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Although many research studies report students’ Lamarckian misconceptions, only a few studies present learning and teaching strategies that focus on the successful development of the concept of natural selection. The learning and teaching strategy for upper secondary students (aged 15–16) presented in this study conducted in The Netherlands is based on the idea of guided reinvention, rather than on the conceptual change strategy. In guided reinvention, students reinvent the concept of natural selection by answering a sequence of questions based on the logical nature of Darwin’s theory. The results show that few Lamarckian explanations for evolution were recorded in the study and that the majority of the students developed a Darwinian or neo‐Darwinian conception. The status of Lamarckian misconceptions is challenged.  相似文献   
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Two experiments demonstrate that 5‐month‐olds are sensitive to local redundancy in visual‐temporal sequences. In Experiment 1, 20 infants saw 2 separate sequences of looming colored shapes that possessed the same elements but contrasting transitional probabilities. One sequence was random whereas the other was based on bigrams. Without any prior exposure, infants looked longer at the random sequence. In Experiment 2, 17 infants looked equally long at bigram‐ and trigram‐based sequences. However, an analysis of local redundancy revealed that in both experiments disengagement from the sequences was governed by local repetitions rather than by global sequence statistics. This finding suggests that a spontaneous sensitivity to stimulus complexity helps orient infants to sequences they can learn from.  相似文献   
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The integration of science and technology education has been a topic of worldwide debate. However, the focus of the debate has been too much on the degree of integration of subjects at the expense of such important but related issues as the nature of the constituting disciplines, educational levels (state, school, classroom), and the objects of integration. Integration should be seen from the perspective of curricular coherence. Coherent science and technology education (CSTE) should pay attention both to uninterrupted learning on the part of students and to the nature of the constituting disciplines. This paper describes a study exploring CSTE practice in nine junior‐secondary schools in the Netherlands. It recommends a framework to promote CSTE by stakeholders at the state, school, and classroom levels.  相似文献   
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Science Created by You (SCY) learning environments are computer-based environments in which students learn about science topics in the context of addressing a socio-scientific problem. Along their way to a solution for this problem students produce many types of intermediate products or learning objects. SCY learning environments center the entire learning process around creating, sharing, discussing, and re-using these learning objects. This instructional approach requires dedicated instructional designs, which are supplied in the form of what are called pedagogical scenarios. A SCY pedagogical scenario presents the learning process as an organized assembly of elementary learning processes, each associated with a specific learning object and a tool for creating this learning object. Designing a SCY learning environment is basically a two-step procedure: the first step is to select one of the available scenarios, and the second step is to define the domain content. The SCY technical infrastructure then handles the instantiation of the scenario as a SCY computer-based learning environment. In this article we describe the SCY pedagogical design scenarios and report on our experiences in designing four different SCY learning environments.  相似文献   
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