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Updated: Jul 4, 2025

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Measuring the Densities of Aqueous Glasses at Cryogenic Temperatures
Published on: June 28, 2017
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对1989年NIST常量气体温度数据的小修正
1Applied Chemicals and Materials Division, National Institute of Standards and Technology, Boulder, Colorado, 80305-3337, USA.
概括
用精细的热膨胀率和气非理想性来更新气体温度计数据. 这些修正稍微增加了热力学温度,可能会影响未来的温度尺度建议.
科学领域:
- 热力学是一种热力学.
- 计量学 计量学 计量学
- 测温仪测温仪是用来测温的.
背景情况:
- 恒定体积气体温度计提供了热力学温度的数据.
- 1968年的国际实用温度尺度 (IPTS-68) 是一个共识尺度.
- 以前的1989年的数据需要改进,因为新的科学理解.
研究的目的:
- 为了纠正以前发布的恒定体积气体温度计数据.
- 改进热力学温度和IPTS-68.8之间的差异.
- 评估更新的物理性能数据对温度尺度比较的影响.
主要方法:
- 修订气体温度计数据,使用精细估计气球材料的热膨胀率 (发表于1990年).
- 根据更好的知识,改进对气非理想性的纠正.
- 分析这些调整对热力学温度测量的净效应.
主要成果:
- 精制的热膨胀率使热力学温度增加了1-3mK.
- 改进的非理想性校正使热力学温度降低了0.1-0.5mK.
- 净效应导致热力学温度略有增加,在测量温度范围 (505K到933K) 中从0.5mK到3mK不等.
结论:
- 修正后的热力学温度略高于之前报告的温度.
- 这些纠正虽然小于实验不确定性,但对未来的温度尺度建议具有重要意义.
- 这些发现精确了热力学温度和高温范围内共识尺度之间的关系.
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