AutoGeoLabel: Automated Label Generation for Geospatial Machine Learning
2021 IEEE International Conference on Big Data (Big Data) IEEE (2021) 1779-1786
Direct comparison between single-scattering properties of ordered and disordered aggregates of nano-sized scattering centers.
Applied optics 60:35 (2021) 10893-10900
Abstract:
In this study, we examine the single-scattering properties of aggregates of nano-sized spherical scattering centers (spherules) of different sizes and refractive indices, with an emphasis on contrasting the single-scattering properties of ordered and disordered aggregates, holding all other parameters constant. The ordered aggregates are constructed by arranging the spherules in a simple cubic configuration, while the disordered aggregates are constructed using an ideal amorphous solid algorithm. The single-scattering properties of both kinds of aggregates are computed using the superposition T-matrix method. We find that, in most cases, the scattering and absorption and hence extinction of radiation by ordered aggregates is stronger than for disordered aggregates: for the cases we examine, the average percent difference in scattering efficiency is 14%, and the maximum percent difference in scattering efficiency is 44%; the average percent difference in absorption efficiency is 5.3%, and the maximum percent difference in absorption efficiency is 18%; the average percent difference in extinction efficiency is 12%, and the maximum percent difference in extinction efficiency is 40%. These differences have implications regarding radiative transfer in systems of amorphous particles in general.Apparent temperature and heat鈥恟elated illnesses during international athletic championships: A prospective cohort study
Scandinavian Journal of Medicine and Science in Sports Wiley 31:11 (2021) 2092-2102
Compressing atmospheric data into its real information content
Nature Computational Science Springer Nature 1:11 (2021) 713-724
Using Non-Linear Causal Models to 51猎奇入口 Aerosol-Cloud Interactions in the Southeast Pacific
(2021)