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Robert Pfeffer

Researcher at New Jersey Institute of Technology

Publications -  162
Citations -  7210

Robert Pfeffer is an academic researcher from New Jersey Institute of Technology. The author has contributed to research in topics: Fluidized bed & Fluidization. The author has an hindex of 42, co-authored 162 publications receiving 6793 citations. Previous affiliations of Robert Pfeffer include City College of New York & New York University.

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Estimation of coating time in the magnetically assisted impaction coating process

TL;DR: In this paper, the authors developed a model for estimating the coating time in a magnetically assisted impaction coating (MAIC) device, where the mixture of the host, guest and magnetic particles is assumed to be in a fluidized state where the distribution of velocities is a Maxwell-Boltzman type.
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Deactivated sintering by particle coating: The significance of static and dynamic surface phenomena

TL;DR: In this paper, the suppression of bonding of micron-sized host particles due to the application of heat at temperatures below their melting point (deactivated sintering) when coated with submicron guest particles is theoretically predicted and confirmed by experiments.
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Mixing and packing of fine particles of different sizes

TL;DR: In this paper, two different approaches for mixing different sizes of fine particles without segregation and simultaneously increasing the packing density of the mixture are presented, which can be used to fill the voids between the coarse particles with fine particles so that the bulk packing density is increased.
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A theoretical model to study the effect of convection and leaky junctions on macromolecule transport in artery walls.

TL;DR: The results from this improved model show that the effect of pressure on transarterial macromolecular transport is important especially for cell turnover rates greater than 1% and that significant changes in the equilibrium balance of the cholesterol carrying LDL molecules in the arterial wall can occur due to a very small fraction of leaky junctions.