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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
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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
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Tekos, George; Solomonidou, Christina – Journal of Science Education and Technology, 2009
This pilot study documents the design and evaluation results of an innovative teaching approach with the use of ICT regarding the optics concepts of light reflection and diffusion, and vision in Greek primary school. First there was a survey of 140 students to ascertain their initial ideas regarding these concepts. On the basis of the results of…
Descriptors: Constructivism (Learning), Computer Assisted Instruction, Optics, Computer Software
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Cortel, Adolf – Physics Education, 2005
Many simple experiments can be performed in the classroom to explore the physics of vision. Students can learn of the two types of receptive cells (rods and cones), their distribution on the retina and the existence of the blind spot.
Descriptors: Vision, Optics, Visual Perception, Physics
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Warren, T. H.; Henriksen, P. N.; Ramsier, R. D. – Physics Education, 2003
We present a simple activity in which students measure the resolving power of their eyes. The approach can be used at various levels of sophistication with students having a wide variety of skills and scientific training. We discuss our experiences using this activity with a class of non-science majors as well as with a group of pre-engineering…
Descriptors: Physics, Nonmajors, Human Body, Vision
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Ferguson, Joe L. – Physics Teacher, 1995
Describes construction and use of a simple home-built device, using an overhead projector, for use in demonstrations of the addition of various combinations of red, green, and blue light. Useful in connection with discussions of color, color vision, or color television. (JRH)
Descriptors: Color, Demonstrations (Science), Higher Education, Light
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Galili, 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
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Galili, Igal; Hazan, Amnon – International Journal of Science Education, 2000
Explores high school students' and preservice teachers' knowledge of light, vision, and related topics before and after commonly practiced instruction. Suggests a hierarchical structure to represent the collective conceptual knowledge of students and teachers in terms of facets and schemes of knowledge. Makes suggestions for designing instruction…
Descriptors: Cognitive Structures, Concept Formation, Foreign Countries, High Schools