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Porter, Keri; Yokoi, Craig; Yee, Bertina – Science and Children, 2011
Along with inquiry-based teaching, exploring the elements of art can guide students to view and represent objects realistically. Understanding line, shape, color, value, form, space, and texture helps bridge the gap between what students actually observe and what their preconceived ideas about the object may be. This type of explicit instruction…
Descriptors: Active Learning, Inquiry, Student Attitudes, Theory Practice Relationship
Williams, Darren L.; Flaherty, Thomas J.; Alnasleh, Bassam K. – Journal of Chemical Education, 2009
A concise roadmap for using computational chemistry programs (i.e., Gaussian 03W) to predict the color of a molecular species is presented. A color-predicting spreadsheet is available with the online material that uses transition wavelengths and peak-shape parameters to predict the visible absorbance spectrum, transmittance spectrum, chromaticity…
Descriptors: Prediction, Chemistry, Science Instruction, Computation
Nicholson, Barbara J.; Halkin, Sylvia L. – Bioscene: Journal of College Biology Teaching, 2007
A laboratory exercise is presented in which students determine where metabolic heat is primarily generated in blooming eastern skunk cabbage ("Symplocarpus foetidus") plants. Students consider how color, shape, and orientation of spathes, and stage of flower maturation, may affect metabolic heat production and retention of both metabolic and solar…
Descriptors: Science Experiments, Science Laboratories, Color, Geometric Concepts
Leyden, Michael – Teaching Pre K-8, 1997
Describes a science and math activity that involves bubbles, shapes, colors, and solid geometry. Students build geometric shapes with soda straws and submerge the shapes in soapy water, allowing them to review basic geometry concepts, test hypotheses, and learn about other concepts such as diffraction, interference colors, and evaporation. (TJQ)
Descriptors: Color, Elementary Education, Geometric Concepts, Hypothesis Testing