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As radiation is absorbed in the sample, the intensity of the radiative beam decreases.
For the added arginine sample, the intensity of this peak is somewhat strengthened, illustrating actual existence of amino acid residue.
For Al sample the intensity of stress wave is about 40 MPa at 200 andm2 aboutbout 78 MPa at 350 A/cm2.
In the case of metal-incorporated SBA-15 sample, the intensity of this peak, i.e., medium to strong acidic region increased in the NH3-TPD measurements for all samples irrespective of the type of metals.
Upon hydrogen treatment of the H2O adsorbed on sample, the intensity of emission peaks in the visible range from 400 to 600 nm is reduced compared to what is observed for the un-treated sample.
For the air-annealed sample, the intensity of the 630-nm emission does not show the same marked decrease in intensity from 400°C to 500°C (part b of Figure 2B) because excess Zn is not available in the annealing atmosphere to fill the vacancies.
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For the S-rGO sample, the intensities of the bands associated with the oxygen functional groups strongly decreased in relation to those of GO.
Indeed, in such samples, the intensity of PL polarized in parallel to polarization of excitation is higher than the PL component polarized in the perpendicular direction, i.e., in the investigated samples, the PM effect is really observed.
However, with close observation of the IR spectra of metal ions-incorporated SBA-15 samples, the intensity of the IR band at 960 correspondsponds to the Si O Si bond decrease.
These figures shows that, only for C0 after heating, the dilatometric peak retains its intensity (about 250 300 1/°C), while for all other samples, the intensity of this peak decreases of 1.5 2 times (560, 480, 420 1/°C before preheating and 200, 300, 230 1/°C after preheating for the C1, C2, C3 samples, respectively).
The data was normalized using one or more internal standards representatives of each class of lipid present in the samples: the intensity of each identified lipid was normalized by dividing it with the intensity of its corresponding standard and multiplying it by the concentration of the standard.
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