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课标课程背景下“过程性知识”的考查途径研究 被引量:2
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作者 陈中峰 《福建中学数学》 2009年第12期6-9,共4页
《普通高中数学课程标准(实验)》在“课程的基本理念”部分明确指出“高中数学课程应力求通过各种不同形式的自主学习、探究活动,让学生体验数学发现和创造的历程,发展他们的创新意识.”在“实施建议”部分也要求“教师要创设适当... 《普通高中数学课程标准(实验)》在“课程的基本理念”部分明确指出“高中数学课程应力求通过各种不同形式的自主学习、探究活动,让学生体验数学发现和创造的历程,发展他们的创新意识.”在“实施建议”部分也要求“教师要创设适当的问题情境.鼓励学生发现数学的规律和问题解决的途径,使他们经历知识形成的过程.”实际上。“过程”本身也是一种知识, 展开更多
关键词 课标课程 “过程性知识” 中学 数学教学
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The Role of Storytelling in Personal Knowledge Convey
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作者 Chengning Yang 《Journalism and Mass Communication》 2016年第2期53-59,共7页
The relative difficulty of capturing and conveying knowledge is determined on the diversity of knowledge types. It is necessary to interpret the consciously capturing process of the knowledge that is formed unconsciou... The relative difficulty of capturing and conveying knowledge is determined on the diversity of knowledge types. It is necessary to interpret the consciously capturing process of the knowledge that is formed unconsciously. Storytelling is important in the capturing and conveying of tacit knowledge. Culture, structure, system, and the knowledge holders within the organization also affect the transfer of personal knowledge. The company M, has successfully created knowledge based on transfer of personal knowledge by leveraging the organization mechanism "The board of advisors". In order to elucidate the process, the author analyzed the recordings of the passing on contents using the protocol analysis. 展开更多
关键词 personal knowledge STORYTELLING "KOMONKAI" Protocol analysis
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Metacognition in Solving Process of Basic Electric Circuit ProblemmComparison of Metacognitive Characteristics between Non-major and Major Students in Electric Engineering
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作者 Atsuo Murata Yukio Ohta 《Computer Technology and Application》 2013年第8期415-423,共9页
There are learners who cannot solve practical problems in spite of mastering basic scientific knowledge and formula necessary for the solution. One of the reasons might be attributed to the lack in metacognitive abili... There are learners who cannot solve practical problems in spite of mastering basic scientific knowledge and formula necessary for the solution. One of the reasons might be attributed to the lack in metacognitive abilities. The aim of this study was to compare the metacognitive characteristics between non-major and major students in electric engineering and clarify the difference of metacognitive process between these two groups when solving basic problems of electronic circuit. In the experiment, the solving process was compared between non-major and major students in electric engineering using five basic problems. We found that the scores on prediction of result and confidence of own answer differed significantly between non-major and major students, and inferred that the difference of performance was due to the lack in metacognitive ability, especially the plan and the execution abilities. Both prediction of results and confidence of own answer were also found to play a significant role in effective problem solving as important components (subsystems) of metacognition. 展开更多
关键词 METACOGNITION plan execution prediction of result confidence of answer major and non-major in electric engineering.
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