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Simultaneous measurements of soot volume fraction and particle size/microstructure in flame using a thermophoretic sampling technique
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Köylü, Ü., O., C. S. McEnally, D. E. Rosner, and L. D. Pfefferle, "Simultaneous Measurements of Soot Volume Fraction and Particle Size/Microstructure in Flame Using a Thermophoretic Sampling Technique," Combust. Flame, 110, 494 (1997).
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Relevant 'mixed'-moments for the calculation of deposition, vapor scavenging, and optical properties for populations of non-spherical suspended particles
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Rosner, D. E., P. Tandon, R. L. McGraw, and D. Wright, "Relevant 'Mixed'-Moments for the Calculation of Deposition, Vapor Scavenging, and Optical Properties for Populations of Non-spherical Suspended Particles," Proc. 4th Int. Particle Technology Forum, (Nov. 2000) (available in CD, Session T1d08).
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Proc. 4th Int. Particle Technology Forum
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0038493569
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Monte-Carlo simulation of free-molecule regime brownian aggregation and simultaneous spheroidization
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AAAR 2000
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36
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0013117912
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In-situ real-time sizing of inorganic nano-particle populations in flames using laser-induced incandescence
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Portland, OR
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Rosner, D. E., A. Schaffer, M. B. Long, and B. La Mantia, "In-Situ Real-Time Sizing of Inorganic Nano-Particle Populations in Flames Using Laser-Induced Incandescence," AAAR2001, Portland, OR (2001).
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AAAR2001
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In situ ultra-fine particle sizing by a combination of pulsed laser heat-up and particle thermal emission
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Scattering light by fractal aggregates: A review
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Bivariate extension of the quadrature method of moments for modeling simultaneous coagulation and sintering of particle populations
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PhD Diss., Chemical Engineering Dept., Yale University, New Haven, CT
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Xing, Y.1
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Synthesis and restructing of inorganic nanoparticles in counterflow diffusion flames
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0001010043
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In situ light-scattering measurements of morphologically evolving flame-synthesized oxide nano-aggregates
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Prediction of spherule size in gas phase nanoparticle synthesis
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Morphological evolution of nanoparticles in diffusion flames: Measurements and modeling
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Formation of agglomerate particles by coagulation and sintering: I. A two-dimensional solution of the population balance equation
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Quasi-Monte-Carlo calculations of the transport properties of fractal-like aggregates in the free-molecular regime
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Portland, OR
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Zurita-Gotor, M., A. V. Filippov, and D. E. Rosner, "Quasi-Monte-Carlo Calculations of the Transport Properties of Fractal-Like Aggregates in the Free-Molecular Regime," Proc. AAAR2000, Portland, OR (2000).
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Calculations of the effective diameter for collisions of fractal-like aggregates
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Zurita-Gotor, M., and D. E. Rosner, "Calculations of the Effective Diameter for Collisions of Fractal-like Aggregates," Proc. AAAR2001, St. Louis, MO (2000).
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Proc. AAAR2001
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Effective diameters for collisions of fractal-like aggregates: Recommendations for improved aerosol coagulation frequency calculations
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Zurita-Gotor, M., and D. E. Rosner, "Effective Diameters for Collisions of Fractal-Like Aggregates: Recommendations for Improved Aerosol Coagulation Frequency Calculations," Proc. Nat. Aerosol Symp., Helsinki, Finland, 146 (2001).
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Zurita-Gotor, M.1
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