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14篇 您的检索式:作者名="Khromov"
    题名 作者 年代 出处 被引量
1The Flow of Vanadium-Bearing Materials in Industry显示文摘I. N. Monakhov S. V. Khromov P. I. Chernousov Yu. S. Yusfin 2004Metallurgist (-)2004,,7:1
2Helicopter sizing by statistics 显示文摘Rand O Khromov V 2004JAHS2004,49,3:1
3Helicopter sizing by statistics显示文摘Rand O Khromov V 2004Journal of the American Helicopter Society2004,49,3:1
4MgADP promotes a catch like state developed through force-calcium hysteresis in tonic smooth muscle显示文摘Khromov A Somlyo AV Somlyo AP 1998Biophys J1998,75,4:1
5The flow of vanadium bearing-materials in industry显示文摘MONAKHOV L N KHROMOV S V CHERNOUSOV P I YUSFIN YU S 2004Metallurgist2004,48,78:1
6Arrhythmogenic peroxynitrite-induced alterations in mammalian heart contractility and its prevention with quercetin-filled liposomes显示文摘A. Soloviev A. Stefanov A. Parshikov A. Khromov A. Moibenko L. Kvotchina G. Balavoine Yu. Geletti 2002Cardiovascular Toxicology2002,,2:1
7The flow of vanadium-bearing materials in industry显示文摘MONAKHOV I N KHROMOV S V CHEROUSOV P I 2004Metallurgist2004,48,78:1
8The flow of vanadium-bearing materials in industry显示文摘Monakhov l N Khromov S V Chernousov P I 2004Metallurgist2004,48,78:1
9Fractal representation of the Debye theory for studying the heat capacity of macro- and nanostructures 显示文摘Kuznetsov V M Khromov V I 2008Technical Physics2008,53,11:1
10Fractal representation of the Debye theory for studying the heat capacity of macro-and nanostructures显示文摘Kuznetsov V M Khromov V I 2008Technical Physics2008,53,11:1
11Flow of vanadium beating-materials in industry显示文摘Monakhov L N Khromov S V Chemousov P I 2004Metallurgist2004,48,7:1
12Inhibition of nitric oxide synthesis during bacterial shock does not prevent development of resistant hypotension and death in rats 显示文摘Khromov O S Ivanova I V Stefanov O V 2005Fiziol Zh2005,51,:1
13Contractile properties and proteins of smooth muscles of a calponin knockout mouse显示文摘Matthew JD Khromov AS McDuffie MJ 2000J Physiol2000,529,3:1
14Influence of the safety factor profile on the particle and heat transport in the Globus-M spherical tokamak显示文摘The advanced tokamak scenario is a promising operation scenario for ITER and fusion neutron sources.In this scenario the minimum value of the safety factor in the center of the plasma exceeds unity.In the compact spherical tokamak Globus-M,the formation of such conditions is possible with neutral beam injection at the current ramp-up phase.Due to the slower diffusion of current inside the plasma,a zone is formed with reduced heat and particle transport across the magnetic field,which affects the temperature and density profiles of the plasma.This leads to the peaked density profile formation and improvement of the energy confinement time.To achieve a high fraction of the bootstrap current,it is necessary to increase the plasma pressure.At the same time,the maximum allowable pressure is limited to the normalized beta limit.A YU TELNOVA G S KURSKIEV E O KISELEV N N BAKHAREV V K GUSEV N A KHROMOV S YU MEDVEDEV V B MIINAEV I V MIROSHNIKOV M I PATROV Yu V PETROV N V SAKHAROV A D SLADKOMEDOVA P B SHCHEGOLEV V V SOLOKHA V A TOKAREV S YU TOLSTYAKOV E A TUKHMENEVA 2019Plasma Science and Technology2019,21,11:0
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