The sub-ambient heat capacity of thallium(I) n-heptanoate is characterized by two sets of transitions between 262 and 301 K. The lowest transition (at 262.8 K) has a maximum Cp, m/R [approximate] 700. Next, a bifurcated pair (at 267.8 and 271.7 K) has (Cp, m/R)'s [approximate] 200, and the highest bifurcated pair (at 297.2 and 300.9 K) has maximum (Cp, m/R)'s [approximate] 450 and [approximate] 16000. The corresponding values of [Delta]trsSmo/R for the two sets are about 1.935 and 2.215. The heat capacities are in fair accord with the d.s.c. values of Fernandez-Martin, Lopez de la Fuente, and Cheda over the common range of superambient values. At 298.15 K the values of {Smo(T)-Smo(0)}/R, {Hmo(T)-Hmo(0)}/R, and -{Gmo(T)-Hmo(0)}/RT are 38.58,...
A model based on Keating's approach is applied to the hcp metal thallium to work out its lattice hea...
The adiabatic calorimetric study (at 5 to 350 K) of lithium n-pentanoate and n-heptanoate proved tha...
The heat capacity of lithium 2-methylpropanoate was measured by equilibrium adiabatic calorimetry at...
The sub-ambient heat capacity of thallium(I) n-heptanoate is characterized by two sets of transition...
The heat capacity of thallium(I) n-heptanoate has been remeasured on a new sample on which the prepa...
The sub-ambient heat capacity of thallium(I) n-hexanoate is characterized by transitions at 203.5 an...
The heat capacity of thallium(I) n-heptanoate has been remeasured on a new sample on which the prepa...
The heat capacity of thallium(I) n-decanoate was measured by adiabatic calorimetry from 6 to 350 K a...
The heat capacity of thallium(I) butanoate has been determined by adiabatic calorimetry from tempera...
The thermal behavior of thallium(I) n-dodecanoate was studied by adiabatic calorimetry from 6 to 350...
The thermal behavior of thallium(I) n-dodecanoate was studied by adiabatic calorimetry from 6 to 350...
The heat capacity of thallium(I) n-tetradecanoate was measured by adiabatic calorimetry to 350 K and...
Heat-capacity measurements by adiabatic calorimetry at temperature T = 5 K to 350 K were supplemente...
Five of the lower members of thallium(I) n-alkanoates were synthesized and recrystallized until thei...
The thermophysical properties of four lithium alkanoate salts (lithium n-butanoate, lithium n-pentan...
A model based on Keating's approach is applied to the hcp metal thallium to work out its lattice hea...
The adiabatic calorimetric study (at 5 to 350 K) of lithium n-pentanoate and n-heptanoate proved tha...
The heat capacity of lithium 2-methylpropanoate was measured by equilibrium adiabatic calorimetry at...
The sub-ambient heat capacity of thallium(I) n-heptanoate is characterized by two sets of transition...
The heat capacity of thallium(I) n-heptanoate has been remeasured on a new sample on which the prepa...
The sub-ambient heat capacity of thallium(I) n-hexanoate is characterized by transitions at 203.5 an...
The heat capacity of thallium(I) n-heptanoate has been remeasured on a new sample on which the prepa...
The heat capacity of thallium(I) n-decanoate was measured by adiabatic calorimetry from 6 to 350 K a...
The heat capacity of thallium(I) butanoate has been determined by adiabatic calorimetry from tempera...
The thermal behavior of thallium(I) n-dodecanoate was studied by adiabatic calorimetry from 6 to 350...
The thermal behavior of thallium(I) n-dodecanoate was studied by adiabatic calorimetry from 6 to 350...
The heat capacity of thallium(I) n-tetradecanoate was measured by adiabatic calorimetry to 350 K and...
Heat-capacity measurements by adiabatic calorimetry at temperature T = 5 K to 350 K were supplemente...
Five of the lower members of thallium(I) n-alkanoates were synthesized and recrystallized until thei...
The thermophysical properties of four lithium alkanoate salts (lithium n-butanoate, lithium n-pentan...
A model based on Keating's approach is applied to the hcp metal thallium to work out its lattice hea...
The adiabatic calorimetric study (at 5 to 350 K) of lithium n-pentanoate and n-heptanoate proved tha...
The heat capacity of lithium 2-methylpropanoate was measured by equilibrium adiabatic calorimetry at...