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Danielsson, Kristina; Jeppsson, Fredrik; Nestlog, Ewa B.; Tang, Kok-Sing – Science Education, 2023
This study reports on a case study about multimodal work in a primary physics classroom focusing on forces. Previous research reports that students benefit from multimodal work in science classrooms. Yet, few systematic studies have been performed to reveal how students represent their experiences and ideas of science phenomena over time within…
Descriptors: Science Education, Scientific Concepts, Elementary School Science, Elementary School Students
Alexander, Joyce M.; Johnson, Kathy E.; Kelley, Ken – Science Education, 2012
Relations between parental reports of children's interests related to science and opportunities for science learning were examined longitudinally in 192 children between ages 4 and 7 years. Science interests were tracked during 1-year periods (ages 4-5, 5-6, and 6-7) and were more prevalent among boys, particularly prior to age 6 years. Gender…
Descriptors: Childhood Interests, Informal Education, Gender Differences, Science Interests
Gutwill, Joshua P.; Allen, Sue – Science Education, 2010
We describe a study of programs to deepen families' scientific inquiry practices in a science museum setting. The programs incorporated research-based learning principles from formal and informal educational environments. In a randomized experimental design, two versions of the programs, called "inquiry games," were compared to two control…
Descriptors: Museums, Exhibits, Effect Size, Inquiry
Hofstein, Avi; Lunetta, Vincent N. – Science Education, 2004
The laboratory has been given a central and distinctive role in science education, and science educators have suggested that rich benefits in learning accrue from using laboratory activities. Twenty years have been elapsed since we published a frequently cited, critical review of the research on the school science laboratory (Hofstein & Lunetta,…
Descriptors: Science Education, Science Laboratories, Science Experiments, Laboratory Experiments
Peer reviewedHofstein, Avi; And Others – Science Education, 1976
This study developed and validated an inventory to measure students' attitudes toward and interest in laboratory work in high school chemistry. Factor analysis provided some evidence that interest in and attitude towards laboratory work in high school chemistry is not unidimensional, as it has been assumed to be. (BT)
Descriptors: Attitudes, Chemistry, Educational Research, Instruction
Peer reviewedCauzinille-Marmeche, Evelyne; And Others – Science Education, 1985
Investigated the role of "a priori" ideas in planning experiments and data processing leading to inferences. Thirty-one students (ages 11-13) observed a "combustion/candle in a closed container" experiment and were asked to interpret sets of measurements. Findings, among others, show that children preferentially experiment on…
Descriptors: Cognitive Processes, Cognitive Structures, Comprehension, Elementary Education
Peer reviewedShymansky, James A.; Penick, John E. – Science Education, 1979
Evaluates the value and effectiveness of college science laboratory instruction. An observational system called the Science Laboratory Interaction Categories (SLIC) was used to assess the performance of students and instructors in introductory and advanced laboratories of a large midwestern university. (HM)
Descriptors: Classroom Observation Techniques, College Students, Educational Assessment, Educational Research
Peer reviewedGaniel, Uri; Hofstein, Avi – Science Education, 1982
An instrument for the continuous assessment of high school physics students' laboratory performance was developed and evaluated. Physics teachers (N=25) observed students conducting experiments on film to judge student performance against a standard set of criteria. Results suggest increases in observational objectivity and precision as well as…
Descriptors: Classroom Observation Techniques, Evaluation Criteria, Measures (Individuals), Physics
Peer reviewedStedman, Carlton H. – Science Education, 1987
Discusses the history of American science and science education, with particular emphasis on the development of scientific inquiry and experimentation. Focuses primarily on the activities of individuals in the 1800's, and the introduction of science into secondary schools and higher education institutions in the early 1900's. (TW)
Descriptors: College Science, Higher Education, Inquiry, Science Education
Peer reviewedLucas, A. M.; Tobin, Kenneth – Science Education, 1987
Discusses the development of a student's ability to control experiments as an important aim of modern science curriculum materials. Argues that most curriculum developers offer only a simplistic method of controlling variables. Suggests ways to enhance the development of variable control within the framework of student experiments. (TW)
Descriptors: Curriculum Development, Deduction, Elementary School Science, Elementary Secondary Education
Peer reviewedSneider, Cary; And Others – Science Education, 1984
Tested the effectiveness of a program designed to teach children how to conduct and interpret a controlled experiment. Results indicate that the ability to control variables can be taught using the program (which consists of activities related to designing, building, and launching model rockets). (JN)
Descriptors: Adolescents, Cognitive Processes, Elementary School Science, Elementary Secondary Education
Peer reviewedLee, Valerie E.; Burkam, David T. – Science Education, 1996
Uses base-year data from a nationally representative database (NELS:88) to identify important explanatory factors for gender differences in science performance. Documents a large advantage for boys on the subtest of physical science and a modest advantage for girls in life science. Concludes that laboratory experiences are beneficial for girls'…
Descriptors: Academic Achievement, Educational Research, Enrollment Trends, Gender Issues
Peer reviewedMartinez, Michael E.; Haertel, Edward – Science Education, 1991
Examines features of science experiments that make them interesting to middle school students (n=59 seventh graders). Compared a model of interest in learning with the reasons students gave for liking experiments. Latent partition analysis was used to derive an empirical model from characteristics of interesting science experiments. (PR)
Descriptors: Classroom Research, Educational Research, Grade 7, Interest Research

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