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   Structure and lattice dynamics of solids.
      Chemical bonds and crystalline fields.
         Hyperfine interaction.
            Chemical shift of nuclear magnetic resonance.
57Fe-Mössbauer study of electrically conductive alkaline iron vanadate glasses
Koken Matsuda, Kazuhiko Akiyama, Tetsuaki Nishida
J. Radioanal. Nucl. Chem., Vol: 299, No: 1 , published: 01 January 2014
Local structure and connectivity in lithium phosphate glasses: A solid-state {31}P MAS NMR and 2D exchange investigation
Alam T.M., Brow R.K.
J. Non-Cryst. Solids , Vol: 223, No: 1-2 , 1998
Solid-state NMR investigation of phosphorus in aluminoborosilicate glasses
Rong C., Wong-Moon K.C., Li H. et al.
J. Non-Cryst. Solids , Vol: 223, No: 1-2 , 1998
Connectivities of coordination polyhedra in phosphate glasses from {31}P double-quantum NMR spectroscopy
Feike M., Jager C., Spiess H.W.
J. Non-Cryst. Solids , Vol: 223, No: 3 , 1998
Observation of {235}U NMR in the antiferromagnetic state of UO[2]
Ikushima K., Tsutsui S., Saeki M., Nasu S., Date M.
J. Phys. Soc. Jpn., Vol: 67, No: 1 , 1998
A nuclear magnetic resonance study of tetramethylammonium cadmium chloride (TMCC)
Mulla-Osman S., Michel D., Czapla Z., Hoffmann W.-D.
J. Phys.: Condens. Matter. , Vol: 10, No: 11 , 1998
Nuclear magnetic resonance magnetic dipolar spectral density functions for two-dimensional lattice diffusion: Hexagonal
MacDonald D.H., Sholl C.A., Stephenson P.C.L.
J. Phys.: Condens. Matter. , Vol: 10, No: 2 , 1998
Further tests of the coupling model of ionic motions in glassy fast ionic conductors: Conductivity relaxation and {7}Li and {11}B NMR in χLi[2]S-(1-χ)B[2]S[3]
Ngai K.L.
Solid State Ionics, Vol: 105, No: 1-4 , 1998
An NMR investigation of the formation of the crystalline complex (PEO)[3]NaClO[4]
Sawers L.J., Tunstall D.P., Bruce P.G.
Solid State Ionics, Vol: 107, No: 1-2 , 1998
Электронный спиновой резонанс и ядерный магнитный резонанс макроструктур натрия в сильно облученных кристаллах NaCl-K: проявление квазиодномерного поведения электронов
Черкасов Ф.Г., Мустафин Р.Г., Львов С.Г., Денисенко Г.А., ден Хартог Х., Вайнштейн Д.И.
Письма в ЖЭТФ, Vol: 67, No: 3-4 , 1998
Исследование ЯМР {6}Li в LiNbO[3]
Яценко А.В.
Физ. тверд. тела, Vol: 40, No: 1 , 1998
High-resolution multiple quantum MAS NMR spectroscopy of half-integer quadrupolar nuclei.(Chem. Phys. Letters 249 (1996) 210). Erratum
Wu G., Rovnyak D., Sun B., et al.
Chem. Phys. Lett., Vol: 257, No: 3-4 , 1996
The effect of spin decoupling on line shapes in solid-state nuclear magnetic resonance
Sachleben Joseph R., Caldarelli Stefano, Emsley Lyndon
J. Chem. Phys., Vol: 104, No: 7 , 1996
NMR study of choline methyl group of phospholides
Zhou Z., Okumura Y., Sunamoto J.
Proc. Jap. Acad. B, Vol: 72, No: 2 , 1996
Optimization of chemical-shift-based polarization gradients in {1}H NMR spin-diffusion experiments on polymer blends with chemically similar constituents
Campbell G.C., VanderHart D.L.
J. Magn. Reson, Vol: 96, No: 1 , 1992
One-dimensional heteronuclear chemical-shift correlation using chemical-shift-selective filters
Uhrin D., Batta Gy., Kover K.E.
J. Magn. Reson, Vol: 97, No: 1 , 1992
Gradient-echo shifting in fast MRI techniques (GRASE imaging) for correction of field inhomogeneity errors and chemical shift
Feinberg D.A., Oshio K.
J. Magn. Reson, Vol: 97, No: 1 , 1992
A constant-time three-dimensional triple-resonance pulse scheme to correlate intraresidue {1}H{N}, {15}N, and {13}C` chemical shifts in {15}N-{13}C-labeled proteins
Clubb R.T., Thanabal V., Wagner G.
J. Magn. Reson, Vol: 97, No: 1 , 1992
Monitoring of photopolymerization processes by NMR imaging
Gunther U., Albert K., Grossa M.
J. Magn. Reson, Vol: 98, No: 3 , 1992