Muthukumar, P.; Nagrecha, K.; Comer, D.; Calvert, C.F.; Amini, N.; Holm, J.; Pourhomayoun, M.
PM2.5 Air Pollution Prediction through Deep Learning Using Multisource Meteorological, Wildfire, and Heat Data. Atmosphere 2022, 13, 822.
https://doi.org/10.3390/atmos13050822
AMA Style
Muthukumar P, Nagrecha K, Comer D, Calvert CF, Amini N, Holm J, Pourhomayoun M.
PM2.5 Air Pollution Prediction through Deep Learning Using Multisource Meteorological, Wildfire, and Heat Data. Atmosphere. 2022; 13(5):822.
https://doi.org/10.3390/atmos13050822
Chicago/Turabian Style
Muthukumar, Pratyush, Kabir Nagrecha, Dawn Comer, Chisato Fukuda Calvert, Navid Amini, Jeanne Holm, and Mohammad Pourhomayoun.
2022. "PM2.5 Air Pollution Prediction through Deep Learning Using Multisource Meteorological, Wildfire, and Heat Data" Atmosphere 13, no. 5: 822.
https://doi.org/10.3390/atmos13050822
APA Style
Muthukumar, P., Nagrecha, K., Comer, D., Calvert, C. F., Amini, N., Holm, J., & Pourhomayoun, M.
(2022). PM2.5 Air Pollution Prediction through Deep Learning Using Multisource Meteorological, Wildfire, and Heat Data. Atmosphere, 13(5), 822.
https://doi.org/10.3390/atmos13050822