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- Data for: Design, simulation and development of a magnetic levitation system (MAGLEV)Uma das simulações realizadas
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- Data for: Expanding the bandgap of thermal phonons by using supercrystalsThis is the simplified simulation code.
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- Data for: Measurement of the optical dielectric properties of thin- lm materials by ultrafast time-resolved interferometrythese are the principle, the sample in the expriment used in this article and the data processing, also the set-up used in this expriment
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- Data for: Distinct Roles of Complex Defect Clusters and Insulating Grain Boundary on Dielectric Properties of (In3+/Ta5+) Co–Doped CaCu3Ti4O12 CeramicsRaw data
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- Data for: MHD Natural Convection of Sodium Alginate Casson Nanofluid over a Solid Spherethis data belongs to MHD Natural Convection of Sodium Alginate Casson Nanofluid over a Solid Sphere
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- Data for: Green Synthesis of Fluorescent Ag-Anionic Polyacrylamide Nanoparticles Gels Solution with High Stability via a Simple Template MethodThe research data included 5 graphs.The schematic diagram of the synthesis of Ag-APAM NPs gels solution was shown in Fig. 1. Figure 2 shown the morphologies of Ag-APAM NPs gels solution (a, b), the photos of Ag-APAM NPs gels solution under the daylight lamp (c) and the UV lamp (d), EDAX spectrum (e) and Ag element mapping (f) of Ag-APAM NPs gel.SEM images of Ag-APAM NPs gel obtained after freeze-drying the solution with 25 µM APAM were shown in Fig. 3(a) and (b) and Fig.3(c,d) shown TEM images of Ag-APAM NPs gels solution prepared with 25 µM APAM under different magnifications.As shown in Fig. 4,we could obtain the average pore diameter of Ag-APAM NPs gels solution is about 62.8 nm according to the nitrogen adsorption-desorption isotherm.Finally, Fig. 5 was UV-vis spectra (a) and fluorescence spectra (b) of Ag-APAM NPs gels solution with different APAM concentrations.
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- Data for: Glassy NiTi Produced with Different Cooling Times: Structural Investigation Using Molecular Dynamics SimulationsThe file contains the configuration of NiTi alloy obtained from various cooling time.
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- Data for: Coupling efficiency of a partially coherent collimating laser from turbulent biological tissue to fiberIn this work, we propose a model of the fiber coupling efficiency for a partially coherent collimating laser beam propagating through turbulent biological tissue to fiber. We discussed the the effect of link parameters on the coupling efficiency of a partially coherent collimating laser beam.
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- Data for: Corrosion resistance and cell compatibility in vitro of Chinese herbal extract coating on magnesiumFigure Captions Fig. 1. SEM images of various coatings: (a) UMAO, (b) UMAO/CS, (c) UMAO/CS/IC(10V3 M), (d) UMAO/CS/IC(20V3M) and (e) UMAO/CS/IC(20V5M). Fig. 2. SEM cross-section morphologies of various coatings: (a) UMAO, (b) UMAO/CS, (c) UMAO/CS/IC(10V3M), (d) UMAO/CS/IC(20V3M) and (e) UMAO/CS/IC(20V5M). Fig. 3. (a) X-ray diffraction patterns and (b) FT-IR spectra of various coatings. Fig. 4. (a) AFM images and (b) digital photographs of water droplets of various coatings. Fig. 5. (a) Potentiodynamic polarization curves, (b) Nyquist plots, and (c) Bode plots of various samples. The symbols are the experimental data and the solid lines are fitting data. Fig. 7. SEM images of cells cultured on various coatings: (a) UMAO, (b) UMAO/CS, and (c) UMAO/CS/IC. Fig. 8. CLSM images of cells cultured for 0.5 h on various coatings: (a) UMAO, (b) UMAO/CS, and (c) UMAO/CS/IC. Fig. 9. Adhesion of MC3T3-E1 cells cultured on various coatings for 0.5, 1, 2, and 6 hours. Data are presented as the mean ± SD, n = 4, (#) p < 0.05 and (##) p < 0.01 compared with those of UMAO, (*) p < 0.05 and (**) p < 0.01 compared with those of UMAO/CS. Fig. 10. Proliferation of MC3T3-E1 cells cultured on various coatings for 1, 3, and 5 days. Data are presented as the mean ± SD, n = 4, (#) p < 0.05 and (##) p < 0.01 compared with those of UMAO, (*) p < 0.05 and (**) p < 0.01 compared with those of UMAO/CS.
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- Data for: Design consideration of high voltage Ga2O3 vertical schottky barrier diode with field plateFIG 1_data_ Electric field strength at locations A, B, and C as a function of reverse voltage for different insulators; (b) SiO2, (c) Al2O3, and (d) HfO2 FIG 1_ data_ (e) Reverse characteristics as a function of field plate length and (f) forward characteristics as a function of field plate length.
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