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1. Heat Capacity of Pb10 –xPrx(GeO4)2 +x(VO4)4– x (x = 0, 1, 2, 3) Apatites in the Range 350–1050 K.

2. Heat capacity of rare-earth stannates in the range 350-1000 K.

3. Heat capacity of the MVO (M = Al, Ga, In, Tl) orthovanadates.

4. High-Temperature Heat Capacity and Thermodynamic Functions of the LiNaGe4O9 Germanate.

5. Crystal Structure and Thermodynamic Properties of the RGaTi2O7 (R = Sm, Ho, Tm, Yb) Titanates.

6. Heat capacity of InCuO in the range 364-984 K.

7. High-Temperature Heat Capacity and Thermodynamic Properties of the CaY2Ge3O10 and CaY2Ge4O12 Germanates.

8. Synthesis, Crystal Structure, and Physicochemical Properties of Bi4–xPrxTi3O12 (x = 0.4, 0.8, 1.2, 1.6) Solid Solutions.

9. Structure and Thermodynamic Properties of the DyGaTi2O7 and EuGaTi2O7 Titanates.

10. Heat Capacity and Thermodynamic Properties of Gd2Ge2O7 from 350 to 1000 K.

11. High-Temperature Heat Capacity of Y0.65Pr0.35BiGeO5 and Y0.65Nd0.35BiGeO5 in the Range 350-1000 K.

12. Heat Capacity and Thermodynamic Functions of ErInGe2O7 and TbInGe2O7 Germanates in the Range 350–1000 K.

13. High-temperature heat capacity and thermodynamic properties of TbSnO.

14. Crystal Structure, Luminescence, and Thermodynamic Properties of Pb10 –xEux(GeO4)2 +x(VO4)4 –x (x = 0.1, 0.2, 0.3) Substituted Apatites.

15. Synthesis and high-temperature heat capacity of GdSnO.

16. High-temperature specific heat of thulium orthovanadate TmVO within the range 379-1026 K.

17. Synthesis, Crystal Structure and Thermodynamic Properties of LuGaTi2O7.

18. Synthesis, Structure, and Thermophysical Properties of EuGaGe2O7.

19. Heat Capacity of the Gd2Ti2O7 and Lu2Ti2O7 Pyrochlores in the Range 350–1000 K.

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