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What Works Clearinghouse Rating
Peer reviewedKeller, Brian A. – Mathematics Teacher, 1998
Presents an activity in which students use mathematical ideas to understand how the intensity of light changes as light passes through water or similar partial barriers, by using a calculator-based laboratory device to record light intensity. Continues with a structured series of questions involving the use of difference equations with which…
Descriptors: Computer Interfaces, Educational Technology, Equations (Mathematics), Graphing Calculators
Peer reviewedGalili, Igal; Hazan, Amnon – Science and Education, 2001
Describes an experimental course in optics for 10th grade high school students. The course incorporates those historical ideas, views, and conceptions that constituted the early understanding of light and vision. Presents a part of the course which assesses its impact on students' views about science and some related technological and cultural…
Descriptors: Cultural Differences, Grade 10, Higher Education, Light
Peer reviewedGalili, Igal; Lavrik, Valentina – Science Education, 1998
Investigates high school students' knowledge of natural phenomena related to the concept of light flux as it applies to the seasons and illumination after they studied optics. Discusses didactic, cognitive, and ontological perspectives in relation to specific changes in the science curriculum. Contains 71 references. (DDR)
Descriptors: Cognitive Psychology, Concept Formation, Curriculum Design, Foreign Countries
Web Feet, 2002
This annotated subject guide to Web sites for grades K-8 focuses on art appreciation, farming, measurement, reading and phonics, renaissance daily life, sound and light, and calendar connections for June observances. Specific grade levels are indicated for each annotation. (LRW)
Descriptors: Acoustics, Annotated Bibliographies, Art Appreciation, Elementary Secondary Education
Peer reviewedTatina, Robert; Hartley, Tamela; Thomas, Danita – American Biology Teacher, 1999
Describes the construction and use of an inexpensive, portable photometer designed specifically for estimating population sizes in yeast cultures. Suggests activities for use with the photometer. (WRM)
Descriptors: Biology, Higher Education, Laboratory Equipment, Laboratory Experiments
Peer reviewedMacIsaac, Dan; Kanner, Gary; Anderson, Graydon – Physics Teacher, 1999
Explains the scientific concepts, technical designs, and materials that make up incandescent light sources. (WRM)
Descriptors: Energy, Higher Education, Light, Lighting
Peer reviewedCamp, Dane; Chiaverina, Chris; Senior, Tom – Physics Teacher, 1999
Describes and explains a procedure for photographing the chaotic scattering of light. (WRM)
Descriptors: Chaos Theory, Fractals, Higher Education, Light
Peer reviewedFamiglietti, Marco C. – Science Scope, 2001
Presents an activity in which students create posters to explain their understanding of electromagnetic radiation corresponding to real world items. (YDS)
Descriptors: Cooperative Learning, Electricity, Junior High Schools, Light
Hershey, David R. – Science Activities: Classroom Projects and Curriculum Ideas, 2005
Plant tropisms--their directional movement in response to stimuli--are a fundamental concept in plant science and excite students because they are the observable signs of life in plants. Unfortunately, the precollege teaching literature is full of tropism misconceptions. An inexpensive clock clinostat is invaluable for student gravitropism and…
Descriptors: Plants (Botany), Light, Physics, Scientific Concepts
Nakanishi, Fumi; Nakazawa, Masami; Katayama, Nobuyasu – Journal of Biological Education, 2005
Fully opened leaves of potted plants of "Oxalis corymbosa" DC. closed completely by folding their leaflets downward after being kept in the dark for two hours. The folded leaflets, then moved upward gradually after exposure to light. We developed a simple method to measure the leaf movement. A paper protractor folded every 10[degrees] was devised…
Descriptors: Biology, Light, Plants (Botany), Research Methodology
Muhoz, Romualdo; Quiles, Maria J. – Journal of Biological Education, 2003
In this article the effect of light quality on the size of the photosystem II (PSII) light harvesting complex (LHCII) is studied by measuring the chlorophyll fluorescence emitted by leaf sections of oat ("Avena sativa," var. Prevision) plants previously treated with either white light or with light filtered through blue, green, red or farred…
Descriptors: Advanced Students, Optics, Physiology, Biochemistry
Rife, Gwynne – Science Scope, 2006
Over the past decade, much has been learned about the ocean's secrets and especially about the creatures of the deep sea. The deepest parts of the oceans are currently the focus of many new discoveries in both the physical and biological sciences. Middle school students find the deep sea fascinating and especially seem to enjoy its mysterious and…
Descriptors: Science Instruction, Secondary School Science, Biological Sciences, Animals
Slotta, James D.; Chi, Michelene T. H. – Cognition and Instruction, 2006
Chi (2005) proposed that students experience difficulty in learning about physics concepts such as light, heat, or electric current because they attribute to these concepts an inappropriate ontological status of material substances rather than the more veridical status of emergent processes. Conceptual change could thus be facilitated by training…
Descriptors: Difficulty Level, Physics, Heat, Light
Ling, Lo Mun; Chik, Pakey; Pang, Ming Fai – Instructional Science: An International Journal of Learning and Cognition, 2006
This paper shows how the patterns of variation created in the teaching were critical in helping a class of Primary 3 students in Hong Kong to learn about the colour of light, so that the students attained conceptual rather than procedural knowledge. A "Learning Study" approach was adopted, which is a Lesson Study grounded in a particular…
Descriptors: Teaching Methods, Foreign Countries, Learning Theories, Color
Ferncase, Richard K. – 1992
This worktext guides film and video students through a series of practical exercises, quizzes, and projects designed to help reinforce skills learned through applied lighting situations. The book is organized in three parts. The first part contains four chapters devoted to basic concepts: (1) "The Visible Spectrum"; (2) "Film and…
Descriptors: Color, Electrical Systems, Film Production, Light

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