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1H (H2O) and 7Li (LiCl aq.) NMR lines in traveling channel (left) and reference channel (right) acquired at 466.6 MHz in unshimmed SCH magnet. Magnetic field strength is 10.96 T for 1H signal from solvent (water), and 28.20 T for 7Li signal from dissolved LiCl. No line broadening was applied to better show the relative sensitivity and linewidth. Note that homogeneity is different between the two fields due to difference in temperature profiles of the magnet. The reference sample occupies a larger volume resulting in a broader line. For mapping purposes, artifacts and <t>spectrometer</t> noise would be reduced using exponential multiplication before Fourier transformation.
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1H (H2O) and 7Li (LiCl aq.) NMR lines in traveling channel (left) and reference channel (right) acquired at 466.6 MHz in unshimmed SCH magnet. Magnetic field strength is 10.96 T for 1H signal from solvent (water), and 28.20 T for 7Li signal from dissolved LiCl. No line broadening was applied to better show the relative sensitivity and linewidth. Note that homogeneity is different between the two fields due to difference in temperature profiles of the magnet. The reference sample occupies a larger volume resulting in a broader line. For mapping purposes, artifacts and <t>spectrometer</t> noise would be reduced using exponential multiplication before Fourier transformation.
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1H (H2O) and 7Li (LiCl aq.) NMR lines in traveling channel (left) and reference channel (right) acquired at 466.6 MHz in unshimmed SCH magnet. Magnetic field strength is 10.96 T for 1H signal from solvent (water), and 28.20 T for 7Li signal from dissolved LiCl. No line broadening was applied to better show the relative sensitivity and linewidth. Note that homogeneity is different between the two fields due to difference in temperature profiles of the magnet. The reference sample occupies a larger volume resulting in a broader line. For mapping purposes, artifacts and <t>spectrometer</t> noise would be reduced using exponential multiplication before Fourier transformation.
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Endoscout GmbH navigation host pc 168
1H (H2O) and 7Li (LiCl aq.) NMR lines in traveling channel (left) and reference channel (right) acquired at 466.6 MHz in unshimmed SCH magnet. Magnetic field strength is 10.96 T for 1H signal from solvent (water), and 28.20 T for 7Li signal from dissolved LiCl. No line broadening was applied to better show the relative sensitivity and linewidth. Note that homogeneity is different between the two fields due to difference in temperature profiles of the magnet. The reference sample occupies a larger volume resulting in a broader line. For mapping purposes, artifacts and <t>spectrometer</t> noise would be reduced using exponential multiplication before Fourier transformation.
Navigation Host Pc 168, supplied by Endoscout GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Endoscout GmbH navigation host pc
1H (H2O) and 7Li (LiCl aq.) NMR lines in traveling channel (left) and reference channel (right) acquired at 466.6 MHz in unshimmed SCH magnet. Magnetic field strength is 10.96 T for 1H signal from solvent (water), and 28.20 T for 7Li signal from dissolved LiCl. No line broadening was applied to better show the relative sensitivity and linewidth. Note that homogeneity is different between the two fields due to difference in temperature profiles of the magnet. The reference sample occupies a larger volume resulting in a broader line. For mapping purposes, artifacts and <t>spectrometer</t> noise would be reduced using exponential multiplication before Fourier transformation.
Navigation Host Pc, supplied by Endoscout GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Garmin Ltd antfs pc host software
1H (H2O) and 7Li (LiCl aq.) NMR lines in traveling channel (left) and reference channel (right) acquired at 466.6 MHz in unshimmed SCH magnet. Magnetic field strength is 10.96 T for 1H signal from solvent (water), and 28.20 T for 7Li signal from dissolved LiCl. No line broadening was applied to better show the relative sensitivity and linewidth. Note that homogeneity is different between the two fields due to difference in temperature profiles of the magnet. The reference sample occupies a larger volume resulting in a broader line. For mapping purposes, artifacts and <t>spectrometer</t> noise would be reduced using exponential multiplication before Fourier transformation.
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1H (H2O) and 7Li (LiCl aq.) NMR lines in traveling channel (left) and reference channel (right) acquired at 466.6 MHz in unshimmed SCH magnet. Magnetic field strength is 10.96 T for 1H signal from solvent (water), and 28.20 T for 7Li signal from dissolved LiCl. No line broadening was applied to better show the relative sensitivity and linewidth. Note that homogeneity is different between the two fields due to difference in temperature profiles of the magnet. The reference sample occupies a larger volume resulting in a broader line. For mapping purposes, artifacts and <t>spectrometer</t> noise would be reduced using exponential multiplication before Fourier transformation.
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Symantec Corporation pc-anywhere host-server
1H (H2O) and 7Li (LiCl aq.) NMR lines in traveling channel (left) and reference channel (right) acquired at 466.6 MHz in unshimmed SCH magnet. Magnetic field strength is 10.96 T for 1H signal from solvent (water), and 28.20 T for 7Li signal from dissolved LiCl. No line broadening was applied to better show the relative sensitivity and linewidth. Note that homogeneity is different between the two fields due to difference in temperature profiles of the magnet. The reference sample occupies a larger volume resulting in a broader line. For mapping purposes, artifacts and <t>spectrometer</t> noise would be reduced using exponential multiplication before Fourier transformation.
Pc Anywhere Host Server, supplied by Symantec Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


1H (H2O) and 7Li (LiCl aq.) NMR lines in traveling channel (left) and reference channel (right) acquired at 466.6 MHz in unshimmed SCH magnet. Magnetic field strength is 10.96 T for 1H signal from solvent (water), and 28.20 T for 7Li signal from dissolved LiCl. No line broadening was applied to better show the relative sensitivity and linewidth. Note that homogeneity is different between the two fields due to difference in temperature profiles of the magnet. The reference sample occupies a larger volume resulting in a broader line. For mapping purposes, artifacts and spectrometer noise would be reduced using exponential multiplication before Fourier transformation.

Journal: Journal of magnetic resonance (San Diego, Calif. : 1997)

Article Title: Achieving 1 ppm field homogeneity above 24 T: application of differential mapping for shimming Keck and the Series Connected Hybrid magnets at the NHMFL

doi: 10.1016/j.jmr.2019.03.002

Figure Lengend Snippet: 1H (H2O) and 7Li (LiCl aq.) NMR lines in traveling channel (left) and reference channel (right) acquired at 466.6 MHz in unshimmed SCH magnet. Magnetic field strength is 10.96 T for 1H signal from solvent (water), and 28.20 T for 7Li signal from dissolved LiCl. No line broadening was applied to better show the relative sensitivity and linewidth. Note that homogeneity is different between the two fields due to difference in temperature profiles of the magnet. The reference sample occupies a larger volume resulting in a broader line. For mapping purposes, artifacts and spectrometer noise would be reduced using exponential multiplication before Fourier transformation.

Article Snippet: The mapper host computer (Mapper PC) and spectrometer host computer (Tecmag PC) communicate through the Kermit protocol ( www.kermitproject.org ) with the FMU.

Techniques: Solvent, Transformation Assay