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Panuski, Christopher L.; Mungan, Carl E. – Physics Teacher, 2016
Suppose a red laser beam (of wavelength ? equal to 0.660 µm) is expanded using an optical telescope into a collimated, approximately plane wave that is 5.68 mm in diameter. Pass that beam through a tall rectangular slit whose width "a" is gradually reduced from 3.30 to 0.100 mm. Look at its image on a screen located at a distance…
Descriptors: Geometry, Optics, Lasers, Spatial Ability
Totikova, Guldana A.; Yessaliyev, Aidarbek A.; Madiyarov, Nurlybai K.; Medetbekova, Nurgul – European Journal of Contemporary Education, 2020
The use of planar and volumetric geometric figures in the form of didactic games and exercises, the participants in the experiment showed a significant improvement in the results of the level of spatial representation compared with the control group. The methodology of the use of didactic games and exercises with geometric figures showed the…
Descriptors: Thinking Skills, Skill Development, Spatial Ability, Visualization
First-Graders' Spatial-Mathematical Reasoning about Plane and Solid Shapes and Their Representations
Hallowell, David A.; Okamoto, Yukari; Romo, Laura F.; La Joy, Jonna R. – ZDM: The International Journal on Mathematics Education, 2015
The primary goal of the study was to explore first-grade children's reasoning about plane and solid shapes across various kinds of geometric representations. Children were individually interviewed while completing a shape-matching task developed for this study. This task required children to compose and decompose geometric figures to identify…
Descriptors: Elementary School Mathematics, Elementary School Students, Grade 1, Thinking Skills
Bianchi, Ivana; Savardi, Ugo – Journal of Experimental Psychology: Human Perception and Performance, 2012
Research on naive physics and naive optics have shown that people hold surprising beliefs about everyday phenomena that are in contrast with what they see. In this article, we investigated what adults expect to be the field of view of a mirror from various viewpoints. The studies presented here confirm that humans have difficulty dealing with the…
Descriptors: Phenomenology, Misconceptions, Optics, Human Body
Anderson, Gail Marie – Mathematics Teacher, 2011
In this article, the author features "Flatland," by Edwin Abbott, a fantastic story about a square who lives in a two-dimensional world and who receives a visitor from the third dimension. Written in 1884 by a teacher-theologian who dabbled in mathematics, the novel is full of rich themes, including social class structure, the treatment of people…
Descriptors: Visualization, Spatial Ability, Geometric Concepts, Geometry
Bartlett, Albert A. – Physics Teacher, 2006
Several times a week I walk by a metal chair that is fastened to a flat concrete slab at an outdoor bus stop here in Boulder. One day I noticed on the concrete a nice shadow image of the woven metal seat of the chair (Fig. 1). The seat and back of the chair are formed from 3.8-cm wide strips of metal spaced 3.8 cm apart. The seat is about 39 cm…
Descriptors: Measurement, Spatial Ability, Scientific Concepts, Scientific Principles

Nitabach, Elizabeth; Lehrer, Richard – Teaching Children Mathematics, 1996
Discusses assumptions implicit in any system of measurement. Describes a three-rectangle problem designed to help children explore additivity of areas and relationships between area and shape. Suggests ideas for action research. (FDR)
Descriptors: Elementary Education, Mathematics Instruction, Measurement, Plane Geometry

Fosnaugh, Linda S.; Harrell, Marvin E. – Mathematics Teaching in the Middle School, 1996
Presents an activity in which students use geometric figures, rep-tiles, to design a tile floor. Rep-tiles are geometric figures of which copies can fit together to form a larger similar figure. Includes reproducible student worksheet. (MKR)
Descriptors: Design, Junior High Schools, Learning Activities, Middle Schools

Warren, Elizabeth; English, Lyn – Educational Studies in Mathematics, 1995
A series of spatial tasks involving conceptualization and manipulation of unfamiliar plane shapes administered to (n=20) children aged 4 to 12 revealed that both initial perception of a shape and approach to task solution strongly influenced children's success at shape recognition. (20 references) (Author/MKR)
Descriptors: Elementary Education, Elementary School Students, Foreign Countries, Mathematics Education