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With no inert particles — if the moving particles are suspended in clear water — there is no motion-based attraction.
A small number of these magnetic metal microparticles were interspersed with a much larger quantity of inert particles of comparable size, all suspended in water.
The cold spot temperature difference is restricted by using a higher fraction of inert particles at the inlet of the reactor and using a lower fraction of inert particles near the outlet of the reactor.
Dispersal of inert particles on a flame front is one of the techniques employed to suppress explosions.
Fluidized bed combustor, which consists of a reaction chamber, an air distribution plate, uses inert particles, as its bed material.
Mass transfer from a freely moving single sphere to the dense phase of a gas fluidized bed of inert particles.
The amount of inert particles used can be reduced as less as a stable spouting is preserved.
The effect of mixing catalyst and inert particles on conversion has been studied.
The bed of inert particles is taken to have uniform voidage.
Numerical simulations of premixed gas flame moving in the presence of inert particles are presented.
It is seen from these attempts that the demand for inducing effective magnetic forces on weak magnetic (i.e. diamagnetic and paramagnetic) particles is potentially large, because the technique can dynamically translate "magnetically inert" particles by a relatively simple machine.
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