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Highest intensity peak appears for 5 wt% co-doping concentration.
The lattice parameter calculated from the highest intensity peak (111) was a = 4.32 Å.
The small peak at 2θ = 30.8, which is the highest intensity peak for brookite, indicated its presence.
The diffraction intensity was significantly higher in the rutile phase on the FTiR substrate with the highest intensity peak being at 2θ ~ 62.5° (002).
The synthesized nanoparticles showed highest intensity peak at 2θ values of 35.280, 29.260 and 29.52 for hesperidin, naringin and diosmin, respectively.
Based of the highest intensity peak of (311), the calculated lattice parameter is 0.8456 nm, which is larger than the bulk CoFe2O4 value of 0.8391 nm.
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Ni, Mn, V, C, and O are marked at the highest intensity peaks.
Volume fractions of Fe3O4/FeO, calculated by ratio of highest intensity peaks from XRD data, are summarized in Figure 2. Figure 3 X-ray diffraction patterns of raw magnetite and irradiated nanoparticles at various laser fluencies.
Aligning MS /MS spectra Under common experimental conditions, the highest intensity peaks in MS spectra typically correspond to y- and, to a lesser extent, b-ions.
The three highest intensity peaks with a charge state of three or higher were selected in each cycle for iontrap fragmentation and Orbitrap detection of the fragments at 7500 resolution.
The high intensity peak observed at the 2θ value of 43.3° was indexed to Cu(111).
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