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McConeghy, Janet I. – 1987
As the technological revolution continues, there is an increased emphasis on mathematics and science. Many people feel that there are significant gender differences in both attitudes toward, and achievement in, these subjects. This study examined some of the attitudes toward mathematics and achievement in mathematics as measured by the 1977-78 and…
Descriptors: Age Differences, Attitude Measures, Mathematics Achievement, Mathematics Anxiety
Arnold, Carolyn L.; Kaufman, Phillip D. – 1992
This report examines the effects of both student and school characteristics on mathematics and science achievement levels in the third, seventh, and eleventh grades using data from the 1985-86 National Assessment of Educational Progress (NAEP). Analyses feature hierarchical linear models (HLM), a regression-like statistical technique that…
Descriptors: Academic Achievement, Cultural Differences, Elementary Secondary Education, Grade 11

Zerega, Margaret E.; And Others – Science Education, 1986
Explores sex differences in science achievement and examines the possible environmental determinants of these differences. Males scored significantly higher on science achievement and motivation and perceived their classroom environment more positively than females. (ML)
Descriptors: Academic Achievement, Females, Science Education, Secondary Education

Linn, Marcia C.; And Others – Journal of Research in Science Teaching, 1987
Discusses the gender differences revealed on the science content items of the National Assessment of Educational Progress Science Assessment. Examines explanations for the differences, including differential prior instruction, differential response to uncertainty, differential response to figurally presented items, and different attitudes toward…
Descriptors: Academic Achievement, Inquiry, Prior Learning, Science Education

Kahle, Jane Butler; Lakes, Marsha K. – Journal of Research in Science Teaching, 1983
National Assessment of Educational Progress data show that, by age 9, girls express interest but do not engage in as many science activities as boys. This continues through ages 13 and 17, paralleled by increasing negative views of science and science classes/careers. Suggestions to eliminate inequalities found are offered. (JN)
Descriptors: Academic Achievement, Educational Attitudes, Elementary School Science, Elementary Secondary Education

Blake, Sally – Science and Children, 1993
Presents research data that demonstrates current disparities in science proficiency among subgroups defined by gender and race. Discusses differences in achievement, science experiences out of school, and academic support. Presents seven guidelines for structuring science activities that motivate and respond to the interests of all students. (19…
Descriptors: Academic Achievement, Elementary Education, Equal Education, Females
Easton, Stanley E.; Ellerbruch, Lawrence W. – 1985
Data provided by the 1981-82 National Assessment of Educational Progress (NAEP) were used to study the citizenship and social studies achievement of rural 13-year-olds. The NAEP extreme rural sample included 901 13-year-olds from schools in areas with less than 10,000 people and many farmers or farm workers in residence. School size in this sample…
Descriptors: Achievement Rating, Adolescents, Citizenship Education, Comparative Testing
Lindquist, Mary Montgomery, Ed. – 1989
The National Assessment of Educational Progress (NAEP) completed its fourth mathematics assessment during the 1985-86 school year and finished the analyses of the results in 1988. This monograph, prepared by an interpretive team of the National Council of Teachers of Mathematics, represents a comprehensive discussion of the results of the fourth…
Descriptors: Achievement Tests, Attitude Measures, Educational Assessment, Elementary School Mathematics