicians. To that end, an initial diagnostic analysis of the commonly produced waste from…
Descriptors: Program Development, Wastes, Sanitation, Science Instruction
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Kennedy, Sarah A. – Journal of Chemical Education, 2016
The green chemistry course taught at Westminster College (PA) incorporates nontraditional teaching techniques and texts to educate future chemists about the importance of using green chemistry principles. The course is designed to introduce green chemistry concepts and demonstrate their inherent necessity by discussing historical missteps by the…
Descriptors: Instructional Design, Undergraduate Students, Environmental Education, Chemistry
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Kim, Kris S.; Rackus, Darius G.; Mabury, Scott A.; Morra, Barbora; Dicks, Andrew P. – Journal of Chemical Education, 2017
The Chemistry Teaching Fellowship Program (CTFP) is offered to graduate students and postdoctoral researchers at the University of Toronto as an opportunity to undertake curriculum development and chemistry education research. Projects are run with faculty supervision and focus on designing new laboratory activities, lectures, tutorials,…
Descriptors: Chemistry, Fellowships, Graduate Students, Curriculum Development
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Tsaparlis, Georgios; Gorezi, Marianna – Journal of Chemical Education, 2007
Students should enjoy their laboratory classes and for this purpose a project-based activity is added to a conventional physical chemistry laboratory. Students were given project work instead of conventional experiment and then they had to make progress in the project according to instructions and then carry out experiments related to the project.
Descriptors: Chemistry, Student Projects, Science Projects, Laboratory Experiments
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Kvittingen, Lise; Verley, Richard – Journal of Chemical Education, 2004
A construction of a simple gas apparatus that can be made by students either in the laboratory or the classroom, is presented. The components needed to construct the apparatus are disposable polythene pipets and polypropene microcentrifuge tubes.
Descriptors: Chemistry, Science Projects, Science Instruction, Science Equipment
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Woodfield, Brian F.; Catlin, Heidi R.; Waddoups, Gregory L.; Moore, Melissa S.; Swan, Richard; Bodily, Greg; Allen, Rob – Journal of Chemical Education, 2004
Virtual ChemLab project is an instructional laboratory involved in providing a practical experience by connecting the theory and laboratory practicals, teaching laboratory techniques and teaching the cognitive processes. This lab provides the students with the freedom to explore, repeat the procedures again, focuses on the underlying principles of…
Descriptors: Science Projects, Science Instruction, Inorganic Chemistry, Science Laboratories
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Ramos, Maria Joao; Fernandes, Pedro Alexandrino; Melo, Andre – Journal of Chemical Education, 2004
An extensive description of the Modeling Chemical and Biological Systems study organized in different practical projects is presented. The course has a highly favorable effect on students, who make perfect presentations, and it also encourages more students to join the course.
Descriptors: Teaching Methods, Chemistry, Biology, Science Instruction
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Arnold, William – Journal of Chemical Education, 1980
Discusses various methods the author has used in high school chemistry classes to maintain interest and keep grades at an acceptable standard. Integrated within the curriculum are research projects, library research, creative work, laboratory write-ups; a two-level curriculum is provided for nonscience and science majors. (CS)
Descriptors: Chemistry, Research Projects, Science Curriculum, Science Education
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Robertson, William B. – Journal of Chemical Education, 1979
Describes a chemistry program offered at East Mecklenburg High School in Charlotte, North Carolina. The philosophy underlying this program and its teaching techniques are also included. (HM)
Descriptors: Chemistry, Laboratory Techniques, Science Curriculum, Science Education
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Goodman, W. Daniel; Bean, John C. – Journal of Chemical Education, 1983
Describes a method for conducting a sophomore organic chemistry laboratory which included integrating projects with a writing task involving peer group interaction. Also includes background/theory, chemistry tasks, writing tasks, and evaluation. Included in appendices are an analytic worksheet and grading scale. (JN)
Descriptors: Chemistry, Cognitive Processes, College Science, Course Descriptions
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