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We summarize a conference on scientific inquiry bringing together science educators, cognitive scientists and philosophers of science with three goals:
1.  to establish how much consensus exists about scientific inquiry,
2.  to discuss implications of that consensus for teaching science,
3.  to identify areas where consensus is lacking to establish where further research and discussion would be most valuable.
This research was supported by NSF grant ESIE #0343196 awarded to the authors. The opinions expressed in this article are those of the authors and do not necessarily reflect the views of the National Science Foundation. Paper presented at the International History and Philosophy of Science and Science Teaching Group meeting in Leeds, England July 15–18, 2005.  相似文献   
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This paper reports a cross‐sectional study of Taiwanese physics students’ understanding of subatomic phenomena that are explained by quantum mechanics. The study uses students’ explanations of their answers to items in a questionnaire as a proxy for students’ thinking. The variation in students’ explanations is discussed as is the development in the way in which students link different concepts. A discussion of the source of students’ ideas turns to the way schema contain mental models that derive from sensori‐experiences. The principal recommendation for teaching is the need to include practical activities on a range of precursor phenomena so as to extend the students repertoires of mental models. This advice is different from that given in previous studies.  相似文献   
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Thermoresponsive polymer surface coatings are a promising tool for cell culture applications. They allow for a mild way of cell detachment that preserves the activity of membrane proteins—a prerequisite for reliable cell analysis. To enlarge the application range of these coatings to cells with different adhesion properties, we synthesized various novel poly(ethylene glycol)-based thermoresponsive polymers and describe how (i) their chemical structure and (ii) their surface density affect their efficiency. In order to quantify the influence of both factors, the time for cell spreading and rounding efficiency were observed. As a result, efficiency of cell rounding, which is closely correlated to cell detachment, is less affected by both factors than the time needed for cell spreading. This time can effectively be adjusted by the molecular architecture which includes the length of the polymer backbone and the side chains. Based on this work, recommendations are given for future optimization of functionality of thermoresponsive polymer coatings for cell culture applications.  相似文献   
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The focus of this study was to investigate the manner and the degree to which science teachers consider the nature of the subject matter in their decision making addressing the planning and the delivery of instructional tasks. An assumption of the study is that considerations for the nature of the subject matter should be a factor in a teacher's decision making about what to teach and how to teach. Relevant research literature reviewed includes (1) human decision making and the development of cognitive models of reality, (2) modern philosophies of science, and (3) philosophy of science and science education. Methods of data collection and of data analysis followed Spradley's Developmental Research Sequence guidelines for conducting ethnographic research. Validity of research findings was established from the triangulation of observations, interviews, and documents and surveys. The goal of the research was the development of grounded hypotheses about science TEACHERS' pedagogical decision making. Based on the results of this study it is hypothesized that science TEACHERS' decision-making models of reality for the selection, implementation, and development of instructional tasks are dominated by considerations for (a) student development, (b) curriculum guide objectives, and (c) pressures of accountability. Little, if any, consideration is given to the nature of the subject matter by the science teachers in decision making. Implications exist for the disenfranchisement of teachers from the task of making decisions concerning what to teach.  相似文献   
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Ethnographic research methodologies were used to examine the training of elementary education majors in science in an attempt to gain insight on whether or not their training in science contributes to the apprehension elementary teachers have toward science. The field study consisted of 14 weeks of weekly observations in the elementary education majors science methods class. Interviews with the students and the instructors as well as survey instruments to assess students' preparation in science were used. Two different approaches to the study of science, one content oriented, the other process oriented, may contribute to the students' confusion, insecurity, and avoidance of science. The students' perception that science is learning content, an objective of introductory level science courses, and the science methods class's objectives of teaching science as a process sets up an “antagonistic dilemma” between the two. Such “antagonistic dilemma” may be manifest in the lack of instructional time accorded to science by elementary educators. The type of science experiences an individual encounters influences their perceptions. To offset student perceptions developed in science courses which stress principally content, the students need science experiences which truly represent science as inquiry. New strategies for the training of elementary education majors in science need to be examined.  相似文献   
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