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Lucas, Krista L. – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2021
Molecular processes are highly complex, and are frequently difficult for high school and college students to comprehend. Because of the importance of visualization in learning, along with formative assessment of student understanding, utilization of 3D modeling software aids both educators and students alike. The activity described below required…
Descriptors: Molecular Biology, Science Instruction, Teaching Methods, Scientific Concepts
Van Rooy, Wilhelmina Sabina; Chan, Eveline – International Journal of Science and Mathematics Education, 2017
This paper investigates the use of multimodal representations to assess biological understanding in the final senior secondary school public examination in New South Wales, Australia. The investigation emanates from a larger Australian study concerned with the impact of disciplinary and technological innovations on science pedagogy, particularly…
Descriptors: Foreign Countries, Science Instruction, Secondary School Students, Secondary School Science
Caine, Massimo; Horié, Ninon; Zuchuat, Sandrine; Weber, Aurélia; Ducret, Verena; Linder, Patrick; Perron, Karl – Science Activities: Classroom Projects and Curriculum Ideas, 2015
More than 60 years have passed since the work of Rosalind Franklin, James Watson, and Francis Crick led to the discovery of the 3D-DNA double-helix structure. Nowadays, due to the simple and elegant architecture of its double helix, the structure of DNA is widely known. The biological role of the DNA molecule (e.g., genetic information), however,…
Descriptors: Science Instruction, Biology, Genetics, Hands on Science
Saucedo, Skyler R. – Physics Teacher, 2013
Gel electrophoresis, used by geneticists and forensic experts alike, is an immensely popular technique that utilizes an electric field to separate molecules and proteins by size and charge. At the microscopic level, a dye or complex protein like DNA is passed through agarose, a gelatinous three-dimensional matrix of pores and nano-sized tunnels.…
Descriptors: Physics, Secondary School Science, Science Instruction, High Schools
Rau, Gerald – Science Teacher, 2012
Molecular similarity is one of the strongest lines of evidence for evolution--and one of the most difficult for students to grasp. That is because the underlying observations--that identical mutations are found in closely related species and the degree of similarity decreases with evolutionary distance--are not visible to the human eye. And it's…
Descriptors: Evolution, Genetics, Molecular Structure, Scientific Concepts
Burian, Richard M. – Science & Education, 2013
This paper addresses the teaching of advanced high school courses or undergraduate courses for non-biology majors about genetics or history of genetics. It will probably be difficult to take the approach described here in a high school science course, although the general approach could help improve such courses. It would be ideal for a college…
Descriptors: Majors (Students), Genetics, War, Science Curriculum
Wu, Jen-Yi; Tung, Yu-Neng; Hwang, Bi-Chi; Lin, Chen-Yung; Che-Di, Lee; Chang, Yung-Ta – American Biology Teacher, 2014
Various sequences for teaching genetics have been proposed. Three seventh-grade biology textbooks in Taiwan share similar key knowledge assemblages but have different knowledge arrangements. To investigate the influence of knowledge arrangements on student understanding of genetics, we compared students' reading comprehension of the three texts…
Descriptors: Foreign Countries, Science Instruction, Grade 7, Reading Comprehension
Bybee, Rodger W. – Science Teacher, 2013
Using the life sciences, this article first reviews essential features of the "NRC Framework for K-12 Science Education" that provided a foundation for the new standards. Second, the article describes the important features of life science standards for elementary, middle, and high school levels. Special attention is paid to the teaching…
Descriptors: Biological Sciences, Biology, Science Education, Elementary School Science
Albayrak, Cem; Jones, K. C.; Swartz, James R. – Journal of Science Education and Technology, 2013
Cell-free protein synthesis (CFPS) has emerged as a practical method for producing a broad variety of proteins. In addition, the direct accessibility to the reaction environment makes CFPS particularly suitable as a learning vehicle for fundamental biological concepts. Here, we describe its implementation as a teaching tool for a high school…
Descriptors: Science Instruction, Secondary School Science, High School Students, Biotechnology
Piksööt, Jaanika; Sarapuu, Tago – Journal of Educational Computing Research, 2014
This study investigates ways to enhance secondary school students' knowledge transfer in complex science domains by implementing question prompts. Two samples of students applied two web-based models to study molecular genetics--the model of genetic code (n = 258) and translation (n = 245). For each model, the samples were randomly divided into…
Descriptors: Transfer of Training, Prompting, Questioning Techniques, Genetics
Ellefson, Michelle R.; Brinker, Rebecca A.; Vernacchio, Vincent J.; Schunn, Christian D. – Biochemistry and Molecular Biology Education, 2008
Gene expression is a difficult topic for students to learn and comprehend, at least partially because it involves various biochemical structures and processes occurring at the microscopic level. Designer Bacteria, a design-based learning (DBL) unit for high-school students, applies principles of DBL to the teaching of gene expression. Throughout…
Descriptors: Design, Genetics, Microbiology, Engineering
Milne, Christine; Roche, Scott; McKay, David – Teaching Science, 2008
Giving students the opportunity to extract, manipulate and visualise DNA molecules enhances a constructivist approach to learning about modern techniques in biology and biotechnology Visualisation usually requires agarose gel electrophoresis and staining. In this article, we report on an alternative DNA stain, Nile Blue A, that may be used in the…
Descriptors: Constructivism (Learning), Genetics, Biotechnology, Science Instruction
Rotbain, Yosi; Stavy, Ruth; Marbach-Ad, Gili – Science Education Review, 2008
Our main goal in this study was to explore whether the use of models in high school molecular genetics instruction can contribute to students' understanding of concepts and processes in genetics. Three hundred and nineteen students from four comparable groups of 11th- and 12th-grade students participated. The control group (116 students) was…
Descriptors: Molecular Structure, Models, High School Students, Genetics
Duncan, Ravit Golan; Reiser, Brian J. – Journal of Research in Science Teaching, 2007
In this article we apply a novel analytical framework to explore students' difficulties in understanding molecular genetics--a domain that is particularly challenging to learn. Our analytical framework posits that reasoning in molecular genetics entails mapping across ontologically distinct levels--an information level containing the genetic…
Descriptors: Grade 10, Genetics, Molecular Structure, Secondary School Science

Alusik, John – Science Activities, 1974
Describes how to construct a model of a DNA molecule with inexpensive materials. (BR)
Descriptors: Biological Sciences, Genetics, Instructional Materials, Models
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