A. S. Dworkin
Oak Ridge National Laboratory
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Featured researches published by A. S. Dworkin.
Journal of Chemical Physics | 1954
A. S. Dworkin; D. J. Sasmor; E. R. Van Artsdalen
The low‐temperature heat capacity of microcrystalline boron nitride has been measured up to 300°K. It has been found that in the range from 20 to 65°K the heat capacity follows a T2 relationship rather than the usual Debye T3 law, and this has been explained as resulting from the layered, quasi‐two‐dimensional lattice of boron nitride. The Debye‐type characteristic (two‐dimensional) temperature is θ2=598°K. At 298.16°K Cp=4.783 cal/mole deg and S0=3.673 eu, of which 0.034 has been extrapolated below 20°K. Derived thermodynamic functions have been tabulated at 10° intervals between 20 and 300°K. The heat of combustion of boron nitride in a conventional bomb calorimeter to yield amorphous boric oxide and elemental nitrogen has been determined to be 90.2±0.5 kcal/mole. From this value and other established thermal data the heat of formation of boron nitride is exothermic 60.7±0.7 kcal/mole.
Journal of Chemical Physics | 1961
H. R. Bronstein; A. S. Dworkin; M. A. Bredig
The electrical conductivity of KI-K solutions at 700 deg C is measured for 0 to 100% K concentration. The properties of KI-rich and K-rich solutions are discussed. (T.F.H.)
The Journal of Physical Chemistry | 1962
A. S. Dworkin; H. R. Bronstein; M. A. Bredig
The Journal of Physical Chemistry | 1960
A. S. Dworkin; R. B. Escue; E. R. Van Artsdalen
The Journal of Physical Chemistry | 1966
A. S. Dworkin; H. R. Bronstein; M. A. Bredig
Journal of Chemical Physics | 1962
H. R. Bronstein; A. S. Dworkin; M. A. Bredig
Journal of the American Chemical Society | 1956
E. R. Van Artsdalen; Duane Brown; A. S. Dworkin; F. J. Miller
Journal of the American Chemical Society | 1955
D. Smith; A. S. Dworkin; E. R. Van Artsdalen
Journal of the American Chemical Society | 1956
D. Smith; Duane Brown; A. S. Dworkin; D. J. Sasmor; E. R. Van Artsdalen
The Journal of Physical Chemistry | 1963
A. S. Dworkin; R. A. Sallach; H. R. Bronstein; M. A. Bredig; J. D. Corbett