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Local boundary conditions for NMR-relaxation in digitized porous media
Hans Magnus Ögren
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Corresponding author for this work
Department of Chemistry
2
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Dive into the research topics of 'Local boundary conditions for NMR-relaxation in digitized porous media'. Together they form a unique fingerprint.
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Engineering & Materials Science
Boundary conditions
63%
Nuclear magnetic resonance
100%
Porous materials
81%
Relaxation
77%
Chemical Compounds
Cubic Crystal
45%
Dimension
62%
Dynamic Nuclear Magnetic Resonance
55%
Error
62%
Pore
27%
Simulation
26%
Surface
13%
Physics & Astronomy
balls
37%
boundary conditions
59%
nuclear magnetic resonance
66%
porosity
30%
simulation
15%