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Ioan Ardelean

Showing results (1-10 of 31) with videos related to

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Molecules (Basel, Switzerland)|September 10, 2021
The Effect of an Accelerator on Cement Paste Capillary Pores: NMR Relaxometry InvestigationsIoan Ardelean
Magnetic Resonance in Chemistry : MRC|December 22, 2018
Surface influence on the rotational and translational dynamics of molecules confined inside a mesoporous carbon xerogelCalin 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 methodJanez Stepišnik, Ioan Ardelean
Materials (Basel, Switzerland)|July 12, 2025
Relations Between the Printability Descriptors of Mortar and NMR Relaxometry DataMihai 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 techniquesGerman 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 poresMarius 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-diffusionGerman 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 methodJanez 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 RelaxometryMihai 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 poresIoan Ardelean, German Farrher, Carlos Mattea, et al.
Pageof 4

Showing results (1-10 of 31) with videos related to

Sort By:
Pageof 4
Molecules (Basel, Switzerland)|September 10, 2021
The Effect of an Accelerator on Cement Paste Capillary Pores: NMR Relaxometry InvestigationsIoan Ardelean
Magnetic Resonance in Chemistry : MRC|December 22, 2018
Surface influence on the rotational and translational dynamics of molecules confined inside a mesoporous carbon xerogelCalin 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 methodJanez Stepišnik, Ioan Ardelean
Materials (Basel, Switzerland)|July 12, 2025
Relations Between the Printability Descriptors of Mortar and NMR Relaxometry DataMihai 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 techniquesGerman 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 poresMarius 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-diffusionGerman 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 methodJanez 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 RelaxometryMihai 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 poresIoan Ardelean, German Farrher, Carlos Mattea, et al.
Pageof 4