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差异教学:让学生的个性思维精彩绽放 被引量:1
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作者 林俊 《教育研究与评论(小学教育教学)》 2013年第4期18-22,共5页
课堂教学应该关注学生的生命状态,尊重学生之间的差异,满足学生的不同发展需求,鼓励和促进学生的个性化发展。没有思维的碰撞和心灵的交流,就不能彰显学生的个性思维,就不能使课堂充满生命的活力。多元化思考、序列化探究与个性化... 课堂教学应该关注学生的生命状态,尊重学生之间的差异,满足学生的不同发展需求,鼓励和促进学生的个性化发展。没有思维的碰撞和心灵的交流,就不能彰显学生的个性思维,就不能使课堂充满生命的活力。多元化思考、序列化探究与个性化表征,能让不同层次的学生在课堂上真正活起来。 展开更多
关键词 差异教学 多元化思考 序列化探究 个性化表征
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Individualized Pixel Synthesis and Characterization of Combinatorial Materials Chips 被引量:7
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作者 Xiao-Dong Xiang Gang Wang +2 位作者 Xiaokun Zhang Yong Xiang Hong Wang 《Engineering》 SCIE EI 2015年第2期225-233,共9页
Conventionally, an experimentally determined phase diagram requires studies of phase formation at a range of temperatures for each composition, which takes years of effort from multiple research groups. Combinatorial ... Conventionally, an experimentally determined phase diagram requires studies of phase formation at a range of temperatures for each composition, which takes years of effort from multiple research groups. Combinatorial materials chip technology, featuring high-throughput synthesis and characterization, is able to determine the phase diagram of an entire composition spread of a binary or ternary system at a single temperature on one materials library, which, though significantly increasing efficiency, still requires many libraries processed at a series of temperatures in order to complete a phase diagram. In this paper, we propose a "one-chip method" to construct a complete phase diagram by individually synthesizing each pixel step by step with a progressive pulse of energy to heat at different temperatures while monitoring the phase evolution on the pixel in situ in real time. Repeating this process pixel by pixel throughout the whole chip allows the entire binary or ternary phase diagram to be mapped on one chip in a single experiment. The feasibility of this methodology is demonstrated in a study of a Ge-Sb-Te ternary alloy system, on which the amorphouscrystalline phase boundary is determined. 展开更多
关键词 combinatorial materials chip phase diagram pixel synthesis in-situ characterization phase-boundary determination
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