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321.
322.
Moral reasoning in values education can promote a democratic way of life. It involves addressing behaviour expectations in responses to violence or bullying. There is increasing interest in how children make moral judgments about social inclusion within diverse cultural settings. Critical research highlights the relationship between epistemic cognition (views about the nature of knowledge and knowing) and reasoning. In this paper, we argue that this relationship is likely to be important in reasoning about moral values for inclusion in culturally diverse schools. However, we know little about how children in diverse educational settings reason about and enact school values for inclusion. Our study addresses this gap by examining primary school children’s epistemic reasoning about the social inclusion of peers with a focus on justifications for inclusion/exclusion of aggressive peers. Twenty-six children (10–11 years old) from one culturally diverse school community in Australia were asked to illustrate (drawings) and reflect on (15–20 minute interviews) a conflict situation involving exclusion from play. The findings showed that most children reasoned about including/excluding others based on a ‘one right answer’ pattern which reflected an explicit focus on following the school rules. Fewer children moved ‘beyond right answers’ to show transition towards perceiving multiple perspectives in their reasoning about inclusion/exclusion. Implications for values education are discussed.  相似文献   
323.
It is commonly suggested to mathematics teachers to present learners different methods in order to solve one problem. This so-called “learning with multiple solution methods” is also recommended from a psychological point of view. However, existing research leaves many questions unanswered, particularly concerning the effects of different types of solution methods and different degrees of learner’s activity. In this context, two experiments were conducted. In Experiment 1, a 2 × 3-factorial design was implemented, with the first factor concerning multiple versus uniform solutions and the second factor addressing different combinations of formal and informal solution methods. No “multiple solutions effect” was found. An integration of informal methods did not affect learning outcomes; however, it significantly reduced the subjective difficulty of the problems. Then, in Experiment 2, the effectiveness of multiple versus uniform solutions and of measures to foster an active processing was examined using a 2 × 3-factorial design (“number of solutions”: multiple versus uniform; “activity”: complete examples versus incomplete examples versus example-problem pairs). The “multiple” conditions significantly outperformed the “uniform” conditions, and complete examples and example-problem pairs significantly outperformed incomplete examples. Based on the results of Experiment 1 and 2, preconditions under which multiple solutions can improve learning outcomes are discussed.  相似文献   
324.
Investments in the select few who already are or will become academic leaders are essential but insufficient. Investments also need to be made in collective leadership because leadership is an activity or function, not merely a person. Both good leaders and collective leadership are needed in the never-ending journey toward selective excellence. A review of the challenges and opportunities manifest in the internal and external environments for higher education supports this claim and five others. First, there are certain non-negotiable strategies. Second, every leadership strategy is an intervention. Third, contingent leadership with multiple strategies is nearly mandatory. Fourth, organizational readiness for change is an enduring priority. Finally, leadership is founded on disciplinary stewardship. To thrive, kinesiology must be both a fortress discipline and an adaptive, connected discipline. Keeping the best of specialization, while combating fragmentation, stewardship must be firmly connected to faculty career identities and structures provided by existing and newly-configured sub-disciplines.  相似文献   
325.
European Journal of Psychology of Education - Research has shown that teachers are able to adapt their processing strategy of student information to situational demands, whereby they flexibly use...  相似文献   
326.
The hypothesis that an early adolescent brain growth plateau and spurt exists and that this plateau and spurt influence students' ability to reason scientifically and to learn theoretical science concepts was tested. In theory, maturation of the prefrontal lobes during early adolescence allows for improvements in students' abilities to inhibit task‐irrelevant information and coordinate task‐relevant information, which along with both physical and social experience influences scientific reasoning ability and the ability to reject scientific misconceptions and accept scientific conceptions. Two hundred ten students ages 13–16 years enrolled in four Korean secondary schools were administered tests of four prefrontal lobe activities, a test of scientific reasoning ability, and a test of air pressure concepts derived from kinetic‐molecular theory. A series of 14 lessons designed to teach the concepts were then taught. The concepts test was then readministered following instruction. As predicted, among the 13‐ and 14‐year‐olds, performance on the prefrontal lobe measures remained similar or regressed. Performance then improved considerably among the 15‐ and 16‐year‐olds. Also as expected, the measures of prefrontal lobe activity correlated highly with scientific reasoning ability. In turn, prefrontal lobe activity and scientific reasoning ability predicted concept gains and posttest performance. A principal components analysis showed that the study variables had two main components, which were interpreted as an inhibiting and a representing component. Therefore, theoretical concept acquisition was interpreted as a process involving both the inhibition of task‐irrelevant information (i.e., the rejection of intuitively derived misconceptions) and the representation of task‐relevant information (i.e, complex hypothetico‐deductive arguments and counterintuitive scientific conceptions about nonobservable entities). © 2000 John Wiley & Sons, Inc. J Res Sci Teach 37: 44–62, 2000  相似文献   
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