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WATERS CHARACTER FROM DIELECTRIC RELAXATION ABOVE ITS T-G

机译:T-G上方介电弛豫的Waters特性

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To determine the merits of the conjecture for a distinct phase of liquid water below 160 K, and of its computer simulation [Nature 380, 328 (1996)], the dielectric relaxation times of pure bulk water and pure water sequestered in the pores of various polymer matrices are examined. The new data combined with the literature values show that the molecular kinetics of pure water at 273 K is connected by a continuous path with that of sequestered water at 160 K and below. This finding seems to remove the basis for the conjecture of a distinct phase of water in the 136-160 K range, and for its phase transformation to normal water in the 160-230 K range. (C) 1996 American Institute of Physics. [References: 23]
机译:为了确定在160 K以下的液态水不同相的猜想的优缺点及其计算机模拟[Nature 380,328(1996)],纯净散装水和纯净水的介电弛豫时间被隔离在各种孔隙中检查聚合物基质。新数据与文献数据相结合表明,纯水在273 K时的分子动力学是通过连续的路径与160 K及以下的螯合水的分子动力学连接的。这一发现似乎消除了推测水在136-160 K范围内的相的基础,以及将其相转变为160-230 K范围内的普通水的基础。 (C)1996年美国物理研究所。 [参考:23]

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