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A 13C distortionless enhancement by polarization transfer spectrum was used to differentiate between the resonance signals of methine and methylene units in the homopolymer.
A 13C DEPT (distortionless enhancement by polarization transfer) spectrum was used to differentiate the resonance signals for methine and methylene carbons in the copolymer.
A reference experiment was collected followed by the waterLOGSY magnetization transfer spectrum.
Furthermore, large net transfers offset the negative impact of siblings found at the lowest end of the transfer spectrum.
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250 and 350 nm bands are due to the charge transfer spectra of d d transitions from 1A1 → 1T2 transitions of tetrahedral Cr-oxide.
LET (linear energy transfer) spectra (particle fluence, absorbed dose and dose equivalent) and charge spectra for HZE particles were obtained for both subsonic and supersonic flights.
APT (attached proton test) and DEPT (distortionless enhancement by polarisation transfer) spectra were acquired to enable proper resonance assignments, especially in the regions with severe signal overlap.
Energy deposition spectra, linear energy transfer spectra, and flux and dose rates for charged particles will be measured simultaneously with near real time resolution at different depths of the phantom by means of three silicon detectors.
The obtained red shift clearly shows that the sharper band gap is formed, and from Sm ion 4f level to ZnO valence or conduction band there is a charge transfer spectra.
Energy deposition spectra, linear energy transfer spectra, flux and dose rates for protons and the biologically-relevant heavy ion components of the galactic cosmic radiation will be measured simultaneously with near real time resolution at different depths of the phantom by a telescope of silicon detectors.
The C NMR and DEPT (Distortionless Enhancement by Polarisation Transfer) spectra exhibited signals at δ 78.7, 66.1 and 28.1 ppm corresponding to carbons C-2, C-3 and C-4 characteristic for a flavan-3-ol skeleton.
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