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Russo, Daniel V.; Burek, Michael J.; Iutzi, Ryan M.; Mracek, James A.; Hesjedal, Thorsten – European Journal of Physics, 2011
The teaching of the different aspects of a sensor system, with a focus on the involved nanotechnology, is a challenging, yet important task. We present the development of an electronic nose system that utilizes a nanoscale amperometric sensing mechanism for gas mixtures. The fabrication of the system makes use of a basic microfabrication facility,…
Descriptors: Olfactory Perception, Manufacturing, Technology, Fuels
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Sanders, Wesley C.; Iles, Peter; Valcarce, Ron; Salisbury, Kyle; Johnson, Glen; Lines, Aubry; Meyers, John; Page, Cristofer; Vanweerd, Myles; Young, Davies – Journal of Chemical Education, 2018
This paper describes a laboratory exercise used to address the ongoing need for nanotechnology-related, hands-on laboratory experiences for undergraduate students. Determination of the electrochemical behavior of student-fabricated silver nanogrids is reported. Students successfully used cyclic voltammetry to analyze silver nanogrids printed using…
Descriptors: Laboratory Experiments, Hands on Science, Undergraduate Students, Printing
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Osler, James Edward, II – Journal on Educational Psychology, 2021
In this narrative, a detailed model for trichotomously positive [or "Tripositive"] "Nanobiogenic Technology™" (as "dynamic nanobiotechnology") is presented via research-based case studies. The author implemented the Biosmart Nanobiogenic Technology™(or "Biosmart Nanobiotechnology") designed to create a…
Descriptors: Educational Environment, High Schools, Undergraduate Study, Home Schooling
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Kondratowicz, Izabela; Nadolska, Malgorzata; Z?elechowska, Kamila – Journal of Chemical Education, 2018
Novel carbon nanomaterials such as reduced graphene oxide (rGO) and graphene oxide (GO) can be easily incorporated into the undergraduate curriculum to discuss basic chemistry and nanotechnology concepts. This paper describes a laboratory experiment designed to study the differences between GO and rGO regarding their physicochemical properties…
Descriptors: Science Instruction, Undergraduate Study, College Science, Interdisciplinary Approach
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Murcia, Karen – Teaching Science, 2013
Nanotechnology is guided by the assumption that with the ability to shape or re-shape at the molecular level, we could manipulate the physical world. Some speculate that this ability will be the beginning of the next technological revolution. Hence, an aim of secondary science education should be the development of scientifically literate citizens…
Descriptors: Secondary School Students, Student Attitudes, Science Curriculum, Curriculum Development
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Aftenieva, Olha; Schletz, Daniel; Meyer, Antonia; Ku¨hne, Tino; Schmalzriedt, Sierk; Niethammer, Manuela; Ko¨nig, Tobias A. F. – Journal of Chemical Education, 2021
In contrast to a macroscopic solid, the color and spectroscopic properties of gold nanoparticles change with size. Here, we propose a teaching platform for high school students (hereafter defined as students, attending secondary school in Europe, preparatory high schools in the US, or any educational institution of a comparable level) that…
Descriptors: Science Instruction, Metallurgy, Color, High School Students
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Ernst, Jeremy V. – Journal of Technology Studies, 2009
Nanotechnology is a multidisciplinary field of research and development identified as a major priority in the United States. Progress in science and engineering at the nanoscale is critical for national security, prosperity of the economy, and enhancement of the quality of life. It is anticipated that nanotechnology will be a major transitional…
Descriptors: Technology, Molecular Structure, Interdisciplinary Approach, Quality of Life
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Stavrou, Dimitris; Michailidi, Emily; Sgouros, Giannis – Chemistry Education Research and Practice, 2018
Introducing Nanoscience and Nanotechnology (NST) topics into school science curricula is considered useful for an in-depth understanding of the content, processes and nature of science and technology, and also for negotiating the social aspects of science. This study examines (a) the development of an inquiry-based Teaching-Learning Sequence (TLS)…
Descriptors: Sequential Learning, Chemistry, Models, Communities of Practice
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Lin, Shu-Fen; Lin, Huann-shyang; Wu, Yi-ying – Journal of Science Education and Technology, 2013
The purposes of this study were to develop instruments that assess public knowledge of nanotechnology (PKNT), public attitudes toward nanotechnology (PANT) and conduct a pilot study for exploring the relationship between PKNT and PANT. The PKNT test was composed of six scales involving major nanotechnology concepts, including size and scale,…
Descriptors: Molecular Structure, Technology, Interdisciplinary Approach, Scientific Attitudes
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Schneider, Elia M.; Bärtsch, Amadeus; Stark, Wendelin J.; Grass, Robert N. – Journal of Chemical Education, 2019
A simple synthesis of fluorescent carbon quantum dots from lemon juice is described to introduce advanced high-school students and undergraduate college students to nanoparticle synthesis and quantum dots. The synthesis is based on the carbonization of lemon juice using only a hot plate stirrer. Column chromatography is used to separate different…
Descriptors: Science Instruction, Teaching Methods, High School Students, Foreign Countries
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Kenayathulla, Husaina Banu – Higher Education Quarterly, 2021
Currently, we are at the beginning of the Fourth Industrial Revolution, where the rapid developments in genetics, artificial intelligence, robotics, nanotechnology, 3D printing and biotechnology are growing rapidly. It is expected that the majority of the children entering primary school today might end up working in jobs that do not yet exist. In…
Descriptors: Foreign Countries, Vocational Education, Employment Qualifications, Job Skills
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Sahin, Nurettin; Ekli, Emel – International Journal of Technology and Design Education, 2013
The present study investigates awareness, factual knowledge, opinions, and risk perceptions of students from Turkish middle schools with regard to nanotechnology in a very general sense. The study was carried out among 1,396 middle school 6th, 7th, and 8th grade students. The students' perceptions of and opinions about nanotechnology were elicited…
Descriptors: Foreign Countries, Middle Schools, Technology, Risk
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Blatti, Jillian L.; Garcia, John; Cave, Danyal; Monge, Felix; Cuccinello, Anthony; Portillo, Jennifer; Juarez, Betsy; Chan, Ellen; Schwebel, Frieda – Journal of Chemical Education, 2019
Systems thinking, interdisciplinary research projects, and creative problem solving are ways to frame modern chemistry curricula to inspire the next generation of scientists, engineers, teachers, and citizens to use their skills and education to create a sustainable future. By integrating planetary boundaries, green chemistry, and the UN…
Descriptors: Systems Approach, Science Education, Outreach Programs, Sustainability
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Orbaek, Alvin W.; McHale, Mary M.; Barron, Andrew R. – Journal of Chemical Education, 2015
The aim of this simple, quick, and safe laboratory exercise is to provide undergraduate students an introduction to nanotechnology using nanoparticle (NP) synthesis. Students are provided two procedures that allow for the synthesis of different yet controlled sizes of silver NPs. After preparing the NPs, the students perform UV-visible…
Descriptors: College Science, Science Instruction, Undergraduate Study, Science Laboratories
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Sanders, Wesley C.; Johnson, Glen; Valcarce, Ron; Iles, Peter; Fourt, Hunter; Drystan, Kyne; Edwards, Dakota; Vernon, Jarom; Ashworth, Spencer; Barucija, Amar; Curtis, Zachary – Journal of Chemical Education, 2019
A new experiment for use in introductory nanotechnology courses is described. This experiment allows students to fabricate metallic wires with microscale lateral dimensions and nanoscale vertical dimensions. Fabrication occurs in the capillaries of polydimethylsiloxane (PDMS) stamps modified with hydrophilic polymers. This experiment provides…
Descriptors: Introductory Courses, Molecular Structure, Technology, Laboratory Experiments
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