Basic Principles of Diffusion Theory, Experiment and Application
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volume 1, 2005:
[ contents overview volume 1 ]



volume 2, 2005:
[ contents overview volume 2 ]



volume 3, 2005:
[ contents overview volume 3 ]



volume 4, 2006/2007:

NMR measurement of small-molecule diffusion in PVA hydrogels: a comparison of CONVEX and standard PGSE methods
D. G. Regan, K. I. Momot, P. J. Martens, P. W. Kuchel, L. A. Poole-Warren
Diffusion Fundamentals 4 (2006) 1.1 - 1.18

Simulation of Fick’s Verification of the 2nd Law
Richard DiDomizio, Afina Lupulescu, Martin E. Glicksman
Diffusion Fundamentals 4 (2006) 2.1 - 2.14

Anomalies of the Fickian Diffusion During 2D-Decomposition of Superconducting YBa2Cu3O6+X/Y2BaCuO5 Composites
Yury S. Nechaev
Diffusion Fundamentals 4 (2006) 3.1 - 3.5

Diffusion of urea through membranes
Ulrike Günther, Marcus Hartmann, Siegfried Wartewig, Reinhard Neubert
Diffusion Fundamentals 4 (2006) 4.1 - 4.5

Nonequilibrium field-induced phase separation in single-file diffusion
Fatemeh Tabatabaei, Gunter M. Schütz
Diffusion Fundamentals 4 (2006) 5.1 - 5.38

One and a Half Century of Diffusion: Fick, Einstein, Before and Beyond
Jean Philibert
Diffusion Fundamentals 4 (2006) 6.1 - 6.19

Boundary-induced bulk phase transition and violation of Fick's law in two-component single-file diffusion with open boundaries
Andreas Brzank, Gunter M. Schütz
Diffusion Fundamentals 4 (2006) 7.1 - 7.12

Diffusion-Ordered (DOSY) NMR of Solute Exchange Across the Human Erythrocyte Membrane
Bogdan E. Chapman, Philip W. Kuchel
Diffusion Fundamentals 4 (2007) 8.1 - 8.15

Application of Boltzmann’s Integration Method under non-ideal Conditions
Lars Heinke
Diffusion Fundamentals 4 (2007) 9.1 - 9.16

Transient Behavior of a Zeolite Membrane under non-Linear Conditions
Douglas M. Ruthven
Diffusion Fundamentals 4 (2007) 10.1 - 10.16

Mathematical Modeling and Visualization of Gas Transport in a Zeolite Bed Using a Slice Selection Procedure
M. Petryk, S. Leclerc, D. Canet, J. Fraissard
Diffusion Fundamentals 4 (2007) 11.1 - 11.23

Significance of Concentration-Dependent Intracrystalline Diffusion and Surface Permeation for Overall Mass Transfer
Lars Heinke
Diffusion Fundamentals 4 (2007) 12.1 - 12.11

Cube-Based Diffusion Algorithm
Stephan Zschiegner, Stefanie Russ, Armin Bunde, Jörg Kärger
Diffusion Fundamentals 4 (2007) 13.1 - 13.8

Effects of Anisotropic Optical Parameters on the Penetration of Photons into a Turbid Medium
Sinisa Pajevic, George H. Weiss
Diffusion Fundamentals 4 (2007) 14.1 - 14.13

The Lattice Monte Carlo Method for Solving Phenomenological Mass and Heat Transport Problems
Irina V. Belova, Graeme E. Murch, Thomas Fiedler and Andreas Öchsner
Diffusion Fundamentals 4 (2007) 15.1 - 15.23







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