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The photoelectrochemical responses of the anode to visible (Vis) and ultraviolet (UV) light were studied to examine the magnetic field effect.
In the study, the immunogenicity in the induction of humoral and cellular immune responses by HBV DNA vaccine and the adjuvant effect of LIGHT were studied in a murine model.
TiO2 as reference catalyst, and two doped titania, Fe-TiO2 and V-TiO2, which were expected to increase the sensitivity of the additives towards the visible light, were studied.
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Finally, the effects of light illumination were studied and it was found that the depletion region shifts its position as a function of light intensity.
The photocatalytic activity and stability of these materials under UV light was studied by the photodegradation of methyl orange (MO).
Optical excitations of finite carbon nanotubes by the cross polarized light are studied within the gradient approximation.
The decolorization of azo dye by titanium dioxide (TiO2) with 360 nm ultraviolet (UV) light was studied in a batch reactor.
The power density of the incident light is studied for the demonstration of the usefulness of the force in terahertz band generated by the structure.
Decolorization of C.I. Basic Red 46 (by46) by the oxalate catalyzed photoelectro-Fenton (PEF) process based on carbon nanotube-polytetrafluoroethylene (CNT-PTFE) cathode under visible light was studied.
There are many known astronomical sources of synchrotron radiation, including emission nebulae, supernova remnants, and active galactic nuclei; the polarization of astronomical light is studied in order to infer the properties of these sources.
For the first time the influence of molecular structure and generation number of photochromic LC homo- and co-dendrimers with azobenzene terminal groups on the photoorientation processes induced by polarized light was studied.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com