Hennig, F.; Sugiri, D.; Tzivian, L.; Fuks, K.; Moebus, S.; Jöckel, K.-H.; Vienneau, D.; Kuhlbusch, T.A.J.; De Hoogh, K.; Memmesheimer, M.;
et al. Comparison of Land-Use Regression Modeling with Dispersion and Chemistry Transport Modeling to Assign Air Pollution Concentrations within the Ruhr Area. Atmosphere 2016, 7, 48.
https://doi.org/10.3390/atmos7030048
AMA Style
Hennig F, Sugiri D, Tzivian L, Fuks K, Moebus S, Jöckel K-H, Vienneau D, Kuhlbusch TAJ, De Hoogh K, Memmesheimer M,
et al. Comparison of Land-Use Regression Modeling with Dispersion and Chemistry Transport Modeling to Assign Air Pollution Concentrations within the Ruhr Area. Atmosphere. 2016; 7(3):48.
https://doi.org/10.3390/atmos7030048
Chicago/Turabian Style
Hennig, Frauke, Dorothea Sugiri, Lilian Tzivian, Kateryna Fuks, Susanne Moebus, Karl-Heinz Jöckel, Danielle Vienneau, Thomas A.J. Kuhlbusch, Kees De Hoogh, Michael Memmesheimer,
and et al. 2016. "Comparison of Land-Use Regression Modeling with Dispersion and Chemistry Transport Modeling to Assign Air Pollution Concentrations within the Ruhr Area" Atmosphere 7, no. 3: 48.
https://doi.org/10.3390/atmos7030048
APA Style
Hennig, F., Sugiri, D., Tzivian, L., Fuks, K., Moebus, S., Jöckel, K. -H., Vienneau, D., Kuhlbusch, T. A. J., De Hoogh, K., Memmesheimer, M., Jakobs, H., Quass, U., & Hoffmann, B.
(2016). Comparison of Land-Use Regression Modeling with Dispersion and Chemistry Transport Modeling to Assign Air Pollution Concentrations within the Ruhr Area. Atmosphere, 7(3), 48.
https://doi.org/10.3390/atmos7030048