Shah, A.; Allen, G.; Pitt, J.R.; Ricketts, H.; Williams, P.I.; Helmore, J.; Finlayson, A.; Robinson, R.; Kabbabe, K.; Hollingsworth, P.;
et al. A Near-Field Gaussian Plume Inversion Flux Quantification Method, Applied to Unmanned Aerial Vehicle Sampling. Atmosphere 2019, 10, 396.
https://doi.org/10.3390/atmos10070396
AMA Style
Shah A, Allen G, Pitt JR, Ricketts H, Williams PI, Helmore J, Finlayson A, Robinson R, Kabbabe K, Hollingsworth P,
et al. A Near-Field Gaussian Plume Inversion Flux Quantification Method, Applied to Unmanned Aerial Vehicle Sampling. Atmosphere. 2019; 10(7):396.
https://doi.org/10.3390/atmos10070396
Chicago/Turabian Style
Shah, Adil, Grant Allen, Joseph R. Pitt, Hugo Ricketts, Paul I. Williams, Jonathan Helmore, Andrew Finlayson, Rod Robinson, Khristopher Kabbabe, Peter Hollingsworth,
and et al. 2019. "A Near-Field Gaussian Plume Inversion Flux Quantification Method, Applied to Unmanned Aerial Vehicle Sampling" Atmosphere 10, no. 7: 396.
https://doi.org/10.3390/atmos10070396
APA Style
Shah, A., Allen, G., Pitt, J. R., Ricketts, H., Williams, P. I., Helmore, J., Finlayson, A., Robinson, R., Kabbabe, K., Hollingsworth, P., Rees-White, T. C., Beaven, R., Scheutz, C., & Bourn, M.
(2019). A Near-Field Gaussian Plume Inversion Flux Quantification Method, Applied to Unmanned Aerial Vehicle Sampling. Atmosphere, 10(7), 396.
https://doi.org/10.3390/atmos10070396