Abstract submissions are open until Jan 14: agu.confex.com/agu/abscicon...
#AbSciCon
Abstract submissions are open until Jan 14: agu.confex.com/agu/abscicon...
#AbSciCon
Apply by Dec 15th here: shorturl.at/4a4O6
Apply by Dec 15th here: shorturl.at/4a4O6
1. How do habitable planets form? 🪐
2. How does life emerge on habitable planets? 🧬
Full information at: wicor.wisc.edu/postdoc/
Apply by Nov 15
🔭 🧪
#postdoc #hiring
1. How do habitable planets form? 🪐
2. How does life emerge on habitable planets? 🧬
Full information at: wicor.wisc.edu/postdoc/
Apply by Nov 15
🔭 🧪
#postdoc #hiring
I somehow have never read any of Rachel Carson’s books so I am making up for that now!
I somehow have never read any of Rachel Carson’s books so I am making up for that now!
Our amazing student Holly Rucker @hollyrucker.bsky.social breaks down what Mars’ potential biomarkers mean for the search for life 🌌🚀
@uwmadscience.bsky.social
👇
www.youtube.com/watch?v=z6mQ...
We challenge the idea of early Earth as major N2O source; reshaping views on climate & biosignatures. Led by S. Buessecker @annedekas.bsky.social lab!
➡️ Microbial N2O reduction in sulfidic waters: Implications for Proterozoic oceans
www.biorxiv.org/content/10.1...
We challenge the idea of early Earth as major N2O source; reshaping views on climate & biosignatures. Led by S. Buessecker @annedekas.bsky.social lab!
➡️ Microbial N2O reduction in sulfidic waters: Implications for Proterozoic oceans
www.biorxiv.org/content/10.1...
We propose that iron -not oxygen- may have delayed the rise of complex life. Our model reframes the “oxygen delay” puzzle: the gap between atmospheric O2 and early eukaryotic fossils may reflect iron-mediated stress, not for O2:
www.biorxiv.org/content/10.1...
We propose that iron -not oxygen- may have delayed the rise of complex life. Our model reframes the “oxygen delay” puzzle: the gap between atmospheric O2 and early eukaryotic fossils may reflect iron-mediated stress, not for O2:
www.biorxiv.org/content/10.1...
Please share, thank you 🙏🏻
Please share, thank you 🙏🏻
Rucker et al. traces ancient nitrogen fixation over 2 billion years through engineering & synthetic evolution. Supports reliability of N-isotope biosignatures on Earth & beyond.
Congrats @hollyrucker.bsky.social! 🚀
www.biorxiv.org/content/10.1...
Beautiful combination of microbial networks, evolutionary trade-offs & ecological feedbacks.
Congrats, @msobol.bsky.social! 👏 www.biorxiv.org/content/10.1...
Beautiful combination of microbial networks, evolutionary trade-offs & ecological feedbacks.
Congrats, @msobol.bsky.social! 👏 www.biorxiv.org/content/10.1...
✅ Ancient enzymes
✅ Eukaryotic origins
✅ Geobiological deep time
See you there, eh? 🇨🇦
cms.eas.ualberta.ca/geobiology20...
✅ Ancient enzymes
✅ Eukaryotic origins
✅ Geobiological deep time
See you there, eh? 🇨🇦
cms.eas.ualberta.ca/geobiology20...