Exemplos de uso de Diffuse reflectance em Inglês e suas traduções para o Português
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Diffuse reflectance spectra were recorded in the region of 400-2500 nm.
Under strong light or bad diffuse reflectance of target, please use a reflection board.
The synthesized materials were characterized by tg/ dsc, xrd, edx,and sem diffuse reflectance spectroscopy.
The infrared spectroscopy based on diffuse reflectance may be applied to determine the content of low-dosage active substance in capsules.
The prepared catalysts were characterized by xrd, xrf, raman spectroscopy, ftir,uv- vis diffuse reflectance.
The samples were characterized by diffuse reflectance infrared fourier transform drift.
The synthesized materials were characterized by sem¿eds, x-ray diffraction,x-ray fluorescence and diffuse reflectance.
With this project aims to: a assess the potential of using diffuse reflectance spectroscopy in the characterization of i….
By diffuse reflectance spectra it was concluded that titanium is found as two species tetrahedrally coordinated and form of tio2.
The spectroscopic properties of the complexes were studied by diffuse reflectance and luminescence spectroscopies.
Based on diffuse reflectance, doped materials have presented more intense color than the pure oxides, indicating a change in the values of the band gap.
Photocatalysts characterization was realized by sem, xrd, bet,uv-vis diffuse reflectance spectra and ft-ir spectroscopy.
Specular Reflectance Excluded(SCE)Measurement of reflectance made in such a way that the specular reflectance is excluded from the measurement; diffuse reflectance.
Two different types of infrared measurements were applied, diffuse reflectance(drifts) and attenuated total reflectance atr.
One approach for performing these analyzes faster and less costly financially,it is the use of radiometric techniques sensors diffuse reflectance.
Under bad measure condition,like environment with strong light or the diffuse reflectance of measuring point over-high or low, the accuracy would have bigger amount of error:± 3 mm+40PPM.
Calcined powered samples were characterized by x-ray diffraction,n2 adsorption/desorption isotherms and uv-vis diffuse reflectance spectroscopy.
The catalysts were characterized by scanning electron microscopy(sem), diffuse reflectance spectroscopy(drs), x-ray powder diffraction(xrd) and nitrogen adsorption/desorption.
Catalysts tio¿p25 and c-tio¿kronos were characterized by x-ray diffraction,infrared spectroscopy, bet analysis and diffuse reflectance analysis.
Objective of this study was to evaluate the color of the soil obtained by diffuse reflectance spectroscopy- vis-nir, for the mapping of specific areas of management in coffee culture.
The produced titanates were characterized via scanning and transmission electron microscopy, nitrogen adsorption, energy dispersive xray spectroscopy,mössbauer and diffuse reflectance spectroscopy.
The photophysical properties were interpreted by absorption and diffuse reflectance uv-vis spectrophotometry by photoluminescence emission spectroscopy.
Were obtained pale-yellow polycrystalline powders that were characterized by x ray diffraction, microraman spectroscopy, scanning electron microscopy(sem),photoluminescence spectroscopy and uv/vis diffuse reflectance.
A spectrometer was used to obtain the chemical modifications of wood surfaces, detected by diffuse reflectance spectroscopy in the mid-infrared drift.
In recent decades near-infrared diffuse reflectance spectroscopy(400-2500 nm) has been shown to be a viable alternative for rapidly analyzing soil properties.
The samples were characterized by x-ray diffractometry(xrd), x-ray fluorescence(frx), raman spectroscopy,fourier transform infrared spectroscopy(ftir), uv-vis diffuse reflectance and nitrogen desorption adsorption.
The materials were characterized by x-ray diffraction(xrd), diffuse reflectance spectroscopy(erd), scanning electron microscopy(sem) with spectroscopy energy dispersive(eds), hydrophobicity and perfilometry.
All systems were characterized by spectroscopic and electrochemical techniques such as: fourier transform infrared spectroscopy(ftir), x-ray diffraction(xrd), scanning electron microscopy(sem),uv-visible spectroscopy(diffuse reflectance) and cyclic voltammetry cv.
This work presents two methods based on digital image analysis, diffuse reflectance spectroscopy in the visible espectral range and multivariate analysis to classify seeds castor with respect to the type of cultivar and genotype.
The samples were characterized by x-ray diffraction(xrd), scanning electron microscopy(sem), scanning electron transmission(tem), thermal gravimetric analysis(tga), brunauer- emmett-teller theory(bet),uv¿vis diffuse reflectance and fluorescence emission spectroscopy.