Top-down view of a mixed forest with many dead trees, whose dead, bare branches appear white in between the green of the healthy trees.

Publications of Annu Panwar

Journal Article (7)

1.
Journal Article
Panwar, A.; Migliavacca, M.; Nelson, J. A.; Cortés, J.; Bastos, A.; Forkel , M.; Winkler, A.: Methodological challenges and new perspectives of shifting vegetation phenology in eddy covariance data. Scientific Reports 13, 13885 (2023)
2.
Journal Article
Li, W.; Pacheco-Labrador, J.; Migliavacca, M.; Miralles, D.; Hoek van Dijke, A. J.; Reichstein, M.; Forkel, M.; Zhang, W.; Frankenberg, C.; Panwar, A. et al.; Zhang, Q.; Weber, U.; Gentine, P.; Orth, R.: Widespread and complex drought effects on vegetation physiology inferred from space. Nature Communications 14, 4640 (2023)
3.
Journal Article
Panwar, A.; Kleidon, A.: Evaluating the response of diurnal variations in surface and air temperature to evaporative conditions across vegetation types in FLUXNET and ERA5. Journal of Climate 35 (19), pp. 2701 - 2728 (2022)
4.
Journal Article
Turnbull, T.; Renner, M.; Panwar, A.; Katsikis, N.; Kleidon, A.; Schindler, A.: Quantifying available energy and anthropogenic energy use in the Mississippi river basin. The Anthropocene Review 8 (3), pp. 280 - 303 (2021)
5.
Journal Article
Panwar, A.; Renner, M.; Kleidon, A.: Imprints of evaporative conditions and vegetation type in diurnal temperature variations. Hydrology and Earth System Sciences 24 (10), pp. 4923 - 4942 (2020)
6.
Journal Article
Pandey, S. K.; Vinoj, V.; Panwar, A.: The short-term variability of aerosols and their impact on cloud properties and radiative effect over the Indo-Gangetic Plain. Atmospheric Pollution Research 11 (3), pp. 630 - 638 (2020)
7.
Journal Article
Panwar, A.; Kleidon, A.; Renner, M.: Do surface and air temperatures contain similar imprints of evaporative conditions? Geophysical Research Letters 46 (7), pp. 3802 - 3809 (2019)

Thesis - PhD (1)

8.
Thesis - PhD
Panwar, A.: Understanding the different responses of diurnal surface and air temperatures to evaporation across vegetation types. Dissertation, Friedrich Schiller University Jena, Jena (2022)
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