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PRISMS (Portable Remote Imaging System for Multispectral Scanning) is designed for in situ, simultaneous high resolution spectral and 3D topographic imaging of wall paintings and other large surfaces.
These results will be used for in situ simultaneous identification of the ClO−4 and other intermediate oxygen chloride products generated during a dynamic electrostatic discharge (ESD) experiment.
The results of the current study will be used for in situ simultaneous identification of the ClO−4 and other intermediate oxygen chloride products generated during a dynamic ESD experiment.
It appears that in situ simultaneous ethoxylation, anionic polymerization of BMI and imide modifications were responsible for creating the new chemical structure and molecular morphology that was different from traditional BMI resins.
We describe a tunable diode laser spectrometer for the in situ simultaneous detection of the nitric acid and the water vapour by means of high resolution absorption spectroscopy on rovibronic lines, using a single laser emitting in the mid-infrared (5.8 μm) and a multipass cell.
The VIP system was designed to allow in situ simultaneous monitoring of the dynamic fractions (i.e. the maximum potentially bioavailable fractions) of Cu II), Pb II) and Cd II) in natural waters at a frequency of 2 3 analyses h− 1.
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Their origins were studied with an in-situ simultaneous SAXS and WAXS technique during the uniaxial deformation.
The evolution of molecular aggregation structure during stretching was monitored using in-situ simultaneous small-angle X-ray scattering and wide-angle X-ray diffraction.
The heat required to drive the endothermic steam-methane reforming is supplied by in-situ simultaneous heat production from calcium carbonate formation, by which also CO2 capture is achieved (calcium looping process).
Recent results from melt spinning of several polymers (nylon 6, polyethylene, poly vinylidene fluoride) using in-situ simultaneous synchrotron small- and wide-angle X-ray scattering (SWAXS) techniques are summarized.
The structures of the nanocomposites were investigated using differential scanning calorimetry (DSC), Fourier transform infrared (FT-IR) spectroscopy, and in-situ simultaneous small and wide angle X-ray scatterings (SAXS and WAXS) during uniaxial deformation.
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