Relationship between Gender, Spatial Visualization, Spatial Orientation, Flexibility of Closure Abilities and Performance related to Plane Geometry Subject among Sixth Grade Students
Öz
The plane geometry subject includes concepts as points, lines, planes, space and their relations.
Representations of three-dimensional objects by means of two-dimensional diagrams bring the difficulties of
identification of their properties. Three subfactors of spatial ability were identified as the main variables in
the performances of students related to plane geometry subject. The purpose of this study is to investigate the
relationship between gender, spatial visualization, spatial orientation, flexibility or speed of closure abilities
and the performances related to the plane geometry subject of the sixth grade students. The sample of the
study consisted of 120 sixth grade students. In the first part of the study, the reliability and the validity studies
of the representative tests were carried out. In the second part, correlation analyses were carried out.
Significant correlations were found between each factor except gender. For clarifying the relationships
between more than one factor multiple regression analyses were used. The results showed that the three
predictor variables explained the 35 per cent of the variance in plane geometry test scores. However, degree
of contribution of each factor differed. The relative impact of spatial orientation ability (B=. 41) was higher
than the spatial visualization ability (B=. 26) followed by the flexibility of closure ability (B=. 05). As a result
of correlation analysis, gender was not taken into the regression analyses. The plane geometry subjects in the
National curriculum were analyzed and related suggestions were carried out in line with the research
findings.
Anahtar Kelimeler
Kaynakça
- Ardaç, D., & Erktin, E. (1996). Fen ve matematik başarısını açıklayıcı bir model çalışması. Boğaziçi Üniversitesi Araştırma Fonu, No. 94DO104, İstanbul.
- Ben-Haim, D., Lappan, G. & Houang, R. T. (1985). Visualizing rectangular solids made of small cubes: analyzing and effecting students’ performances. Educational Studies in Mathematics, 16, 389-409.
- Braine, L. G., Schauble, L. , Kugelmass, S., & Winter, A. (1993). Representation of depth by children: Spatial strategies and lateral biases. Developmental Psychology, 29( 3), 466-479.
- Butler, D. L. (1982). Predicting the perception of three-dimensional objects from the geometrical information in drawings. Journal of Experimental Psychology: Human Perception and Performance, 8( 5), 674-692.
- Caplan, P. J., MacPerson, G. M., & Tobin, P. (1985). Do sex related differences in spatial abilities exist? American Psychologist, 40( 7), 786-799.
- Connor, J. M., Schackman, M. & Serbin, L. A. (1978). Sex-related differences in response to practice on a visual-spatial test and generalization to a related test. Child Development 49, 24-29.
- Cooper, M. (1992). Three-dimensional symmetry. Educational Studies in Mathematics, 23, 179-202.
- Copeland, R. W. (1979). How children learn mathematics: Teaching implications of Piaget’s research. New York: Macmillan.
Ayrıntılar
Birincil Dil
İngilizce
Konular
-
Bölüm
Araştırma Makalesi
Yayımlanma Tarihi
2 Eylül 2015
Gönderilme Tarihi
1 Şubat 2009
Kabul Tarihi
-
Yayımlandığı Sayı
Yıl 2009 Cilt: 26 Sayı: 1