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X-ray photoelectron spectroscopy of a complicated ceramic oxide of the system BeO - TiO - C.
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- Glass & Ceramics, 2011, v. 67, n. 9/10, p. 322, doi. 10.1007/s10717-011-9289-9
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- Article
Estimate of the solubility of titanium in beryllium oxide based on quantum-chemical calculations.
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- Glass & Ceramics, 2007, v. 64, n. 11/12, p. 439, doi. 10.1007/s10717-007-0108-2
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- Article
Velocity and absorption of ultrasound in beryllium oxide ceramic.
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- Glass & Ceramics, 2006, v. 63, n. 11/12, p. 425, doi. 10.1007/s10717-006-0140-7
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- Article
Temperature Dependence of Luminescence in Beryllium Ceramics.
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- Glass & Ceramics, 2003, v. 60, n. 3/4, p. 120, doi. 10.1023/A:1024700519278
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- Article
Up-conversion multiwave (White) luminescence in the visible spectral range under excitation by IR laser diodes in the active BaYF:Yb,Pr medium.
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- Optics & Spectroscopy, 2011, v. 111, n. 2, p. 273, doi. 10.1134/S0030400X1108025X
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- Article
USING OF PLANT RAW MATERIALS IN THE PRODUCTION OF PROPHYLACTIC YOGURTS.
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- Food Science & Technology (2073-8684), 2020, v. 14, n. 2, p. 4, doi. 10.15673/fst.v14i2.1723
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- Article
High-Temperature Creep of Fibrous Metal-Matrix Composites under Varying Stresses.
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- Mechanics of Composite Materials, 2004, v. 40, n. 4, p. 341, doi. 10.1023/B:MOCM.0000039750.96741.2e
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- Article
Intrinsic point defects and electron-energetic characteristics of hexagonal monoxide of beryllium.
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- Journal of Structural Chemistry, 2006, v. 47, n. 4, p. 760, doi. 10.1007/s10947-006-0366-9
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- Article
Lattice Dynamics in LaTa<sub>2-2x</sub>Nb<sub>2x</sub>VO<sub>9-δ</sub> (x=0–0.1) Solid Solutions.
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- Journal of Structural Chemistry, 2003, v. 44, n. 2, p. 206, doi. 10.1023/A:1025538405554
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- Article
Thermal Conductivity and Prospects for Application of BeO Ceramic in Electronics.
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- Glass & Ceramics, 2015, v. 71, n. 11/12, p. 387, doi. 10.1007/s10717-015-9694-6
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- Article
Interaction of electromagnetic waves in a waveguide with very thin wires.
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- Journal of Communications Technology & Electronics, 2011, v. 56, n. 10, p. 1193, doi. 10.1134/S1064226911100123
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- Article
MAGNETIZATION OF BERYLLIUM MONOXIDE (BeO) WITHOUT MAGNETIC IMPURITIES:: A FIRST-PRINCIPLES STUDY.
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- International Journal of Modern Physics B: Condensed Matter Physics; Statistical Physics; Applied Physics, 2008, v. 22, n. 28, p. 4987, doi. 10.1142/S0217979208049248
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- Article
Growth of Oxide Fibers by the Internal Crystallization Method.
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- Crystallography Reports, 2002, v. 47, n. 7, p. S53, doi. 10.1134/1.1529959
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- Article
Electrodynamic Properties of (BeO + TiO<sub>2</sub>)-Ceramics in the Centimeter Wavelength Range.
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- Refractories & Industrial Ceramics, 2024, v. 64, n. 5, p. 555, doi. 10.1007/s11148-024-00889-3
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- Article
Electrophysical Properties of BeO + 30 wt.% TiO<sub>2</sub> Ceramics Sintered at Elevated Temperatures.
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- Refractories & Industrial Ceramics, 2022, v. 63, n. 3, p. 315, doi. 10.1007/s11148-022-00728-3
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- Article
BT-30 Ceramic Electrophysical Properties.
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- Refractories & Industrial Ceramics, 2020, v. 61, n. 3, p. 341, doi. 10.1007/s11148-020-00484-2
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Features of the Preparation and Study of Electrophysical Characteristics (BeO+TiO2)-Ceramics by Impedance Spectroscopy.
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- Refractories & Industrial Ceramics, 2019, v. 60, n. 3, p. 309, doi. 10.1007/s11148-019-00359-1
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Composite (BeO + TiO<sub>2</sub>)-Ceramic for Electronic Engineering and Other Fields of Technology (Review).
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- Refractories & Industrial Ceramics, 2018, v. 58, n. 6, p. 687, doi. 10.1007/s11148-018-0168-6
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- Article
Production Features of Preparation and Properties of Ceramic Objects Made from a Mixture of Lightlyand Highly-Fired BeO Powder.
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- Refractories & Industrial Ceramics, 2016, v. 57, n. 4, p. 423, doi. 10.1007/s11148-016-9997-3
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- Article
Results from Study of a Pneumatic System for Transporting Nanoparticle-Bearing Lime Dust at the Serov Ferroalloys Plant.
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- Refractories & Industrial Ceramics, 2016, v. 56, n. 6, p. 583, doi. 10.1007/s11148-016-9892-y
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- Article
Beryllium Oxide Powder Microstructure During Production Processing.
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- Refractories & Industrial Ceramics, 2016, v. 56, n. 6, p. 656, doi. 10.1007/s11148-016-9907-8
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- Article
Effect of Impregnation by Sodium Carbonate Solutions on the Properties of a Beryllium Oxide Ceramic.
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- Refractories & Industrial Ceramics, 2014, v. 54, n. 5, p. 381, doi. 10.1007/s11148-014-9615-1
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- Article
Impurity Phases in Beryllium Oxide Ceramic.
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- Refractories & Industrial Ceramics, 2013, v. 53, n. 5, p. 338, doi. 10.1007/s11148-013-9523-9
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- Article
Composition of beryllium oxide ceramics.
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- Refractories & Industrial Ceramics, 2010, v. 51, n. 5, p. 377, doi. 10.1007/s11148-011-9329-6
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Single crystals and light-transmitting BeO-ceramic for electronic technology.
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- Refractories & Industrial Ceramics, 2010, v. 51, n. 3, p. 167, doi. 10.1007/s11148-010-9282-9
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- Article
Thermal conductivity of beryllium oxide ceramic.
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- Refractories & Industrial Ceramics, 2009, v. 50, n. 6, p. 465, doi. 10.1007/s11148-010-9239-z
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- Article
Microstructure and electric conductivity of composite (BeO + TiO<sub>2</sub>) ceramics.
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- Refractories & Industrial Ceramics, 2007, v. 48, n. 6, p. 429, doi. 10.1007/s11148-008-9012-8
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- Article
First-principle quantum-chemical calculations of several thermomechanical parameters of beryllium ceramics.
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- Refractories & Industrial Ceramics, 2006, v. 47, n. 5, p. 310, doi. 10.1007/s11148-006-0115-9
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- Article
Proton magnetic resonance and the state of hydrogen in beryllium hydroxide.
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- Refractories & Industrial Ceramics, 2005, v. 46, n. 4, p. 273, doi. 10.1007/s11148-006-0023-z
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- Article
Transparent Beryllia Ceramics for Laser Technology and Ionizing Radiation Dosimetry.
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- Refractories & Industrial Ceramics, 2004, v. 45, n. 4, p. 266, doi. 10.1023/B:REFR.0000046509.70557.d6
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- Article
Luminescence of a Transparent Alumina Ceramic Doped with Chromium and Titanium.
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- Refractories & Industrial Ceramics, 2003, v. 44, n. 2, p. 94, doi. 10.1023/A:1024763127088
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- Article
Electronic structure and properties of beryllium oxide.
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- Inorganic Materials, 2009, v. 45, n. 3, p. 223, doi. 10.1134/S0020168509030017
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- Article
Ultrasound velocity and absorption in BeO, Al<sub>2</sub>O<sub>3</sub>, ZrO<sub>2</sub>, and SiO<sub>2</sub> ceramics.
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- Inorganic Materials, 2007, v. 43, n. 12, p. 1361, doi. 10.1134/S0020168507120205
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Effect of heat treatment on the electronic spectrum and mechanical properties of BeO ceramics.
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- Inorganic Materials, 2006, v. 42, n. 10, p. 1168, doi. 10.1134/S0020168506100207
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- Article
Effect of Surface Roughness on the Strength of Sapphire Fibers.
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- Journal of Surface Investigation: X-Ray, Synchrotron & Neutron Techniques, 2024, v. 18, n. 1, p. 84, doi. 10.1134/S102745102401018X
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- Article
Сomposites with a Matrix Based on Niobium and Molybdenum Reinforced with Sapphire Fibers.
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- Journal of Surface Investigation: X-Ray, Synchrotron & Neutron Techniques, 2023, v. 17, n. 5, p. 978, doi. 10.1134/S1027451023050063
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Composite with a Titanium-Based Matrix Reinforced with Sapphire Fibers.
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- Journal of Surface Investigation: X-Ray, Synchrotron & Neutron Techniques, 2022, v. 16, n. 1, p. 163, doi. 10.1134/S1027451022010244
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Layered-Fibrous Composite with a Niobium-Based Matrix Reinforced with Single-Crystal Sapphire Fibers.
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- Journal of Surface Investigation: X-Ray, Synchrotron & Neutron Techniques, 2020, v. 14, n. 6, p. 1126, doi. 10.1134/S1027451020060075
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- Article
Preparation, Structure, and Mechanical Properties of a Mo–Si–B Layered Composite.
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- Journal of Surface Investigation: X-Ray, Synchrotron & Neutron Techniques, 2019, v. 13, n. 3, p. 417, doi. 10.1134/S102745101903008X
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- Article
Structure and Characteristics of the Fracturing of Layered Ni-Al Composites.
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- Journal of Surface Investigation: X-Ray, Synchrotron & Neutron Techniques, 2017, v. 11, n. 6, p. 1145, doi. 10.1134/S1027451017060118
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- Article