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Transition to unstable oscillatory flames in porous media combustion threshold, the flow pulses can reach a magnitude enough to shift the stable flame in the upstream quenching

Steric interactions influence on electron transfer efficiency in meso-nitrophenylporphyrins and their chemical dimers-ortho-nitrophenyl substituted OEPs the S₁-state quenching is caused by the direct “through space” electron transfer to low

Size-Dependent Non-FRET Photoluminescence Quenching in Nanocomposites Based on Semiconductor Quantum Dots CdSe/ZnS and Functionalized Porphyrin LigandsWe review recent experimental work to utilize the size dependence of the luminescence quenching

Effect of silica coating and further silica surface decoration by phospholipid bilayer on quenching of Tb(III) complexes by adrenochrome(III)-centered luminescence quenching by adrenochrome for Tb(III)-p-sulfonatothiacalix[4]arene complexes in the aqueous

Interfacial adsorption and stripping of ions as a reason of stimuli responsive luminescence of Tb-doped silica nanoparticles and aggregation of Tb-doped silica nanoparticles, accompanied by significant quenching of Tb-centered luminescence

Determination of quenching distance for carbon monoxide-air flamesThe dependence of quenching distance for CO-air flames on mixture composition, temperature

Colloidal stability and photophysical characteristics of luminesent silica nanoparticles modified with various nitrogen/oxygen-containing trialkoxysilanes were found to quench the luminescence of the nanoparticles. The surface modification

Q&P response of a medium carbon low alloy steelAn Fe-0.44%C-1.8%Si-1.3%Mn-0.82%Cr-0.28%Mo steel was subjected to quenching followed by low

The three-dimensional simulation framework for interference and SIR assessment simulation tool for interference and SIR characterization in three-dimensional network deployments

Quantum interference in Moessbauer resonance fluorescence in scattering geometry is effective enough for experimental investigation of the quantum interference of gamma

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