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Ohne Zusammenfassung 相似文献
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Grounded within literature pointing to the value of narrative in communicating scientific information, the purpose of this study was to examine the use of stories as a tool for teaching about natural selection in the context of school science. The study utilizes a mixed method, case study approach which focuses on the design, implementation, and evaluation of narrative-based curriculum materials. The data consisted of questionnaires, classroom observations, and interviews with the students and teachers. The analysis of the data showed that most of the students developed adequate scientific understandings about natural selection and they perceived the narrative as easier to comprehend than the textbook. The findings speak to the need for examining ways of blending narrative effectively into science lessons. 相似文献
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Petra H. M. Cremers Arjen E. J. Wals Renate Wesselink Martin Mulder 《Learning Environments Research》2016,19(3):309-334
In today’s knowledge society, there is a demand for professionals who are able to create knowledge across boundaries of disciplines, professions and perspectives. Traditional universities, universities of applied sciences and institutions for vocational education are all challenged to educate these knowledge workers. Accordingly, these institutions are developing competence-based education programmes that promote authentic, self-directed learning and the development of a professional identity. A possible environment for realising this type of learning is the hybrid learning configuration in which learning is embedded in ill-defined and highly-authentic tasks. This study attempted to identify a set of principles that can underpin the design of such a learning configuration at the interface between school and workplace. The research approach consisted of educational design research. Starting from cognitive constructivist and socio-cultural perspectives, a set of initial design principles was developed and evaluated from the perspective of the participants during three consecutive iterations of design and implementation. The process resulted in a set of seven refined design principles which can be used as heuristics to guide the design and development of hybrid learning configurations in contexts that have similar goals and aligned tenets. 相似文献
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Bacchus M. Kazim Eggleston S. J. Nestvogel Renate Sagarra Eda Oxenham John Rittich Regina Ross Kenneth N. Boesch Ernst E. Riedmiller Sibylle Zajda Joseph Hayhoe Ruth Nisbet John Patterson Dawn Marie Jarvis P. Bauer Annemarie Watts A. G. 《International Review of Education/Internationale Zeitschrift für Erziehungswissenschaft/Revue internationale l'éducation》1984,30(2):209-232
International Review of Education - 相似文献
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Petra J. Luteijn Inge S. M. van der Wurff Piet van Tuijl Amika S. Singh Hans H. C. M. Savelberg Renate H. M. de Groot 《Mind, Brain, and Education》2023,17(3):209-218
Creativity is important for school performance. As several brain mechanisms involved in creativity are stimulated by low-intensity physical activity, standing might influence creativity. Few studies on the relationship between standing and creativity have been executed, and none among vocational education and training (VET) students. Therefore, the aim of this study was to investigate whether standing influences creativity in VET students. In a randomized crossover study, 192 VET students were randomly allocated to standing or sitting (i.e., control) for 30 min. After 15 min, they performed two creativity tests: Guilford's Alternative Uses Test (divergent thinking) and Remote Associates Test (convergent thinking). Subsequently, conditions were switched, and the procedure was repeated. Multilevel analyses showed no significant effect of standing on divergent or convergent thinking test performance. Our results show that 30 min of standing does not affect creativity in VET students. 相似文献
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Daniel Preece Sarah B. Williams Richard Lam Renate Weller 《Anatomical sciences education》2013,6(4):216-224
Three‐dimensional (3D) information plays an important part in medical and veterinary education. Appreciating complex 3D spatial relationships requires a strong foundational understanding of anatomy and mental 3D visualization skills. Novel learning resources have been introduced to anatomy training to achieve this. Objective evaluation of their comparative efficacies remains scarce in the literature. This study developed and evaluated the use of a physical model in demonstrating the complex spatial relationships of the equine foot. It was hypothesized that the newly developed physical model would be more effective for students to learn magnetic resonance imaging (MRI) anatomy of the foot than textbooks or computer‐based 3D models. Third year veterinary medicine students were randomly assigned to one of three teaching aid groups (physical model; textbooks; 3D computer model). The comparative efficacies of the three teaching aids were assessed through students' abilities to identify anatomical structures on MR images. Overall mean MRI assessment scores were significantly higher in students utilizing the physical model (86.39%) compared with students using textbooks (62.61%) and the 3D computer model (63.68%) (P < 0.001), with no significant difference between the textbook and 3D computer model groups (P = 0.685). Student feedback was also more positive in the physical model group compared with both the textbook and 3D computer model groups. Our results suggest that physical models may hold a significant advantage over alternative learning resources in enhancing visuospatial and 3D understanding of complex anatomical architecture, and that 3D computer models have significant limitations with regards to 3D learning. Anat Sci Educ 6: 216–224. © 2013 American Association of Anatomists. 相似文献
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Liane Kaufmann Margarete Delazer Renate Pohl Carlo Semenza Ann Dowker 《Educational Research and Evaluation》2013,19(5):405-431
The present study compared the relative effects of 2 educational programs on kindergarten children. The experimental group took part in a numeracy-specific program, which focused on conceptual knowledge. Children were taught basic numerical skills such as understanding and handling numbers and their relations as well as counting principles. The control group participated in a more general program which involved training in procedural skills. Results revealed significant learning effects in the children who participated in the numeracy program particularly for counting sequences and mental calculation. Since neither group was explicitly trained in mental calculation, our findings suggest that a learning transfer took place in the experimental group. 相似文献
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