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Articles

The effect of alignment on the electric mobility of soot

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Pages 1003-1016 | Received 04 Sep 2015, Accepted 26 Apr 2016, Published online: 26 Aug 2016

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James Corson, George W. Mulholland & Michael R. Zachariah. (2018) The effect of electric-field-induced alignment on the electrical mobility of fractal aggregates. Aerosol Science and Technology 52:5, pages 524-535.
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James Corson, George W. Mulholland & Michael R. Zachariah. (2018) Analytical expression for the rotational friction coefficient of DLCA aggregates over the entire Knudsen regime. Aerosol Science and Technology 52:2, pages 209-221.
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Articles from other publishers (4)

Timothy A. Sipkens, Adam Boies, Joel C. Corbin, Rajan K. Chakrabarty, Jason Olfert & Steven N. Rogak. (2023) Overview of methods to characterize the mass, size, and morphology of soot. Journal of Aerosol Science 173, pages 106211.
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A. Kort, F.-X. Ouf, T. Gelain, J. Malet, R. Lakhmi, P. Breuil & J.-P. Viricelle. (2021) Quantification of soot deposit on a resistive sensor: Proposal of an experimental calibration protocol. Journal of Aerosol Science 156, pages 105783.
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George W. Mulholland, James Corson & Michael R. Zachariah. (2018) Aggregate shape determination via light scattering by aligned and randomly oriented polydisperse aggregates. Journal of Quantitative Spectroscopy and Radiative Transfer 219, pages 37-45.
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James Corson, George W. Mulholland & Michael R. Zachariah. (2017) Calculating the rotational friction coefficient of fractal aerosol particles in the transition regime using extended Kirkwood-Riseman theory. Physical Review E 96:1.
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