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Magnetic Resonance Imaging
|
November 6, 1998
Field-cycling NMR relaxometry of molecules undergoing Lévy walks at the surface of fine particles and porous glass
T Zavada, S Stapf, U Beginn, et al.
The Journal of Organic Chemistry
|
April 16, 2008
2-chloro-(4R,5R)-bis[(1R,2S,5R)-menth-1-yloxycarbonyl)]-1,3,2-dioxaphospholane: a practical chiral pool-derived reagent for determining enantiomeric purity of alcohols
Matthias Amberg, Uwe Bergsträsser, Georg Stapf, et al.
Magnetic Resonance in Chemistry : MRC
|
January 11, 2013
Frequency-dependent NMR relaxation of liquids confined inside porous media containing an increased amount of magnetic impurities
Sergiu Muncaci, Carlos Mattea, Siegfried Stapf, et al.
Cahiers D'Anesthesiologie
|
January 1, 1985
[Prolonged administration of morphine via the intrathecal route]
Y Gestin, N Pere, C Solassol, et al.
Radiology and Oncology
|
June 2, 2016
Diffusion tensor MR microscopy of tissues with low diffusional anisotropy
Franci Bajd, Carlos Mattea, Siegfried Stapf, et al.
The Journal of Physical Chemistry. B
|
November 20, 2010
Heterogeneities in gelatin film formation using single-sided NMR
Sushanta Ghoshal, Carlos Mattea, Paul Denner, et al.
Molecules (Basel, Switzerland)
|
September 10, 2021
Non-Exponential <sup>1</sup>H and <sup>2</sup>H NMR Relaxation and Self-Diffusion in Asphaltene-Maltene Solutions
Kevin Lindt, Bulat Gizatullin, Carlos Mattea, et al.
Environmental Science & Technology
|
May 24, 2019
Systematic Review of Toxicity Removal by Advanced Wastewater Treatment Technologies via Ozonation and Activated Carbon
Johannes Völker, Michael Stapf, Ulf Miehe, et al.
Acta Crystallographica. Section E, Crystallographic Communications
|
September 29, 2021
Crystal structures of 2-[3,5-bis-(bromo-meth-yl)-2,4,6-tri-ethyl-benz-yl]isoindoline-1,3-dione and 2-{5-(bromo-meth-yl)-3-[(1,3-dioxoisoindolin-2-yl)meth-yl]-2,4,6-tri-ethyl-benz-yl}isoindoline-1,3-dione
Manuel Stapf, Betty Leibiger, Anke Schwarzer, et al.
The European Journal of Neuroscience
|
February 1, 1997
Localization, differential expression and retrograde axonal transport suggest physiological role of FGF-2 in spinal autonomic neurons of the rat
D Blottner, C Stapf, C Meisinger, et al.
Page
of 53
Search research articles
Search
Showing results (101-110 of 524) with videos related to
Sort By:
Page
of 53
Magnetic Resonance Imaging
|
November 6, 1998
Field-cycling NMR relaxometry of molecules undergoing Lévy walks at the surface of fine particles and porous glass
T Zavada, S Stapf, U Beginn, et al.
The Journal of Organic Chemistry
|
April 16, 2008
2-chloro-(4R,5R)-bis[(1R,2S,5R)-menth-1-yloxycarbonyl)]-1,3,2-dioxaphospholane: a practical chiral pool-derived reagent for determining enantiomeric purity of alcohols
Matthias Amberg, Uwe Bergsträsser, Georg Stapf, et al.
Magnetic Resonance in Chemistry : MRC
|
January 11, 2013
Frequency-dependent NMR relaxation of liquids confined inside porous media containing an increased amount of magnetic impurities
Sergiu Muncaci, Carlos Mattea, Siegfried Stapf, et al.
Cahiers D'Anesthesiologie
|
January 1, 1985
[Prolonged administration of morphine via the intrathecal route]
Y Gestin, N Pere, C Solassol, et al.
Radiology and Oncology
|
June 2, 2016
Diffusion tensor MR microscopy of tissues with low diffusional anisotropy
Franci Bajd, Carlos Mattea, Siegfried Stapf, et al.
The Journal of Physical Chemistry. B
|
November 20, 2010
Heterogeneities in gelatin film formation using single-sided NMR
Sushanta Ghoshal, Carlos Mattea, Paul Denner, et al.
Molecules (Basel, Switzerland)
|
September 10, 2021
Non-Exponential <sup>1</sup>H and <sup>2</sup>H NMR Relaxation and Self-Diffusion in Asphaltene-Maltene Solutions
Kevin Lindt, Bulat Gizatullin, Carlos Mattea, et al.
Environmental Science & Technology
|
May 24, 2019
Systematic Review of Toxicity Removal by Advanced Wastewater Treatment Technologies via Ozonation and Activated Carbon
Johannes Völker, Michael Stapf, Ulf Miehe, et al.
Acta Crystallographica. Section E, Crystallographic Communications
|
September 29, 2021
Crystal structures of 2-[3,5-bis-(bromo-meth-yl)-2,4,6-tri-ethyl-benz-yl]isoindoline-1,3-dione and 2-{5-(bromo-meth-yl)-3-[(1,3-dioxoisoindolin-2-yl)meth-yl]-2,4,6-tri-ethyl-benz-yl}isoindoline-1,3-dione
Manuel Stapf, Betty Leibiger, Anke Schwarzer, et al.
The European Journal of Neuroscience
|
February 1, 1997
Localization, differential expression and retrograde axonal transport suggest physiological role of FGF-2 in spinal autonomic neurons of the rat
D Blottner, C Stapf, C Meisinger, et al.
Page
of 53