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Pulliam, Curtis R.; Pfeiffer, William F.; Thomas, Alyssa C. – Journal of Chemical Education, 2015
This paper describes a first-year general chemistry laboratory that uses NMR spectroscopy and model building to emphasize molecular shape and structure. It is appropriate for either a traditional or an atoms-first curriculum. Students learn the basis of structure and the use of NMR data through a cooperative learning hands-on laboratory…
Descriptors: Chemistry, Science Instruction, College Science, Cooperative Learning
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Snider, Barry B. – Journal of Chemical Education, 2015
In this experiment, students carry out a modern organocatalytic reaction using IMes·HCl and NaOH to catalyze the formation of 1,3,4-triphenylcyclopentene from cinnamaldehyde and chalcone in water. Deprotonation of IMes·HCl with NaOH forms the "N"-heterocyclic carbene IMes that reacts with cinnamaldehyde to form a homoenolate equivalent…
Descriptors: Science Instruction, Science Experiments, Scientific Concepts, College Science
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Eggen, Per-Odd; Skaugrud, Brit – Journal of Chemical Education, 2015
The galvanic cell presented in this article is made of only three parts, is easy to assemble, and can light a red light emitting diode (LED). The three cell components consist of a piece of paper with copper sulfate, a piece of paper with sodium sulfate, and a piece of magnesium ribbon. Within less than 1 h, students have time to discuss the…
Descriptors: Science Instruction, Chemistry, Secondary School Science, Hands on Science
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Greenwolfe, Matthew L. – Physics Teacher, 2015
In a Montessori preschool classroom, students work independently on tasks that absorb their attention in part because the apparatus are carefully designed to make mistakes directly observable and limit exploration to one aspect or dimension. Control of error inheres in the apparatus itself, so that teacher intervention can be minimal. Inspired by…
Descriptors: Robotics, Mechanics (Physics), Preschool Children, Preschool Education
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Giri, Basant; Peesara, Ravichander R.; Yanagisawa, Naoki; Dutta, Debashis – Journal of Chemical Education, 2015
Implementing enzyme-linked immunosorbent assays (ELISA) in microchannels offers several advantages over its traditional microtiter plate-based format, including a reduced sample volume requirement, shorter incubation period, and greater sensitivity. Moreover, microfluidic ELISA platforms are inexpensive to fabricate and allow integration of…
Descriptors: Undergraduate Students, Laboratory Experiments, Learning Modules, Program Implementation
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Lu, Xu; Anariba, Franklin – Journal of Chemical Education, 2014
A hands-on activity based on general electrochemistry concepts with the aim at introducing design science elements is presented. The main goals of the activity are to reinforce electrochemical principles while fostering innovation in the students through the assembly and optimization of a voltaic device and subsequent evaluation by powering…
Descriptors: Chemistry, Science Education, Hands on Science, Science Activities
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Roman, Harry T. – Technology and Engineering Teacher, 2014
A serious drawback to electric vehicles [batteries only] is the idle time needed to recharge their batteries. In this challenge, students can develop ideas and concepts for battery change-out at automotive service stations. Such a capability would extend the range of electric vehicles.
Descriptors: Motor Vehicles, Auto Mechanics, Power Technology, Energy Education
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English, Vincent – Education in Science, 2014
EngineeringUK estimates that the UK will require 87,000 new engineers a year over the next ten years. However, with skills shortages threatening to derail the UK's engineering industry, it is clear that immediate action needs to be taken if this quota is to be met. In this article, Vincent English, managing director of Vernier Europe, offers his…
Descriptors: Engineering Education, Science Interests, Student Interests, Children
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Lazarowitz, Reuven; Naim, Raphael – Journal of Science Education and Technology, 2014
The cell topic was taught to 9th-grade students in three modes of instruction: (a) students "hands-on," who constructed three-dimensional cell organelles and macromolecules during the learning process; (b) teacher demonstration of the three-dimensional model of the cell structures; and (c) teaching the cell topic with the regular…
Descriptors: Cytology, Grade 9, Science Instruction, Hands on Science
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Hodson, Derek – International Journal of Science Education, 2014
This opinion piece paper urges teachers and teacher educators to draw careful distinctions among four basic learning goals: learning science, learning about science, doing science and learning to address socio-scientific issues. In elaboration, the author urges that careful attention is paid to the selection of teaching/learning methods that…
Descriptors: Science Instruction, Learning Strategies, Teaching Methods, Inquiry
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Kao, Robert M. – American Biology Teacher, 2014
A major challenge in teaching organ development and disease is deconstructing a complex choreography of molecular and cellular changes over time into a linear stepwise process for students. As an entry toward learning developmental concepts, I propose two inexpensive hands-on activities to help facilitate learning of (1) how to identify defects in…
Descriptors: Human Body, Science Instruction, Hands on Science, Teaching Methods
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Prasa, Anthony R., Jr.; Del Guercio, Ryan – Technology and Engineering Teacher, 2016
Engineers are faced with solving important problems every day and must follow a step-by-step design process to arrive at solutions. Students who are taught an effective design process to apply to engineering projects begin to see problems as an engineer would, consider all ideas, and arrive at the best solution. Using an effective design process…
Descriptors: Engineering Education, Engineering, Secondary School Science, High School Students
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Cipolla, Laura; Ferrari, Lia A. – Journal of Chemical Education, 2016
A hands-on approach to introduce the chemical elements and the atomic structure to elementary/middle school students is described. The proposed classroom activity presents Bohr models of atoms using common and inexpensive materials, such as nested plastic balls, colored modeling clay, and small-sized pasta (or small plastic beads).
Descriptors: Molecular Structure, Models, Science Materials, Hands on Science
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Forbes-Lorman, Robin M.; Harris, Michelle A.; Chang, Wesley S.; Dent, Erik W.; Nordheim, Erik V.; Franzen, Margaret A. – Biochemistry and Molecular Biology Education, 2016
Understanding how basic structural units influence function is identified as a foundational/core concept for undergraduate biological and biochemical literacy. It is essential for students to understand this concept at all size scales, but it is often more difficult for students to understand structure-function relationships at the molecular…
Descriptors: Gender Differences, Models, Genetics, Undergraduate Students
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Selvarajah, Geeta; Selvarajah, Susila – Biochemistry and Molecular Biology Education, 2016
Students frequently expressed difficulty in understanding the molecular mechanisms involved in chromosomal recombination. Therefore, we explored alternative methods for presenting the two concepts of the double-strand break model: Holliday junction and heteroduplex formation, and Holliday junction resolution. In addition to a lecture and…
Descriptors: Genetics, Molecular Structure, Scientific Concepts, Models
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