Gignac, C.; Rochefort, L.; Gauthier, G.; Lévesque, E.; Maire, V.; Deschamps, L.; Pouliot, R.; Marchand-Roy, M.
N/P Addition Is More Likely Than N Addition Alone to Promote a Transition from Moss-Dominated to Graminoid-Dominated Tundra in the High-Arctic. Atmosphere 2022, 13, 676.
https://doi.org/10.3390/atmos13050676
AMA Style
Gignac C, Rochefort L, Gauthier G, Lévesque E, Maire V, Deschamps L, Pouliot R, Marchand-Roy M.
N/P Addition Is More Likely Than N Addition Alone to Promote a Transition from Moss-Dominated to Graminoid-Dominated Tundra in the High-Arctic. Atmosphere. 2022; 13(5):676.
https://doi.org/10.3390/atmos13050676
Chicago/Turabian Style
Gignac, Charles, Line Rochefort, Gilles Gauthier, Esther Lévesque, Vincent Maire, Lucas Deschamps, Rémy Pouliot, and Mylène Marchand-Roy.
2022. "N/P Addition Is More Likely Than N Addition Alone to Promote a Transition from Moss-Dominated to Graminoid-Dominated Tundra in the High-Arctic" Atmosphere 13, no. 5: 676.
https://doi.org/10.3390/atmos13050676
APA Style
Gignac, C., Rochefort, L., Gauthier, G., Lévesque, E., Maire, V., Deschamps, L., Pouliot, R., & Marchand-Roy, M.
(2022). N/P Addition Is More Likely Than N Addition Alone to Promote a Transition from Moss-Dominated to Graminoid-Dominated Tundra in the High-Arctic. Atmosphere, 13(5), 676.
https://doi.org/10.3390/atmos13050676