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19篇 您的检索式:作者名="Gumerov"
    题名 作者 年代 出处 被引量
1Fast radial basis functioninterpolation via preconditioned Krylov iteration显示文摘Gumerov N A Duraiswami R 2010SI-AM Journal on Scientific Computing2010,29,5:1
2TM electromagnetic scattering from 2D multilayered di-electric bodies-numerical solution显示文摘Seydou F Duraiswami R Gumerov N Seppnen T 0,,:1
3Indirect detection of protein-metal binding:interaction of serum transferrin with In3 + and Bi3+显示文摘Zhang MX Gumerov DR Kaltashov IA 2004AM Soc Mass Spectrom2004,15,:1
4Dynamics of iron release from transferrin N-lobe studied by electrospray ionization mass spectrometry显示文摘Gumerov D R Kaltashov I A 2001Anal Chem2001,73,11:1
5Application of a hybrid genetic algorithm/Powell algorithm and a boundary element method to electrical impedance topography 显示文摘Hsiao C T Chahine G Gumerov N 2001Journal of Computational Physics2001,173,43:1
6Fast multipole methods on graphics processors 显示文摘Nail A Gumerov Ramani Duraiswami 2008Journal of Computational Physics2008,227,18:1
7Computation of scattering from N spheres using multipole reexpansion显示文摘Gumerov N A Duraiswami R 2002Journal of the Acoustic Society of America2002,112,6:1
8Fast Multipole Methods on Graphics Processors显示文摘Gumerov N A Duraiswami R 2008Journal of Computational Physics2008,227,18:1
9Fast Multipole Methods on Graphics Processors显示文摘Gumerov N A Duraiswami R 2008Journal of Computational Physics2008,227,18:1
10Dynamics of iron release from transferrin N-lobe studied by electrospray ionization mass spectrometry显示文摘Gumerov D R Kaltashow I A 2001Anal Chem2001,73,:1
11A scalar potential formulation and translation theory for the time-harmonic Maxwell equations 显示文摘Gumerov N A Duraiswami R 2007Journal of Computational Physics2007,225,:1
12Test of Cone-Socket Connections of Pipes 显示文摘TARANOV R A GUMEROV K M SIRAEV A G 2014Problems of Gathering Treatment and Transportation of Oil and Oil Products (IPTER)2014,98,4:1
13Fast Parallel Particle-To-Grid Interpolation for Plasma PIC Simulations on the GPU显示文摘Stantehev G Dorland W Gumerov N 2008Journal of Parallel and Distributed Computing2008,68,:1
14Application of a hybrid genetic/Powell algorithm and a boundary element method to electrical impedance tomography显示文摘Hsiao C.T Chahine G Gumerov N 0,,:1
15Fast multipole methods on graphics processors 显示文摘NailA Gumerov 2008Journal of Computational Physics2008,,227:1
16Indirect detection of protein-metal binding:interaction of serum transferrin with In3 + and Bi3 +显示文摘Zhang Ming-xuan Gumerov D R Kaltashov I A 2004J Am Soc Mass Spectrom2004,15,:1
17Fast multipole methods ongraphics processors显示文摘Gumerov N A Duraiswami R 2008Journal of Computational Physics2008,227,18:1
18Fast parallel particleto-grid interpolation for plasma PIC simulations on the GPU 显示文摘Stantchev G Dorland W Gumerov N 2008Journal of Parallel and Distributed Computing2008,68,10:1
19Supercritical Fluid Media in Challenges of Substance and Material Dispersion显示文摘The paper deals with the problem of material dispersion using supercritical fluid media. At the same time, emphasis is made on modifications(SAS, GAS, SEDS and ASES) of the supercritical fluid anti-solvent method of dispersion. The results of SAS method implementation for dispersion of pure polycarbonate and polycarbonate doped with 'CdSe/CdS-core/shell' quantum dots(carried out in the pressure range of 8.0-25.0 MPa at temperatures of 313.15 K and 358.15 K) are submitted. The range of the operating parameters has been established through the example of pure polycarbonate dispersion, which provides the production of nanoparticles with the size range of 10-100 nm. Encapsulation of Cd Se/Cd S quantum dots into polycarbonate using the SAS method has no effect on optical properties of the encapsulated quantum dots. The results of paracetamol dispersion using the SEDS method are presented. The effect of operating conditions of the paracetamol dispersion process on morphology of the obtained product is described. Co-dispersion of ethylene–vinyl acetate copolymers and low-density polyethylene mixtures by SEDS method has been carried out under pressures of 8.0-25.0 MPa at temperatures of 313 K, 323 K, and 333 K. The comparison of melting and crystallization between the resulting copolymer mixtures and mixtures with the same composition obtained by mixing in the liquid melt, has shown that implementation of SEDS results in an increase of crystallinity degree of the polymer mixtures.KHAIRUTDINOV Vener GUMEROV Farid KHABRIEV Ilnar 2019Journal of Thermal Science2019,28,3:0
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