Dupont, J.-C.; Haeffelin, M.; Wærsted, E.; Delanoe, J.; Renard, J.-B.; Preissler, J.; O’Dowd, C.
Evaluation of Fog and Low Stratus Cloud Microphysical Properties Derived from In Situ Sensor, Cloud Radar and SYRSOC Algorithm. Atmosphere 2018, 9, 169.
https://doi.org/10.3390/atmos9050169
AMA Style
Dupont J-C, Haeffelin M, Wærsted E, Delanoe J, Renard J-B, Preissler J, O’Dowd C.
Evaluation of Fog and Low Stratus Cloud Microphysical Properties Derived from In Situ Sensor, Cloud Radar and SYRSOC Algorithm. Atmosphere. 2018; 9(5):169.
https://doi.org/10.3390/atmos9050169
Chicago/Turabian Style
Dupont, Jean-Charles, Martial Haeffelin, Eivind Wærsted, Julien Delanoe, Jean-Baptiste Renard, Jana Preissler, and Colin O’Dowd.
2018. "Evaluation of Fog and Low Stratus Cloud Microphysical Properties Derived from In Situ Sensor, Cloud Radar and SYRSOC Algorithm" Atmosphere 9, no. 5: 169.
https://doi.org/10.3390/atmos9050169
APA Style
Dupont, J.-C., Haeffelin, M., Wærsted, E., Delanoe, J., Renard, J.-B., Preissler, J., & O’Dowd, C.
(2018). Evaluation of Fog and Low Stratus Cloud Microphysical Properties Derived from In Situ Sensor, Cloud Radar and SYRSOC Algorithm. Atmosphere, 9(5), 169.
https://doi.org/10.3390/atmos9050169