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Asadollahi, Zahra; Andrianarijaona, Vola M. – Physics Teacher, 2021
The eye should have a particular focal length in order to see an object. As there are many things to see, the focal length of the eye must vary because these things are not all at the same distance from the eye. We explore the eye accommodation from a geometrical optics point of view and present our results in this paper; the study includes a…
Descriptors: Science Instruction, Optics, Vision, Geometric Concepts
Kaewkhong, Kreetha; Nguenyuang, Sunee; Intanate, Nampueng; Pewkam, Wichaya – Physics Education, 2022
This article investigates the optics conceptions of 228 Thai high school students in grades 10-12 when they attempted to explain how an object can be seen both in general and in a completely dark room. To elicit students' conceptions precisely, their confidence in giving reasons for the final two diagnostic questions is also considered. The study…
Descriptors: Vision, Visual Perception, High School Students, Light
John, Merlin; Molepo, Jacob Maisha; Chirwa, Max – Research in Science & Technological Education, 2018
Background: The development of context-based science curricula has been identified as one of the most effective curricular innovations to develop interest and better conceptual understanding of many areas in science. However, such a curriculum can be more fruitful if it starts with the assessment of learners' contextualized knowledge about the…
Descriptors: Case Studies, Secondary School Students, Foreign Countries, Grade 11
Blizak, Djanette – Asia-Pacific Forum on Science Learning and Teaching, 2017
This study investigates the effect of using the history of science in teaching geometrical optics on the motivation and conceptual understanding of first year university students. For this purpose, 54 students were randomly selected, then divided into two groups: the experimental group was taught by using history of science before traditional…
Descriptors: Science Instruction, Science History, Scientific Concepts, Student Motivation
Mauser, Michael – Physics Teacher, 2011
Seeing the reflection, refraction, dispersion, absorption, polarization, and scattering or diffraction of light within your own eye makes these properties of light truly personal. There are practical aspects of these within the eye phenomena, such as eye tracking for computer interfaces. They also offer some intriguing diversions, for example,…
Descriptors: Computer Interfaces, Human Body, Optics, Light
Colenbrander, August – Journal of Visual Impairment & Blindness, 2009
This article provides a terminological framework to show the relationships among different types of visual deficits. It distinguishes between visual functions, which describe how the eye and the lower visual system function, and functional vision, which describes how a person functions. When visual functions are disturbed, the term "visual…
Descriptors: Visual Acuity, Optics, Partial Vision, Neurological Impairments
Hadžibegovic, Zalkida; Sliško, Josip – Center for Educational Policy Studies Journal, 2013
Active learning is individual and group participation in effective activities such as in-class observing, writing, experimenting, discussion, solving problems, and talking about to-be-learned topics. Some instructors believe that active learning is impossible, or at least extremely difficult to achieve in large lecture sessions. Nevertheless, the…
Descriptors: Student Attitudes, Attitude Change, Optics, Active Learning
Green, Adam S.; Ohmann, Paul R.; Leininger, Nick E.; Kavanaugh, James A. – Physics Teacher, 2010
For several years we have included discussions about insect vision in the optics units of our introductory physics courses. This topic is a natural extension of demonstrations involving Brewster's reflection and Rayleigh scattering of polarized light because many insects heavily rely on optical polarization for navigation and communication.…
Descriptors: Optics, Vision, Entomology, Biological Sciences
Colicchia, Giuseppe; Hopf, Martin; Wiesner, Hartmut; Zollman, Dean – Physics Teacher, 2008
Eye aberrations are commonly corrected by lenses that restore vision by altering rays before they pass through the cornea. Some modern promoters claim that pinhole glasses are better than conventional lenses in correcting all kinds of refractive defects such as myopia (nearsighted), hyperopia (farsighted), astigmatisms, and presbyopia. Do pinhole…
Descriptors: Optics, Vision, Human Body, Science Experiments
O'Kane, Brian – Primary Science Review, 2006
The eyes are the most complex organs in the body. Children's eyes are still developing until they are around 8-9 years old; therefore it is important to check that they are working properly before it is too late to rectify any problems. So how do they work, and why do they sometimes go wrong? In this article, the author explains children's eye…
Descriptors: Vision, Vision Tests, Optometry, Science Activities
Changizi, Mark A.; Hsieh, Andrew; Nijhawan, Romi; Kanai, Ryota; Shimojo, Shinsuke – Cognitive Science, 2008
Over the history of the study of visual perception there has been great success at discovering countless visual illusions. There has been less success in organizing the overwhelming variety of illusions into empirical generalizations (much less explaining them all via a unifying theory). Here, this article shows that it is possible to…
Descriptors: Proximity, Visual Perception, Vision, Theories
Walker, Jearl – Scientific American, 1978
Describes an experiment revealing a visual latency effect produced by the wearing of sunglasses. (SL)
Descriptors: Eyes, Optics, Research, Science Education
Gregg, James R. – Instr, 1969
Descriptors: Elementary School Science, Eyes, Optics, Science Activities

Sanny, Jeff – Physics Teacher, 1999
Describes an experiment in which students work together in small groups, take data, and make a calculation to roughly determine the diameter of the blind spot in their eye. (WRM)
Descriptors: Higher Education, Optics, Physics, Physiology
Walker, Jearl – Scientific American, 1986
Methods and optics of perceiving color in a black-and-white grating are described. A sample grating which produces the effect is included. (JN)
Descriptors: Color, Optics, Perception, Science Experiments