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- W2034001829 abstract "Volume versus pressure data of 1-m-long polycrystalline potassium has been obtained as a function of hydrostatic pressure up to 7 kbars at 28.58 °C. The length change has been measured to an accuracy of less than 500 Å using a Fabry-Perot type He-Ne laser interferometer in a temperature-controlled environment with temperature variations ±0.001 °C. The isothermal bulk modulus B0 and its pressure derivative B′0 at atmospheric pressure and 28.58 °C are B0=31.01±0.02 kbars and B′0 =3.91±0.01, when the first-order Murnaghan equation is used; and B0=30.84±0.02 kbars and B′0 =4.16±0.02, when the Keane equation is used. The Keane equation yields B0″ =−0.145 kbar−1 in the applied pressure range. Various two- and three-parameter equations of state have been used to fit the measured pressure-volume data. The Keane and Birch equations represent the data most closely when these equations are extrapolated into a higher-pressure region." @default.
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- W2034001829 date "1981-01-01" @default.
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- W2034001829 title "Isothermal equations of state of potassium" @default.
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- W2034001829 doi "https://doi.org/10.1063/1.328439" @default.
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