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Peters-Burton, Erin – School Science and Mathematics, 2016
The purpose of the study was to examine what scientists studying to become teachers know about the nature of science (NOS) before, during and after a course focused on NOS. The 16 scientists had an average of 9.7 years of work experience. The course was structured to teach knowledge about the aspects of NOS, demonstrate effective methods of…
Descriptors: Scientific Principles, Scientists, Beliefs, Outcomes of Education
Barnes, Caitlin; Angle, Julie; Montgomery, Diane – School Science and Mathematics, 2015
Creating scientifically literate students is a common goal among educational stakeholders. An understanding of nature of science is an important component of scientific literacy in K-12 science education. Q methodology was used to investigate the opinions of preservice and in-service teachers on how they intend to teach or currently teach science.…
Descriptors: Science Instruction, Epistemology, Q Methodology, Statistical Analysis
Huang, Rongjin; Li, Yeping – School Science and Mathematics, 2012
In this study, we examined 10 expert and 10 novice teachers' noticing of classroom events in China. It was found that both expert and novice teachers, who were selected from two cities in China, highly attended to developing students' mathematics knowledge coherently and developing students' mathematical thinking and ability; they also paid…
Descriptors: Discovery Learning, Foreign Countries, Beginning Teachers, Mathematics Education

Palmer, Glenn A. – School Science and Mathematics, 1979
This article suggests the use of the circuit box to illustrate the processes involved in the scientific method. Construction and wiring diagrams and a materials list are presented. (BB)
Descriptors: Instructional Materials, Models, Science Activities, Science Education

Bader, William A. – School Science and Mathematics, 1975
Describes the use of a scientific phenomenon related to the concept of surface tension as an intriguing vehicle to direct attention to useful problem solving techniques. The need for a definite building process in attempts to solve mathematical problems is stressed. (EB)
Descriptors: Divergent Thinking, Instruction, Learning Processes, Mathematics Education

Doran, Rodney; Swartney, Joyce – School Science and Mathematics, 1972
Suggests ways to use articles and presentations from popular mass media as focal point for class discussion to improve skills in problem solving. (CP)
Descriptors: Elementary School Science, Evaluation Methods, Instruction, Mass Media

Sanders, Walter J. – School Science and Mathematics, 1980
The teaching of mathematics as a science to elementary school children is promoted. Use of the scientific method in learning is presented as a form of experiential or discovery teaching. (MP)
Descriptors: Cognitive Processes, Discovery Learning, Elementary Education, Elementary School Mathematics
Weinburgh, Molly – School Science and Mathematics, 2003
The reform documents of the 1990s stressed that science is not practiced by a rigid scientific method, but science texts continue to describe the process as if it were rigid and linear. The purpose of this investigation was twofold: (a) to explore middle school in-service teachers' perceptions of scientific methodology and (b) to explore ways in…
Descriptors: Textbooks, Scientific Methodology, Science Teachers, Middle School Teachers
How Many Miles per Hour Is That Fan Going? An Experiment to Implement Problem Solving in Grades 5-8.

Cochener, David; Cochener, Debbie – School Science and Mathematics, 1993
Describes the process of problem identification, data collection, and generalization in a mathematical experiment to find the speed at which a bug travels at the end of a fan blade. Presents the learning outcomes of the experiment and possible implications of using this teaching method. (MDH)
Descriptors: Elementary Secondary Education, Experiments, Geometric Concepts, Heuristics