NotesFAQContact Us
Collection
Advanced
Search Tips
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Showing 121 to 135 of 341 results Save | Export
Peer reviewed Peer reviewed
Direct linkDirect link
Span, Elise A.; Goodsell, David S.; Ramchandran, Ramani; Franzen, Margaret A.; Herman, Tim; Sem, Daniel S. – Biochemistry and Molecular Biology Education, 2013
A team of students, educators, and researchers has developed new materials to teach cell signaling within its cellular context. Two nontraditional modalities are employed: physical models, to explore the atomic details of several of the proteins in the angiogenesis signaling cascade, and illustrations of the proteins in their cellular environment,…
Descriptors: Science Instruction, Molecular Biology, Teaching Methods, Models
Peer reviewed Peer reviewed
Direct linkDirect link
Shlyonsky, Vadim – Advances in Physiology Education, 2013
In the present article, a novel model of artificial membranes that provides efficient assistance in teaching the origins of diffusion potentials is proposed. These membranes are made of polycarbonate filters fixed to 12-mm plastic rings and then saturated with a mixture of creosol and "n"-decane. The electrical resistance and potential…
Descriptors: Physiology, Molecular Structure, Models, Human Body
Auckaraaree, Nantaya – ProQuest LLC, 2013
Multiple models of the gene are used to explore genetic phenomena in scientific practices and in the classroom. In genetics curricula, the classical and molecular models are presented in disconnected domains. Research demonstrates that, without explicit connections, students have difficulty developing an understanding of the gene that spans…
Descriptors: Science Instruction, Teaching Methods, Genetics, Models
Peer reviewed Peer reviewed
Direct linkDirect link
Casas, Lluís; Estop, Euge`nia – Journal of Chemical Education, 2015
Both, virtual and printed 3D crystal models can help students and teachers deal with chemical education topics such as symmetry and point groups. In the present paper, two freely downloadable tools (interactive PDF files and a mobile app) are presented as examples of the application of 3D design to study point-symmetry. The use of 3D printing to…
Descriptors: Geometry, Models, Printing, Physical Sciences
Peer reviewed Peer reviewed
Direct linkDirect link
Ryan, Sheila; Herrington, Deborah G. – Journal of Chemical Education, 2014
Understanding what happens at the particulate level when ionic compounds dissolve in water is difficult for many students, yet this understanding is critical in explaining many macroscopic observations. This article describes a student-centered activity designed to help strengthen students' conceptual understanding of this process at the…
Descriptors: Chemistry, Science Activities, Science Instruction, Magnets
Peer reviewed Peer reviewed
Direct linkDirect link
Schiltz, Holly K.; Oliver-Hoyo, Maria T. – Journal of Chemical Education, 2012
Three physical model systems have been developed to help students deconstruct the visualization needed when learning symmetry and group theory. The systems provide students with physical and visual frames of reference to facilitate the complex visualization involved in symmetry concepts. The permanent reflection plane demonstration presents an…
Descriptors: Inorganic Chemistry, College Science, Science Instruction, Models
Peer reviewed Peer reviewed
Direct linkDirect link
Mohamed-Salah, Boukhechem; Alain, Dumon – Chemistry Education Research and Practice, 2016
This study aims to assess whether the handling of concrete ball-and-stick molecular models promotes translation between diagrammatic representations and a concrete model (or vice versa) and the coordination of the different types of structural representations of a given molecular structure. Forty-one Algerian undergraduate students were requested…
Descriptors: Foreign Countries, Undergraduate Students, Molecular Structure, Models
Peer reviewed Peer reviewed
Direct linkDirect link
Fedor, Anna M.; Toda, Megan J. – Journal of Chemical Education, 2014
The hydrogen bonding of phenol can be used as an introductory model for biological systems because of its structural similarities to tyrosine, a para-substituted phenol that is an amino acid essential to the synthesis of proteins. Phenol is able to form hydrogen bonds readily in solution, which makes it a suitable model for biological…
Descriptors: Spectroscopy, Chemistry, Science Education, Investigations
Peer reviewed Peer reviewed
Direct linkDirect link
Liguori, Lucia – Journal of Chemical Education, 2014
Atomic orbital theory is a difficult subject for many high school and beginning undergraduate students, as it includes mathematical concepts not yet covered in the school curriculum. Moreover, it requires certain ability for abstraction and imagination. A new atomic orbital model "the chocolate shop" created "by" students…
Descriptors: Elementary School Students, High School Students, Science Instruction, Elementary School Science
Peer reviewed Peer reviewed
Direct linkDirect link
Cohen, Joel I. – American Biology Teacher, 2014
A standard part of biology curricula is a project-based assessment of cell structure and function. However, these are often individual assignments that promote little problem-solving or group learning and avoid the subject of organelle chemical interactions. I evaluate a model-based cell project designed to foster group and individual guided…
Descriptors: Biology, Science Instruction, Cytology, Models
Peer reviewed Peer reviewed
Direct linkDirect link
Yawson, Robert M. – International Journal of Technology and Design Education, 2012
The need for a new literacy that will allow for meaningful participation in the rapidly evolving field of nanotechnology is very critical to national development. This need is important for nanotechnology to achieve its full potential. This paper describes and analyzes some contemporary philosophical interpretations of the concept of technological…
Descriptors: Scientific Literacy, Technological Literacy, Epistemology, Models
Peer reviewed Peer reviewed
Direct linkDirect link
Ng, Pun-hon; Wong, Siu-ling; Mak, Se-yuen – School Science Review, 2012
In teaching the science of the nano world, ball-and-stick molecular models are frequently used as 3D representations of molecules. Unlike a chemical formula, a molecular model allows us to visualise the 3D shape of the molecule and the relative positions of its atoms, the bonds between atoms and why a pair of mirror isomers with the same atoms,…
Descriptors: Chemistry, Toys, Science Instruction, Molecular Structure
Peer reviewed Peer reviewed
Direct linkDirect link
Larsson, Caroline; Tibell, Lena A. – Research in Science Education, 2015
A well-ordered biological complex can be formed by the random motion of its components, i.e. self-assemble. This is a concept that incorporates issues that may contradict students' everyday experiences and intuitions. In previous studies, we have shown that a tangible model of virus self-assembly, used in a group exercise, helps students to grasp…
Descriptors: Science Education, Biology, Scientific Concepts, Molecular Structure
Peer reviewed Peer reviewed
Direct linkDirect link
Mayer, Kristen; Damelin, Daniel; Krajcik, Joseph – Science Teacher, 2013
The "Next Generation Science Standards" ("NGSS") emphasizes content and scientific practices, but what does this actually look like in a classroom? The "NGSS" integrates scientific and engineering practices with core ideas and crosscutting concepts, merging the three dimensions from "A Framework for K-12 Science…
Descriptors: State Standards, Models, Teaching Methods, Science Activities
Peer reviewed Peer reviewed
Direct linkDirect link
Anderson, Bruce D. – Journal of Chemical Education, 2012
Many quantum mechanical models are discussed as part of the undergraduate physical chemistry course to help students understand the connection between eigenvalue expressions and spectroscopy. Typical examples covered include the particle in a box, the harmonic oscillator, the rigid rotor, and the hydrogen atom. This article demonstrates that…
Descriptors: Chemistry, Science Instruction, Quantum Mechanics, Mechanics (Physics)
Pages: 1  |  ...  |  5  |  6  |  7  |  8  |  9  |  10  |  11  |  12  |  13  |  ...  |  23