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Grober, S.; Jodl, H. -J. – European Journal of Physics, 2010
Problems are an important instrument for teachers to mediate physics content and for learners to adopt this content. This collection of problems is not only suited to traditional teaching and learning in lectures or student labs, but also to all kinds of new ways of teaching and learning, such as self-study, long-distance teaching,…
Descriptors: Physics, Teaching Methods, Science Instruction, Science Experiments
Salah, Hazzi; Dumon, Alain – Chemistry Education Research and Practice, 2011
This work aims to assess the difficulties encountered by students of the Ecole Normale Superieure of Kouba (Algeria) intending to teach physical science in the integration of the hybridization of atomic orbitals. It is a concept that they should use in describing the formation of molecular orbitals ([sigma] and [pi]) in organic chemistry and gaps…
Descriptors: Group Activities, Preservice Teachers, Organic Chemistry, Physical Sciences
Boyd-Kimball, Debra – Journal of Chemical Education, 2012
Adaptive tools and techniques for lecture instruction were developed for a blind student in a nonmajors college chemistry course. These adaptive instructional aids assisted the student in writing and balancing chemical reactions, calculating unit conversions and concentrations, drawing Lewis dot structures, understanding structural representations…
Descriptors: Chemistry, Nonmajors, Science Instruction, Blindness
Waner, Mark J. – Journal of Chemical Education, 2010
This work examines commonly used particulate-level pictures meant to illustrate gases. These pictures are found throughout textbooks in the middle grades through the college level, as well as in questions frequently used to assess conceptual learning in students. This work uses the kinetic-molecular theory of gases to demonstrate the inaccuracies…
Descriptors: Concept Teaching, Textbooks, Kinetics, Science Instruction
Blonder, Ron – Journal of Chemical Education, 2011
Nanoscience is an important new field in modern science. It deals with the ability to create materials, devices, and systems having fundamentally new properties and functions by working at the atomic, molecular, and macromolecular levels. Many teachers in the educational system have relatively limited knowledge related to nanochemistry and…
Descriptors: Foreign Countries, Molecular Structure, Technology, Interdisciplinary Approach
Ashkenaz, David E.; Hall, W. Paige; Haynes, Christy L.; Hicks, Erin M.; McFarland, Adam D.; Sherry, Leif J.; Stuart, Douglas A.; Wheeler, Korin E.; Yonzon, Chanda R.; Zhao, Jing; Godwin, Hilary A.; Van Duyne, Richard P. – Journal of Chemical Education, 2010
In this activity, students use a model created from a coffee cup or cardstock cutout to explore the working principle of an atomic force microscope (AFM). Students manipulate a model of an AFM, using it to examine various objects to retrieve topographic data and then graph and interpret results. The students observe that movement of the AFM…
Descriptors: Measurement Techniques, Science Instruction, Science Activities, Molecular Structure
Luzuriaga, J. – European Journal of Physics, 2010
The trajectories of the molecules in an ideal gas and of the ball in a soccer game are compared. The great difference between these motions and some similarities are discussed. This example could be suitable for discussing many concepts in kinetic theory in a way that can be pictured by students for getting a more intuitive understanding. It could…
Descriptors: Introductory Courses, Team Sports, Kinetics, Physics
Stieff, Mike – Journal of Research in Science Teaching, 2011
The present article discusses the design and impact of computer-based visualization tools for supporting student learning and representational competence in science. Specifically, learning outcomes and student representation use are compared between eight secondary classrooms utilizing The Connected Chemistry Curriculum and eight secondary…
Descriptors: Secondary School Science, Chemistry, Lecture Method, Computer Uses in Education
Gagnon, Michel – Physics Education, 2011
Mainly used in the 1960s, bubble chambers played a major role in particle physics. Now replaced with modern electronic detectors, we believe they remain an important didactic tool to introduce particle physics as they provide visual, appealing and insightful pictures. Sadly, this rare type of detector is mostly accessible through open-door events…
Descriptors: Simulation, Mechanics (Physics), Computer Software, Science Instruction
Kim, Heejoo; Chacko, Priya; Zhao, Jinhui; Montclare, Jin Kim – Journal of Chemical Education, 2014
As part of an outreach program, we integrated chemistry apps with blogging to enhance the learning experience of students in and outside the classroom. Our outreach program involved college mentors who participated in the development and implementation of chemistry lessons alongside the classroom teacher. Three technology-rich modules that focused…
Descriptors: Outreach Programs, High School Students, Student Interests, Chemistry
Davis, James; Leslie, Ray; Billington, Susan; Slater, Peter R. – Chemistry Education Research and Practice, 2010
The use of "Origami" is presented as an accessible and transferable modeling system through which to convey the intricacies of molecular shape and highlight structure-function relationships. The implementation of origami has been found to be a versatile alternative to conventional ball-and-stick models, possessing the key advantages of being both…
Descriptors: Chemistry, Visualization, Molecular Structure, Science Instruction
Wise, Alyssa; Schank, Patricia; Stanford, Tina; Horsma, Geri – Science Teacher, 2009
In this article, the authors provide a brief overview of the emerging field of nanoscience and why it is an important area of education. They next explain the science behind the new nanoparticulate sunscreens, describe the different elements of the unit, and reflect on some of the opportunities and challenges of teaching nanoscience at the high…
Descriptors: High Schools, Secondary School Science, Science Instruction, Scientific Principles
Eggen, Per-Odd – Journal of Chemical Education, 2009
This article describes the construction of an inexpensive, robust, and simple hydrogen electrode, as well as the use of this electrode to measure "standard" potentials. In the experiment described here the students can measure the reduction potentials of metal-metal ion pairs directly, without using a secondary reference electrode. Measurements…
Descriptors: Chemistry, Molecular Structure, Science Experiments, Science Instruction
Stains, Marilyne; Escriu-Sune, Marta; Alverez de Santizo, Myrna Lisseth Molina; Sevian, Hannah – Journal of Chemical Education, 2011
Development of learning progressions has been at the forefront of science education for several years. While understanding students' conceptual development toward "big ideas" in science is extremely valuable for researchers, science teachers can also benefit from assessment tools that diagnose their students' trajectories along the learning…
Descriptors: Content Validity, Predictive Validity, Interrater Reliability, Motion
Oguz, Ayse – Science Activities: Classroom Projects and Curriculum Ideas, 2009
In this activity, a possible problem related to global warming is clarified by the principle of states of water. The activity consists of an experiment that includes three scientific principles: Archimedes' Principle, the Law of Conservation of Matter, and the fluidity of liquids. The experiment helps students raise questions and open new horizons…
Descriptors: Scientific Principles, Climate, Water, Science Experiments