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Molecules (Basel, Switzerland)
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September 10, 2021
The Effect of an Accelerator on Cement Paste Capillary Pores: NMR Relaxometry Investigations
Ioan Ardelean
Magnetic Resonance in Chemistry : MRC
|
December 22, 2018
Surface influence on the rotational and translational dynamics of molecules confined inside a mesoporous carbon xerogel
Calin Cadar, Ioan Ardelean
Journal of Magnetic Resonance (San Diego, Calif. : 1997)
|
September 28, 2016
Usage of internal magnetic fields to study the early hydration process of cement paste by MGSE method
Janez Stepišnik, Ioan Ardelean
Materials (Basel, Switzerland)
|
July 12, 2025
Relations Between the Printability Descriptors of Mortar and NMR Relaxometry Data
Mihai M Rusu, Ioan Ardelean
Journal of Magnetic Resonance (San Diego, Calif. : 1997)
|
July 25, 2006
Probing four orders of magnitude of the diffusion time in porous silica glass with unconventional NMR techniques
German Farrher, Ioan Ardelean, Rainer Kimmich
Magnetic Resonance in Chemistry : MRC
|
April 1, 2011
Saturation-dependent nuclear magnetic resonance relaxation of fluids confined inside porous media with micrometer-sized pores
Marius Simina, Ruben Nechifor, Ioan Ardelean
Magnetic Resonance Imaging
|
May 1, 2007
The heterogeneous distribution of the liquid phase in partially filled porous glasses and its effect on self-diffusion
German Farrher, Ioan Ardelean, Rainer Kimmich
Journal of Magnetic Resonance (San Diego, Calif. : 1997)
|
May 10, 2021
Molecular self-diffusion in internal magnetic fields of porous medium investigated by NMR MGSE method
Janez Stepišnik, Ioan Ardelean, Aleš Mohorič
Molecules (Basel, Switzerland)
|
January 21, 2023
Monitoring the Effect of Calcium Nitrate on the Induction Period of Cement Hydration via Low-Field NMR Relaxometry
Mihai M Rusu, David Faux, Ioan Ardelean
Magnetic Resonance Imaging
|
April 19, 2005
NMR study of the vapor phase contribution to diffusion in partially filled silica glasses with nanometer and micrometer pores
Ioan Ardelean, German Farrher, Carlos Mattea, et al.
Page
of 4
Search research articles
Search
Showing results (1-10 of 31) with videos related to
Sort By:
Page
of 4
Molecules (Basel, Switzerland)
|
September 10, 2021
The Effect of an Accelerator on Cement Paste Capillary Pores: NMR Relaxometry Investigations
Ioan Ardelean
Magnetic Resonance in Chemistry : MRC
|
December 22, 2018
Surface influence on the rotational and translational dynamics of molecules confined inside a mesoporous carbon xerogel
Calin Cadar, Ioan Ardelean
Journal of Magnetic Resonance (San Diego, Calif. : 1997)
|
September 28, 2016
Usage of internal magnetic fields to study the early hydration process of cement paste by MGSE method
Janez Stepišnik, Ioan Ardelean
Materials (Basel, Switzerland)
|
July 12, 2025
Relations Between the Printability Descriptors of Mortar and NMR Relaxometry Data
Mihai M Rusu, Ioan Ardelean
Journal of Magnetic Resonance (San Diego, Calif. : 1997)
|
July 25, 2006
Probing four orders of magnitude of the diffusion time in porous silica glass with unconventional NMR techniques
German Farrher, Ioan Ardelean, Rainer Kimmich
Magnetic Resonance in Chemistry : MRC
|
April 1, 2011
Saturation-dependent nuclear magnetic resonance relaxation of fluids confined inside porous media with micrometer-sized pores
Marius Simina, Ruben Nechifor, Ioan Ardelean
Magnetic Resonance Imaging
|
May 1, 2007
The heterogeneous distribution of the liquid phase in partially filled porous glasses and its effect on self-diffusion
German Farrher, Ioan Ardelean, Rainer Kimmich
Journal of Magnetic Resonance (San Diego, Calif. : 1997)
|
May 10, 2021
Molecular self-diffusion in internal magnetic fields of porous medium investigated by NMR MGSE method
Janez Stepišnik, Ioan Ardelean, Aleš Mohorič
Molecules (Basel, Switzerland)
|
January 21, 2023
Monitoring the Effect of Calcium Nitrate on the Induction Period of Cement Hydration via Low-Field NMR Relaxometry
Mihai M Rusu, David Faux, Ioan Ardelean
Magnetic Resonance Imaging
|
April 19, 2005
NMR study of the vapor phase contribution to diffusion in partially filled silica glasses with nanometer and micrometer pores
Ioan Ardelean, German Farrher, Carlos Mattea, et al.
Page
of 4