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Tanino, Yukie; Syed, Amer – Education Sciences, 2019
We designed a hands-on laboratory exercise to demonstrate why injecting an aqueous polymer solution into an oil reservoir (commonly known as "polymer flooding") enhances oil production. Students are split into three groups of two to three. Each group is assigned to a packed Hele-Shaw cell pre-saturated with oil, our laboratory model of…
Descriptors: Physics, Science Instruction, Plastics, Fuels
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Houben, Sofie; Quintens, Greg; Pitet, Louis M. – Journal of Chemical Education, 2020
Polymer materials are indispensable in our daily lives. This makes polymer technology of critical importance in higher education. In particular, hands-on experiment-based practicals/laboratories with a focus on polymer science are of tremendous value in the undergraduate curriculum. Along these lines, hydrogels are highly cross-linked polymer…
Descriptors: Plastics, Science Laboratories, Science Instruction, Chemistry
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Obaya-Valdivia, A.; López Acosta, D.; Montaño Osorio, C.; Vargas-Rodríguez, Y. M. – Online Submission, 2023
This study presents the design and application of a didactic sequence aimed at enhancing high school students understanding of recyclable plastic polymers. The proposed teaching strategy incorporates cooperative learning activities to identify different types of plastics, particularly recyclable ones. The goal is to increase student's scientific…
Descriptors: Recycling, Plastics, High School Students, Teaching Methods
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Croisant, Michael; Bretz, Stacey Lowery; Konkolewicz, Dominik – Journal of Chemical Education, 2019
The ACS Guidelines for bachelor's degrees in chemistry call for the curriculum to include polymer chemistry principles and the synthesis of different classes of macromolecules. Organic chemistry can provide an important introduction to polymer chemistry principles, and photochemically induced radical polymerization is one method for generating…
Descriptors: Chemistry, Science Instruction, Inquiry, Discovery Learning
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Allred, Ashley; Holland, Joseph S.; Shupert, Avery G.; Konzelman, Jim; Huddleston, N. Eric – Journal of Chemical Education, 2020
A laboratory exercise for the synthesis of a sulfonated styrene-"co"-maleic anhydride polymer and its application as a stain blocker on nylon-6,10, is described. The effectiveness of the sulfonated polymer to prevent the conjugate base of an acid dye from staining the polyamide is demonstrated. This experiment is designed for…
Descriptors: College Science, Science Instruction, Undergraduate Study, Organic Chemistry
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Ting, Jeffrey M.; Ricarte, Ralm G.; Schneiderman, Deborah K.; Saba, Stacey A.; Jiang, Yaming; Hillmyer, Marc A.; Bates, Frank S.; Reineke, Theresa M.; Macosko, Christopher W.; Lodge, Timothy P. – Journal of Chemical Education, 2017
We present a collection of hands-on experiments that collectively teach precollege students fundamental concepts of polymer synthesis and characterization. These interactive experiments are performed annually as part of an all-day outreach event for high school students that can inform the development of ongoing polymer education efforts in a…
Descriptors: Science Instruction, Chemistry, Plastics, Science Experiments
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Cheng, H. N.; Howell, Bob A. – Journal of Chemical Education, 2017
Polymer nomenclature is important because it is part of the language of polymer science and is needed for polymer identification, reference, and documentation. A primer on polymer nomenclature is provided herein for people new to the field or for instructional use. Both structurebased and source-based nomenclatures, together with trivial and trade…
Descriptors: Chemistry, Scientific Concepts, Undergraduate Students, Graduate Students
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Flores-Morales, Patricio; Campos-Requena, Víctor H.; Gatica, Nicolás; Muñoz, Carla; Pérez, Mónica A.; Rivas, Bernabe´ L.; Sánchez, Susana A.; Suwalsky, Mario; Tapiero, Yesid; Urbano, Bruno F. – Journal of Chemical Education, 2017
Polymers are part of our lives; scientists dedicated to polymer science design new materials thinking about more eco-friendly methodologies and satisfying people's needs. In most universities, polymer science is taught by academics associated with the traditional chemistry departments (organic, analytical, physical, and inorganic chemistry). In…
Descriptors: Foreign Countries, Chemistry, College Science, Science Instruction
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Mancheño, María José; Royuela, Sergio; de la Peña, A.; Ramos, Mar; Zamora, Félix; Segura, José L. – Journal of Chemical Education, 2019
In order to introduce the concept of covalent organic frameworks (COFs), an important class of predictable crystalline porous polymers, an integrated laboratory experiment for advanced organic chemistry students is reported. The importance of these kind of polymers and their multiple applications are presented as a part of key concepts in polymer…
Descriptors: Science Instruction, Organic Chemistry, Science Laboratories, Spectroscopy
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de Lill, Daniel T.; Carraher, Charles E., Jr. – Journal of Chemical Education, 2017
Inorganic polymers can be introduced in a variety of undergraduate courses to discuss concepts related to polymer chemistry. Inorganic polymers such as silicates and polysiloxanes are simple materials that can be incorporated into an introductory or descriptive inorganic course. Polymers based on inorganic carbon, including diamond and graphite,…
Descriptors: Undergraduate Study, Concept Teaching, Scientific Concepts, Inorganic Chemistry
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Chan, Chin Han; Fellows, Christopher M.; Hess, Michael; Hiorns, Roger; Hoven, Voravee P.; Russell, Gregory T.; dos Santos, Cla´udio G.; S?turcova´, Adriana; Theato, Patrick – Journal of Chemical Education, 2017
Polymer education relies on generally agreed terminology and nomenclature rules. The Polymer Division of the International Union of Pure and Applied Chemistry (IUPAC) generates and recommends such rules for naming processes and materials in polymer science. It is the goal of IUPAC that these recommendations be applied in polymer science curricula…
Descriptors: Plastics, Science Education, Chemistry, Academic Standards
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Carraher, Charles E., Jr.; Berda, Erik; Blum, Frank D.; Droske, John P.; Ford, Warren T.; Howell, Bob A.; Long, John M.; Morgan, Sarah E. – Journal of Chemical Education, 2017
The Committee on Polymer Education (PolyEd) had its initial planning meeting in 1974. The Intersociety Polymer Education Council (IPEC) has been active since 1990 as an outgrowth of PolyEd. Because of the activities of PolyEd and IPEC, basic polymer concepts have become a required part of undergraduate education and a more common topic in the…
Descriptors: Science History, Science Education, College Science, Undergraduate Students
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Wanamaker, Carolyn L.; Neff, Brittany S.; Nejati-Namin, Azieta; Spatenka, Erin R.; Yang, Mong-Lin – Journal of Chemical Education, 2019
The importance of understanding factors that contribute to surface wettability is highlighted in this new organic chemistry laboratory experiment, which aims to introduce the application of organic chemistry at the interface of polymer chemistry and material science. Polydimethylsiloxane (PDMS), a hydrophobic silicon-based rubber, is polymerized…
Descriptors: Organic Chemistry, Science Instruction, College Science, Undergraduate Study
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Ploeger, Rebecca – Journal of Chemical Education, 2018
Polymer chemistry is an integral part of art conservation graduate training programs. The list of materials used by artists and artisans and by conservators is vast, with the majority being polymeric in nature. Conservators use an array of polymers as coatings, adhesives, fills, supports, and structures. Aside from the chemistry of these…
Descriptors: Chemistry, Art Products, Scientific Concepts, Science Laboratories
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Enlow, Jessica L.; Marin, Dawn M.; Walter, Michael G. – Journal of Chemical Education, 2017
To improve polymer education for 9-12 and undergraduate students, a plastic electronics laboratory kit using polymer semiconductors has been developed. The three-module kit and curriculum use polymer semiconductors to provide hands-on inquiry activities with overlapping themes of electrical conductivity, light emission, and light-harvesting solar…
Descriptors: STEM Education, Electronics, Hands on Science, Inquiry
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