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Phloem Catastrophe: Using Bifurcation Analysis to Predict Plant Tipping Points

Journal articles
Youssef, L; Nakad, M; domec, J-C; Sevanto, S; Katul, GG
Published in: ARC Geophysical Research
December 8, 2025

Duke Scholars

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Published In

ARC Geophysical Research

DOI

EISSN

3067-6711

Publication Date

December 8, 2025

Volume

1

Issue

1

Publisher

University of North Carolina Press (publisher)
 

Citation

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Youssef, L., Nakad, M., domec, J.-C., Sevanto, S., & Katul, G. G. (2025). Phloem Catastrophe: Using Bifurcation Analysis to Predict Plant Tipping Points. ARC Geophysical Research, 1(1). https://doi.org/10.5149/arc-gr.2526
Youssef, Louis, Mazen Nakad, jean-christophe domec, Sanna Sevanto, and Gabriel George Katul. “Phloem Catastrophe: Using Bifurcation Analysis to Predict Plant Tipping Points.” ARC Geophysical Research 1, no. 1 (December 8, 2025). https://doi.org/10.5149/arc-gr.2526.
Youssef L, Nakad M, domec J-C, Sevanto S, Katul GG. Phloem Catastrophe: Using Bifurcation Analysis to Predict Plant Tipping Points. ARC Geophysical Research. 2025 Dec 8;1(1).
Youssef, Louis, et al. “Phloem Catastrophe: Using Bifurcation Analysis to Predict Plant Tipping Points.” ARC Geophysical Research, vol. 1, no. 1, University of North Carolina Press (publisher), Dec. 2025. Crossref, doi:10.5149/arc-gr.2526.
Youssef L, Nakad M, domec J-C, Sevanto S, Katul GG. Phloem Catastrophe: Using Bifurcation Analysis to Predict Plant Tipping Points. ARC Geophysical Research. University of North Carolina Press (publisher); 2025 Dec 8;1(1).

Published In

ARC Geophysical Research

DOI

EISSN

3067-6711

Publication Date

December 8, 2025

Volume

1

Issue

1

Publisher

University of North Carolina Press (publisher)