Brandmaier, V.; Altmanninger, A.; Leisch, F.; Gruber, E.; Takács, E.; Mörtl, M.; Klátyik, S.; Székács, A.; Zaller, J.G.
Glyphosate-Based Herbicide Formulations with Greater Impact on Earthworms and Water Infiltration than Pure Glyphosate. Soil Syst. 2023, 7, 66.
https://doi.org/10.3390/soilsystems7030066
AMA Style
Brandmaier V, Altmanninger A, Leisch F, Gruber E, Takács E, Mörtl M, Klátyik S, Székács A, Zaller JG.
Glyphosate-Based Herbicide Formulations with Greater Impact on Earthworms and Water Infiltration than Pure Glyphosate. Soil Systems. 2023; 7(3):66.
https://doi.org/10.3390/soilsystems7030066
Chicago/Turabian Style
Brandmaier, Verena, Anna Altmanninger, Friedrich Leisch, Edith Gruber, Eszter Takács, Mária Mörtl, Szandra Klátyik, András Székács, and Johann G. Zaller.
2023. "Glyphosate-Based Herbicide Formulations with Greater Impact on Earthworms and Water Infiltration than Pure Glyphosate" Soil Systems 7, no. 3: 66.
https://doi.org/10.3390/soilsystems7030066
APA Style
Brandmaier, V., Altmanninger, A., Leisch, F., Gruber, E., Takács, E., Mörtl, M., Klátyik, S., Székács, A., & Zaller, J. G.
(2023). Glyphosate-Based Herbicide Formulations with Greater Impact on Earthworms and Water Infiltration than Pure Glyphosate. Soil Systems, 7(3), 66.
https://doi.org/10.3390/soilsystems7030066