Filizzola, C.; Falconieri, A.; Lacava, T.; Marchese, F.; Masiello, G.; Mazzeo, G.; Pergola, N.; Pietrapertosa, C.; Serio, C.; Tramutoli, V.
Fire Characterization by Using an Original RST-Based Approach for Fire Radiative Power (FRP) Computation. Fire 2023, 6, 48.
https://doi.org/10.3390/fire6020048
AMA Style
Filizzola C, Falconieri A, Lacava T, Marchese F, Masiello G, Mazzeo G, Pergola N, Pietrapertosa C, Serio C, Tramutoli V.
Fire Characterization by Using an Original RST-Based Approach for Fire Radiative Power (FRP) Computation. Fire. 2023; 6(2):48.
https://doi.org/10.3390/fire6020048
Chicago/Turabian Style
Filizzola, Carolina, Alfredo Falconieri, Teodosio Lacava, Francesco Marchese, Guido Masiello, Giuseppe Mazzeo, Nicola Pergola, Carla Pietrapertosa, Carmine Serio, and Valerio Tramutoli.
2023. "Fire Characterization by Using an Original RST-Based Approach for Fire Radiative Power (FRP) Computation" Fire 6, no. 2: 48.
https://doi.org/10.3390/fire6020048
APA Style
Filizzola, C., Falconieri, A., Lacava, T., Marchese, F., Masiello, G., Mazzeo, G., Pergola, N., Pietrapertosa, C., Serio, C., & Tramutoli, V.
(2023). Fire Characterization by Using an Original RST-Based Approach for Fire Radiative Power (FRP) Computation. Fire, 6(2), 48.
https://doi.org/10.3390/fire6020048