The isobaric heat capacity of solid and liquid thorium tetrafluoride was determined by two calorimetry methods: drop calorimetry to obtain the enthalpy increments in the range from 430 to 1600 K and DSC to obtain the high-temperature heat capacity of solid and liquid thorium tetrafluoride using the step method. Adjustments to the experimental setups were developed and implemented to increase accuracy and reduce uncertainty of the obtained data.JRC.G.I.3-Nuclear Fuel Safet
The heat capacity of crystalline Th(NO&.5H,O has been determined by adiabatic calorimetry primar...
Abstract: Although precise heat-capacity data at high temperatures are very impor-tant for modern te...
The enthalpy increment data for the (Th,U)O2 and (U,Pu)O2 solid solutions are reviewed and complemen...
The isobaric heat capacity of solid and liquid thorium tetrafluoride was determined by two calorimet...
The isobaric heat capacity of solid and liquid thorium tetrafluoride was determined by two calorimet...
The isobaric heat capacity of solid and liquid thorium tetrafluoride was determined by two calorimet...
The isobaric heat capacity of solid and liquid thorium tetrafluoride was determined by two calorimet...
The isobaric heat capacity of solid and liquid thorium tetrafluoride was determined by two calorimet...
The isobaric heat capacity of solid and liquid thorium tetrafluoride was determined by two calorimet...
324-329For investigating the physico-chemical properties of thorium and its compounds, differential...
A measurement of the isothermal temperature coefficient of reactivity was made in December 1960 for ...
The isobaric specific heat capacity, cp, of liquid pentafluoroethane (R125) was measured with flow c...
The heat capacity of terbium metal was measured between 0.25 and 1.0 deg K. The high temperature dat...
The heat contents of high-purity uranium and uranium-fissium alloys containing 3, 5, and 8 wt.% fiss...
"NAA-SR-4924 ; Chemistry--General.""Contract AT(11-1)-GEN-8 ; Issued: February 15,1960."Includes bib...
The heat capacity of crystalline Th(NO&.5H,O has been determined by adiabatic calorimetry primar...
Abstract: Although precise heat-capacity data at high temperatures are very impor-tant for modern te...
The enthalpy increment data for the (Th,U)O2 and (U,Pu)O2 solid solutions are reviewed and complemen...
The isobaric heat capacity of solid and liquid thorium tetrafluoride was determined by two calorimet...
The isobaric heat capacity of solid and liquid thorium tetrafluoride was determined by two calorimet...
The isobaric heat capacity of solid and liquid thorium tetrafluoride was determined by two calorimet...
The isobaric heat capacity of solid and liquid thorium tetrafluoride was determined by two calorimet...
The isobaric heat capacity of solid and liquid thorium tetrafluoride was determined by two calorimet...
The isobaric heat capacity of solid and liquid thorium tetrafluoride was determined by two calorimet...
324-329For investigating the physico-chemical properties of thorium and its compounds, differential...
A measurement of the isothermal temperature coefficient of reactivity was made in December 1960 for ...
The isobaric specific heat capacity, cp, of liquid pentafluoroethane (R125) was measured with flow c...
The heat capacity of terbium metal was measured between 0.25 and 1.0 deg K. The high temperature dat...
The heat contents of high-purity uranium and uranium-fissium alloys containing 3, 5, and 8 wt.% fiss...
"NAA-SR-4924 ; Chemistry--General.""Contract AT(11-1)-GEN-8 ; Issued: February 15,1960."Includes bib...
The heat capacity of crystalline Th(NO&.5H,O has been determined by adiabatic calorimetry primar...
Abstract: Although precise heat-capacity data at high temperatures are very impor-tant for modern te...
The enthalpy increment data for the (Th,U)O2 and (U,Pu)O2 solid solutions are reviewed and complemen...