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瑜伽变体技术及教学应用 被引量:2
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作者 钟小燕 《湖南第一师范学院学报》 2015年第3期75-78,88,共5页
在瑜伽教学中,教师应用丰富的肢体语言教学变体能够提高整体教学效果,使课堂更具有吸引力;根据学生的个体需求和能力的差异性进行实际有效的体式变体教学,使肢体的练习更合理、更安全,能提高学生练习的兴趣与学习的积极性,也丰富了瑜伽... 在瑜伽教学中,教师应用丰富的肢体语言教学变体能够提高整体教学效果,使课堂更具有吸引力;根据学生的个体需求和能力的差异性进行实际有效的体式变体教学,使肢体的练习更合理、更安全,能提高学生练习的兴趣与学习的积极性,也丰富了瑜伽课堂教学的内涵。 展开更多
关键词 瑜伽技术 语言 体式变体
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信息的集约,译语的优化:歌词翻译变体研究 被引量:1
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作者 姚丽文 《长春理工大学学报(社会科学版)》 2012年第11期178-179,共2页
变译作为翻译的一个新范畴,相较于全译而言,可以实现原文信息的集约和译文的最优化,增强翻译的可操作性。歌词翻译中存在多种变体体式,如摘译、缩译、译述与改译等,其体式的选取与歌词的翻译目的息息相关。
关键词 歌词翻译 集约 优化 体式
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Popcorning-type cracking failure in thermohyperelastic packaging materials in the presence of “wet” and “dry” cavities
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作者 LI ZhiGang SHU XueFeng 《Science China Chemistry》 SCIE EI CAS 2013年第3期624-628,共5页
Thermal cracking occurs in the plastic packaging materials due to the presence of moisturized micro-cavities in the material.The moisture resident in the micro-cavities gives rise to the internal vapor pressure that d... Thermal cracking occurs in the plastic packaging materials due to the presence of moisturized micro-cavities in the material.The moisture resident in the micro-cavities gives rise to the internal vapor pressure that drives the thermal expansion of micro-cavities as temperature rises.The plastic packaging materials are considered a class of thermo-hyperelastic materials,thus allowing the micro-cavities to thermally expand to the substantial extent before the cracking failure.The micro-cavities can be moisture-abundant(i.e.,wet) or substantially dry when cracking occurs.Cracking appears to be almost certain in the presence of wet cavities.The possibility of cracking in dry cavities turns to be two-sided:when the initial volume fraction of the micro-cavities is relatively small,cracking cannot occur in the dry cavities regardless of the phase transition temperature;when the initial cavity volume fraction is relatively large,cracking tends to occur in the dry cavities especially when the phase transition temperature is large.Because of the two-sided cracking possibility,the dry-cavity cracking mode presents a scenario that might reveal the mechanism of popcorning-type cracking failure in plastic packaging materials. 展开更多
关键词 plastic packaging materials popcorning-type cracking failure micro-cavities
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