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Hofstein, Avi; Lazarowitz, Reuven – Journal of Research in Science Teaching, 1986
The actual and preferred students' perception of classroom learning environment was measured using a modified Hebrew version of the Learning Environment Inventory (LEI). This (validated and analyzed for reliability) was given to chemistry (N=1080) and biology (N=400) students. Results and implications are discussed. (Author/JN)
Descriptors: Biology, Chemistry, Classroom Environment, High Schools
Anderson, G. J. – 1970
Student responses to the Learning Environment Inventory were obtained from six physics classes, ten chemistry classes and ten biology classes in eight English-speaking schools in the Montreal Metropolitan area. A three-level, one-way multivariate analysis of covariance with the 15 Learning Environment Inventory Scales as dependent variables and…
Descriptors: Biology, Chemistry, Classroom Environment, Comparative Analysis

Fraser, Barry J. – Science Education, 1978
Describes modifications of the Learning Environment Inventory (LEI) instrument for measuring classroom climate to make it suitable for individualized junior high school classrooms. Reports validation data from a sample of seventh graders. (SL)
Descriptors: Classroom Environment, Classroom Observation Techniques, Educational Research, Individualized Instruction
Frailich, Marcel; Kesner, Miri; Hofstein, Avi – Research in Science & Technological Education, 2007
The goal of this study was to investigate whether integrating a website into chemistry teaching influences 10th-grade students' perceptions of the classroom learning environment, their attitudes regarding the relevance of chemistry, and their understanding of the concept of chemical bonding. Two groups participated in this study: an experimental…
Descriptors: Student Attitudes, Internet, Science Achievement, Chemistry

Hofstein, Avi; And Others – Journal of Research in Science Teaching, 1980
Examines the question of the role of laboratory work in influencing Israeli students' perceptions of their chemistry laboratory learning environment. Compares responses on a learning environment inventory of two groups of students, high school students and students enrolled in vocational schools to become future laboratory technicians. (CS)
Descriptors: Chemistry, Classroom Environment, High Schools, Science Careers

Lawrenz, Frances – Journal of Research in Science Teaching, 1987
This study compared the classroom environments as perceived by fourth-grade, seventh-grade and high school boys and girls in classes taught by males and females to determine if any perceptual differences existed. The analyses showed no differences for fourth-grade students, one for seventh-grade students, and three for high school students.…
Descriptors: Classroom Environment, Elementary School Science, Elementary Secondary Education, Grade 4

Hofstein, Avi; And Others – Studies in Educational Evaluation, 1979
Correlation of the Learning Environment Inventory with a semantic differential attitude test indicated that three learning environment variables (goal direction, satisfaction, and classroom organization) fostered positive attitudes toward chemistry. Course difficulty, interpersonal tension, and course speed were related to negative attitudes. (CP)
Descriptors: Attitude Measures, Chemistry, Classroom Environment, Correlation

Sharan, Shlomo; Yaakobi, Duba – European Journal of Science Education, 1981
The Learning Environment Inventory (LEI) was administered to tenth-grade biology classes (N=572) in urban and kibbutz district schools in Israel. Findings indicated that seven out of nine scales of the LEI yield significant differences in scores for urban and kibbutz samples indicating a more positive learning climate in the kibbutz. (Author/DS)
Descriptors: Biology, Classroom Environment, Foreign Countries, Grade 10