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We typically use at least a 99. 96 deuterated solvent with TMS where appropriate as a reference. CDCl3 CD3OD CD3OH DMSO-d6 D2O Acetone-d6 -d8 Charge R30 R200 Ethanol-d Acetonitrile R50 R100 Charge-out rates For external academic users the cost varies depending on the instrument time required. 300MHz The typical rate of R50 per hour is applied with a cap on overnight runs of R400. User Name Date Lab Number Mobile / Email Supervisor signature Sample Name Your Sample Label Sample concentration...
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Step 1: Start by preparing the sample for high resolution nuclear magnetic resonance (NMR) analysis.
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Step 2: Ensure that the NMR instrument is properly calibrated and set to high resolution mode.
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Step 3: Place the sample in a suitable NMR tube that is compatible with high resolution measurements.
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Step 4: Insert the NMR tube into the sample holder of the NMR instrument with care.
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Step 5: Set the desired parameters for the NMR experiment such as the pulse sequence, relaxation delay, and number of scans.
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Step 6: Start the NMR acquisition by initiating the software or hardware control of the NMR instrument.
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Step 7: Allow the NMR instrument to acquire the high resolution NMR spectrum of the sample.
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Step 8: Analyze the obtained NMR spectrum using appropriate software to extract desired information.
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Step 9: Interpret the NMR data to obtain structural and chemical information about the sample.
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Step 10: Document the results and findings obtained from the high resolution NMR analysis.

Who needs high resolution nuclear magnetic?

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Chemists involved in organic and inorganic compound analysis.
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Materials engineers studying material properties and compositions.
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High resolution nuclear magnetic is a technique used to study the structure and dynamics of molecules at the atomic level.
Scientists, researchers, and professionals in the field of chemistry and molecular biology are required to file high resolution nuclear magnetic.
To fill out high resolution nuclear magnetic, one must have access to specialized equipment and software, as well as training in interpreting the data.
The purpose of high resolution nuclear magnetic is to provide detailed information about the chemical structure and properties of molecules.
Information such as chemical shifts, coupling constants, and peak intensities must be reported on high resolution nuclear magnetic.
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