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Shultz, Ginger V.; Gere, Anne Ruggles – Journal of Chemical Education, 2015
Traditional methods for teaching the Lewis dot structure model emphasize rule-based learning and often neglect the purpose and function of the model. Thus, many students are unable to extend their understanding of molecular structures in new contexts. The assignment described here addresses this issue by asking students to read and write about the…
Descriptors: Science Instruction, Chemistry, Teaching Methods, Scientists
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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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Pearce, Amy R.; Sale, Amanda Lovelace; Srivatsan, Malathi; Beck, Christopher W.; Blumer, Lawrence S.; Grippo, Anne A. – Bioscene: Journal of College Biology Teaching, 2013
We developed an inquiry-based biology laboratory exercise in which undergraduate students designed experiments addressing whether material from the neem tree ("Azadirachta indica") altered bean beetle ("Callosobruchus maculatus") movements and oviposition. Students were introduced to the bean beetle life cycle, experimental…
Descriptors: Biology, College Science, Inquiry, Active Learning
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Mayer, Kristin – Journal of Chemical Education, 2011
Much research has been published that describes the misconceptions students have about gases; however, not much research has been published that suggests how to change these misconceptions. The action research presented in this article examined how using laboratories to contradict students' preconceived ideas would affect their learning. High…
Descriptors: Action Research, Pretests Posttests, Science Laboratories, Misconceptions
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Deniz, Hasan – Journal of Science Education and Technology, 2011
This paper articulates the importance of epistemological beliefs (EBs) and draws a parallel between EBs literature in educational psychology and nature of science (NOS) literature in science education. The paper stresses that EBs in science and NOS ideas have common ground and they can be best improved through explicit-reflective instruction…
Descriptors: Educational Psychology, Scientific Principles, Science Education, Epistemology
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Kohnle, Antje; Mclean, Stewart; Aliotta, Marialuisa – European Journal of Physics, 2011
Understanding students' prior beliefs in nuclear physics is a first step towards improving nuclear physics instruction. This paper describes the development of a diagnostic survey in nuclear physics covering the areas of radioactive decay, binding energy, properties of the nuclear force and nuclear reactions, that was administered to students at…
Descriptors: Nuclear Physics, Test Construction, Misconceptions, Science Instruction
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Steinberg, Richard N.; Cormier, Sebastien; Fernandez, Adiel – Physical Review Special Topics - Physics Education Research, 2009
Common forms of testing of student understanding of science content can be misleading about their understanding of the nature of scientific thinking. Observational astronomy integrated with related ideas of force and motion is a rich context to explore the correlation between student content knowledge and student understanding of the scientific…
Descriptors: Astronomy, Cognitive Processes, High School Students, Scientific Literacy
Tannu, Kirti – Online Submission, 2008
To improve quality of science education, the author suggests use of entertaining and exciting technique of animation for better understanding of scientific principles. Latest technologies are being used with more vigour to spread venomous superstitions. Better understanding of science may help students to better their scientific temper. Keeping…
Descriptors: Animation, Computer Graphics, Scientific Principles, Computer Uses in Education
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Madihally, Sundararajan V.; Maase, Eric L. – Chemical Engineering Education, 2006
REACH (Reaching Engineering and Architectural Career Heights) is a weeklong summer academy outreach program for high school students interested in engineering, architecture, or technology. Through module-­based instruction, students are introduced to various engineering fields. This report describes one of the modules focused on introducing…
Descriptors: High School Students, Biomedicine, Chemical Engineering, Science Programs