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Experimental investigation and thermodynamic assessment of the BaCl<sub>2</sub>–CeCl<sub>3</sub> system
Experimental investigation and thermodynamic assessment of the BaCl2–CeCl3 system
Low- and high-temperature heat capacity of metallic technetium
Low- and high-temperature heat capacity of metallic technetium
Learnings Networks and Professional Development in Building Energy Management Systems Industry
Learnings Networks and Professional Development in Building Energy Management Systems Industry
Experimental investigation and thermodynamic modelling of the ThF<sub>4</sub>-PuF<sub>3</sub> phase diagram
Experimental investigation and thermodynamic modelling of the ThF4-PuF3 phase diagram
Ternary System CsI-PbI<sub>2</sub>-BiI<sub>3</sub> and Thermodynamic Stability of Cesium Metal Halide Perovskites
Ternary System CsI-PbI2-BiI3 and Thermodynamic Stability of Cesium Metal Halide Perovskites
Structural Studies and Thermal Analysis in the Cs<sub>2</sub>MoO<sub>4</sub>-PbMoO<sub>4</sub> System with Elucidation of β-Cs<sub>2</sub>Pb(MoO<sub>4</sub>)<sub>2</sub>
Structural Studies and Thermal Analysis in the Cs2MoO4-PbMoO4 System with Elucidation of β-Cs2Pb(MoO4)2
Low-Temperature Heat Capacity of CsPbI<sub>3</sub>, Cs<sub>4</sub>PbI<sub>6</sub>, and Cs<sub>3</sub>Bi<sub>2</sub>I<sub>9</sub>
Low-Temperature Heat Capacity of CsPbI3, Cs4PbI6, and Cs3Bi2I9
Learning and Knowledge Transfer of Professionals within the Building Services Sector
Learning and Knowledge Transfer of Professionals within the Building Services Sector
A promising fuel for fast neutron spectrum Molten Salt Reactor
A promising fuel for fast neutron spectrum Molten Salt Reactor: NaCl-ThCl4-PuCl3
Using the Quasi-chemical formalism beyond the phase Diagram
Using the Quasi-chemical formalism beyond the phase Diagram: Density and viscosity models for molten salt fuel systems
Correction: Ocádiz Flores et al. Thermodynamic Description of the ACl-ThCl4 (A = Li, Na, K) Systems
Correction: Ocádiz Flores et al. Thermodynamic Description of the ACl-ThCl4 (A = Li, Na, K) Systems: Thermodynamic Description of the ACl-ThCl4 (A = Li, Na, K) Systems (Thermo, (2021), 1, 2, (122-133), 10.3390/thermo1020009)
Thermodynamic Assessment of the AF–CrF3 (A = Li, Na, K) and CrF2–CrF3 Systems
Thermodynamic Assessment of the AF–CrF3 (A = Li, Na, K) and CrF2–CrF3 Systems
Experimental studies and thermodynamic assessment of the Ba-Mo-O system by the CALPHAD method
Experimental studies and thermodynamic assessment of the Ba-Mo-O system by the CALPHAD method
Corrigendum to “Thermodynamics of soluble fission products cesium and iodine in the Molten Salt Reactor” [Journal of Nuclear Materials Volume 501 (2018) pages 238-252]
Corrigendum to “Thermodynamics of soluble fission products cesium and iodine in the Molten Salt Reactor” [Journal of Nuclear Materials Volume 501 (2018) pages 238-252]
Experimental and Computational Exploration of the NaF-ThF<sub>4</sub>Fuel System
Experimental and Computational Exploration of the NaF-ThF4Fuel System: Structure and Thermochemistry
Examination of the short-range structure of molten salts
Examination of the short-range structure of molten salts: ThF4, UF4, and related alkali actinide fluoride systems
New insights and coupled modelling of the structural and thermodynamic properties of the LiF-UF4 system
New insights and coupled modelling of the structural and thermodynamic properties of the LiF-UF4 system
Detecting forest response to droughts with global observations of vegetation water content
Detecting forest response to droughts with global observations of vegetation water content
Thermodynamic Description of the ACl-ThCl4 (A = Li, Na, K) Systems
Thermodynamic Description of the ACl-ThCl4 (A = Li, Na, K) Systems
Inertial Sensor-Based Lower Limb Joint Kinematics
Inertial Sensor-Based Lower Limb Joint Kinematics: A Methodological Systematic Review
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