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Descriptive classification of the impact failure modes of spherical particlesSALMAN, A. D; REYNOLDS, G. K; FU, J. S et al.Powder technology. 2004, Vol 143-44, pp 19-30, issn 0032-5910, 12 p.Article

Transient Diffusion within Spherical Particles: Numerical Resolution of the Maxwell—Stefan FormulationLEONARDI, Erminia; ANGELI, Celestino.Industrial & engineering chemistry research. 2010, Vol 49, Num 12, pp 5654-5660, issn 0888-5885, 7 p.Article

Photonic nanojet calculations in layered radially inhomogeneous micrometer-sized spherical particlesGEINTS, Yuri E; ZEMLYANOV, Alexander A; PANINA, Ekaterina K et al.Journal of the Optical Society of America. B, Optical physics (Print). 2011, Vol 28, Num 8, pp 1825-1830, issn 0740-3224, 6 p.Article

Equations de continuité des équilibres d'énergie et de l'entropie d'une suspension de particules sphériques en rotationYASNIKOV, G. P; BELOUSOV, V. S.Inženerno-fizičeskij žurnal. 1984, Vol 46, Num 4, pp 605-613, issn 0021-0285Article

Electromagnetic field for a beam incident on two adjacent spherical particlesBARTON, J. P; MA, W; SCHAUB, S. A et al.Applied optics. 1991, Vol 30, Num 33, pp 4706-4715, issn 0003-6935Article

Light scattering cross-section : summing of Mie-seriesGRANOVSKII, YA. I; STON, M.Physica scripta (Print). 1994, Vol 50, Num 2, pp 140-141, issn 0031-8949Article

Asymptotic extinction of large, size-distributed spherical particlesMILHAM, M. E; FRICKEL, R. H.Journal of the Optical Society of America A, Optics and image science. 1984, Vol 1, Num 5, pp 527-532Article

Particle packing. I: Fundamentals of particle packing monodisperse spheresFUNK, J. E; DINGER, D. R.Interceram. 1992, Vol 41, Num 1, pp 10-14, issn 0020-5214Article

A design-based proof of Wicksell's integral equationJENSEN, E. B.Journal of microscopy (Print). 1984, Vol 136, Num 3, pp 345-348, issn 0022-2720Article

Calcul des fonctions intégrales de diffusion de la lumière par des particules sphériques en deux couchesKUTUZOV, YU. I; KLENIN, V. I.Optika i spektroskopiâ. 1983, Vol 55, Num 2, pp 383-388, issn 0030-4034Article

Layered Li2MnO3·3LiNi0.5―xMn0.5―xCo2xO2 microspheres with Mn-rich cores as high performance cathode materials for lithium ion batteriesLIUJIANG XI; CHENWEI CAO; RUGUANG MA et al.PCCP. Physical chemistry chemical physics (Print). 2013, Vol 15, Num 39, pp 16579-16585, issn 1463-9076, 7 p.Article

Optical field at the center of a spherical particleBELOV, N. N; MASLOV, V. A.Optics and spectroscopy. 1991, Vol 71, Num 2, pp 194-195, issn 0030-400XArticle

Diffusion of spheres in a concentrated suspension IIBEENAKKER, C. W. J; MAZUR, P.Physica. A. 1984, Vol 126, Num 3, pp 349-370, issn 0378-4371Article

On the implications of surface reciprocal relations for thermophoresis and photophoresisSATTEN, G; RONIS, D.Physica. A. 1984, Vol 125, Num 2-3, pp 302-320, issn 0378-4371Article

Numerical simulation of convective combustion of ball powders in strong confinementKIM, K.AIAA journal. 1984, Vol 22, Num 6, pp 793-796, issn 0001-1452Article

Linear response theory of sedimentation and diffusion in a suspension of spherical particlesFELDERHOF, B. U; JONES, R. B.Physica. A. 1983, Vol 119, Num 3, pp 591-608, issn 0378-4371Article

Photon correlation spectroscopy of the non-Markovian Brownian motion of spherical particlesOHBAYASHI, K; KOHNO, T; UTIYAMA, H et al.Physical review. A, General physics. 1983, Vol 27, Num 5, pp 2632-2641, issn 0556-2791Article

Reaction-Induced Microsyneresis in Oxide-Based Gels: The Assembly of Hierarchical Microsphere NetworksAI DU; BIN ZHOU; WEIWEI XU et al.Langmuir. 2013, Vol 29, Num 36, pp 11208-11216, issn 0743-7463, 9 p.Article

Templated Nucleation of Acetaminophen on Spherical Excipient AgglomeratesQUON, Justin L; CHADWICK, Keith; WOOD, Geoffrey P. F et al.Langmuir. 2013, Vol 29, Num 10, pp 3292-3300, issn 0743-7463, 9 p.Article

A generalized approximation for the thermophoretic force on a free-molecular particleGALLIS, M. A; RADER, D. J; TORCZYNSKI, J. R et al.Aerosol science and technology. 2004, Vol 38, Num 7, pp 692-706, issn 0278-6826, 15 p.Article

Explicit relationships for the terminal velocity of spherical particlesHARTMAN, M; VESELY, V; SVOBODA, K et al.Collection of Czechoslovak chemical communications. 1990, Vol 55, Num 2, pp 403-408, issn 0010-0765Article

Utilization efficiency of spherical metal nanoparticles that increase light absorption in absorbing mediaDYNICH, Raman A.Journal of the Optical Society of America. A, Optics, image science, and vision (Print). 2011, Vol 28, Num 2, pp 222-228, issn 1084-7529, 7 p.Article

Spongy carbon nanobeads : A new materialSHARON, M; MUKHOPADHYAY, K; YASE, K et al.Carbon (New York, NY). 1998, Vol 36, Num 5-6, pp 507-511, issn 0008-6223Conference Paper

A new method for unfolding sphere size distributionsTAYLOR, C. C.Journal of microscopy (Print). 1983, Vol 132, Num 1, pp 57-66, issn 0022-2720Article

Wall Retardation Effects on Flow and Drag Phenomena of Confined Spherical Particles in Shear-Thickening FluidsRAJASEKHAR REDDY, C; KISHORE, Nanda.Industrial & engineering chemistry research. 2012, Vol 51, Num 51, pp 16755-16762, issn 0888-5885, 8 p.Article

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