36 results on '"Nikolaevskaya, Elena"'
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2. Weighted Least Squares Perturbation Theory
3. Synthesis, characterization and redox properties of Ar–C=N→Ge←N=C–Ar containing system
4. Multidrug- and Extensively Drug-Resistant Mycobacterium tuberculosis Bejjing Clades, Ukraine, 2015
5. Germanium‐centered Ion Radicals
6. Weighted Least Squares Perturbation Theory
7. Highly soluble germanium dioxide as a new source of germanium for derivatization with organic compounds
8. 2-Imino-2,3-dihydrobenzoxazole—a useful platform for designing rare- and alkaline earth complexes with variable di- and trianionic O,N,N, ligands
9. Synthesis, characterization and redox properties of Ar-C=N -> Ge <- N=C-Ar containing system
10. Supramolecular D⋯A-layered structures based on germanium complexes with 2,3-dihydroxynaphthalene and N,N′-bidentate ligands
11. Programming with Multiple Precision
12. Parallel Method for Solution SLAE with Multiple Precision
13. What Is MPFR?
14. Solution of Linear Algebraic Equations by Gauss Method
15. Why Does the Precision Improve?
16. GMP for С++
17. MPIBNCpack Library
18. Parallel Calculations Using MPI
19. About GMP
20. Easily electroreducible halogen-free germanium complexes with biologically active pyridines
21. Antioxidant Properties of Adrenaline in the Presence of Ge‐132
22. Germanium Dioxide and the Antioxidant Properties of Catechols
23. Halogen-free GeO2 conversion: electrochemical reduction vs. complexation in (DTBC)2Ge[Py(CN)n] (n = 0…2) complexes
24. Halogen-free GeO2 conversion: electrochemical reduction vs. complexation in (DTBC)2Ge[Py(CN)n] (n = 0…2) complexes.
25. Parallel Calculations Using MPI.
26. GMP for С++.
27. What Is MPFR?
28. Solution of Linear Algebraic Equations by Gauss Method.
29. About GMP.
30. Parallel Method for Solution SLAE with Multiple Precision.
31. MPIBNCpack Library.
32. Why Does the Precision Improve?
33. FrontMatter.
34. BackMatter.
35. Supramolecular D⋯A-layered structures based on germanium complexes with 2,3-dihydroxynaphthalene and N , N '-bidentate ligands.
36. Halogen-free GeO 2 conversion: electrochemical reduction vs. complexation in (DTBC) 2 Ge[Py(CN) n ] (n = 0…2) complexes.
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