Understanding how “marine snow” acts as a carbon sink
A new study finds hitchhiking bacteria dissolve essential ballast in ubiquitous “snow” particles, which could counteract the ocean’s ability to sequester carbon.
A new study finds hitchhiking bacteria dissolve essential ballast in ubiquitous “snow” particles, which could counteract the ocean’s ability to sequester carbon.
Venture capitalist Toni Schneider will take over as interim CEO as Bluesky’s board of directors hunts for a permanent replacement.
A new study finds hitchhiking bacteria dissolve essential ballast in ubiquitous “snow” particles, which could counteract the ocean’s ability to sequester carbon.
Venture capitalist Toni Schneider will take over as interim CEO as Bluesky’s board of directors hunts for a permanent replacement.
A new study finds hitchhiking bacteria dissolve essential ballast in ubiquitous “snow” particles, which could counteract the ocean’s ability to sequester carbon.
Venture capitalist Toni Schneider will take over as interim CEO as Bluesky’s board of directors hunts for a permanent replacement.
A new study finds hitchhiking bacteria dissolve essential ballast in ubiquitous “snow” particles, which could counteract the ocean’s ability to sequester carbon.
Venture capitalist Toni Schneider will take over as interim CEO as Bluesky’s board of directors hunts for a permanent replacement.
Shang Dynasty oracle bones and modern weather models feature in the same study.
Shang Dynasty oracle bones and modern weather models feature in the same study.