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首页> 外文期刊>Journal of Chemical Education >Using Latex Balls and Acrylic Resin Plates To Investigate the Stacking Arrangement and Packing Efficiency of Metal Crystals
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Using Latex Balls and Acrylic Resin Plates To Investigate the Stacking Arrangement and Packing Efficiency of Metal Crystals

机译:使用乳胶球和丙烯酸树脂板调查金属晶体的堆叠排列和包装效率

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摘要

A high-school third-year or undergraduate first-semester general chemistry laboratory experiment introducing simple-cubic, face-centered cubic, body-centered cubic, and hexagonal closest packing unit cells is presented. Latex balls and acrylic resin plates are employed to make each atomic arrangement. The volume of the vacant space in each cell is measured by weighing water poured into the unit cell model, and the packing efficiency of each unit is obtained from the volume of vacant space. The observed values are compared with the theoretical calculations. Students can easily understand experimentally and theoretically that the packing efficiency of the face-centered cubic is the same as that of the hexagonal closest packing and significantly greater than that of the body-centered cubic. Moreover, they can understand the number of the neighboring atoms for any atom (coordination number) in each cell.
机译:提出了高中三年级或本科生第一学期的普通化学实验室实验,介绍了简单立方,面心立方,体心立方和六边形最接近的包装单元。乳胶球和丙烯酸树脂板被用来进行每个原子排列。通过称量注入单元格模型中的水来测量每个单元格中的空闲空间的体积,并从空闲空间的体积中获得每个单元的包装效率。将观测值与理论计算值进行比较。通过实验和理论,学生可以很容易地理解,以面心为中心的立方的堆积效率与六边形最接近的堆积的效率相同,并且显着大于以体心为中心的立方。而且,他们可以了解每个单元中任何原子的相邻原子数(配位数)。

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