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McKinney, Daniel – Science Teacher, 2020
Teaching the tools and concepts associated with modern physics can often be a daunting and difficult task for secondary science teachers. Classical physics is often perceived as intimidating and complex in its own right. Modern physics addressing quantum phenomena where Newtonian laws break down is even more abstract for learners. However,…
Descriptors: Teaching Methods, Science Instruction, Physics, Scientific Concepts
Tenzin, Sherab; Won, Mihye; Treagust, David – Science Teacher, 2022
Science diagrams are an integral part of science because they are an important means of conveying and visualizing abstract science content. In recent years, researchers have demonstrated the educational benefits of encouraging students to draw their own conceptual diagrams, rather than focusing on interpreting diagrams given to them. To help…
Descriptors: Science Instruction, Visual Aids, Freehand Drawing, Grade 9
Odom, Arthur L.; Bell, Clare V. – Science Teacher, 2019
In 1827, Robert Brown noticed pollen suspended in water bouncing around erratically. It wasn't until 1905 that Albert Einstein provided an acceptable explanation of the phenomenon (Kac 1947): Brownian motion is the random movement of particles (e.g., pollen) in a fluid (liquid or gas) as a result of collisions with atoms and molecules. Movement of…
Descriptors: Science Instruction, Molecular Structure, Motion, Scientific Concepts
Turner, Kenneth; Tevaarwerk, Emma; Unterman, Nathan; Grdinic, Marcel; Campbell, Jason; Chandrasekhar, Venkat; Chang, R. P. H. – Science Teacher, 2006
Nanoscience refers to the fundamental study of scientific phenomena, which occur at the nanoscale--nanotechnology to the exploitation of novel properties and functions of materials in the sub-100 nm size range. One of the underlying principles of science is development of models of observed phenomena. In biology, the Hardy-Weinberg principle is a…
Descriptors: Mechanics (Physics), Motion, Concept Formation, Biology

Pleacher, Michael – Science Teacher, 1998
Details a lesson that utilizes trigonometric identities to determine the optimal angle between the atoms of covalent bonds. Generates a proof of the optimal angle for a molecule with four identical atoms bonded to a central atom that has a complete valence shell. (DDR)
Descriptors: Chemistry, Concept Formation, Laboratory Procedures, Mathematics Activities

Stein, Mary; Miller, Delores – Science Teacher, 1998
Uses density to engage students in making quantitative observations that conflict with qualitative observations. Encourages discussion of the discrepancy thereby providing a natural means for student self-assessment and reflection. (DDR)
Descriptors: Concept Formation, Density (Matter), Energy, General Science
Lovrich, Deborah – Science Teacher, 2004
Scientists and students often believe that if they just think harder about a problem, a solution will follow. However, thinking about one's thinking, or using metacognition, can be a more productive expenditure of mental energy. Introducing students to metacognition allows them to discover the value of reflection. This article presents a lesson on…
Descriptors: Prior Learning, Stimuli, Metacognition, Information Processing