Diffusion Fundamentals (E-Journal)
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    Diffusion of CO2 in ion-exchanged zeolites Rho studied by the ZLC technique

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    Carbon Molecular Sieves – a kinetic study

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    Condensation of a lattice gas in three dimensions

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    Velocity-sensitised Magnetic Resonance Imaging of foams

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    Although flowing foams are used in a variety of technologies, foam rheology is still incompletely understood. In this paper we demonstrate the use of a velocity-sensitised magnetic resonance imaging (MRI) sequence for the study of flowing foam. We employ a constant-time (pure phase encode) imaging technique, SPRITE, which is immune to geometrical distortions caused by the foam-induced magnetic field inhomogeneity. The sample magnetisation is prepared before the SPRITE imaging with the Cotts 13-interval motion-sensitisation sequence, which is also insensitive to the effects of the foam heterogeneity. We measure the development of a power-law velocity profile in the foam downstream of a Venturi constriction (in which the cross-section of the tube decreases by 89% in area) in a vertical, cylindrical pipe

    Surprises from single-particle imaging of passive and active diffusion

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    Hot colloids in polymer networks: cage formation and transient network deformation

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    Modeling Ca2+ diffusion in brain extracellular space

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    Brain microscopy point spread function in a photon diffusion limit

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    Assessment of GABARAP self-association by its diffusion properties

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    Structural and transport properties of hydrogen in ZIF-22

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    Diffusion Fundamentals (E-Journal)
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