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Christopher Kenseth

@chriskenseth.bsky.social
148 followers 156 following 5 posts

Prof. of Atmospheric Chemistry at UMD AOSC NSF AGS Postdoc at UWAtmosSci PhD at CaltechCCE BS at UVMChemistry scholar.google.com/citations?user=y…

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Reposted by Christopher Kenseth
Hakeem Jefferson @hakeemjefferson.bsky.social · 06/05/2026
FWIW, I don’t think the major problem in my field, or related ones, is that people need to move faster & produce more. I read a lot of papers as part of the job, and I’m increasingly convinced we’d benefit from fewer papers and better ones, not more mediocre work produced ever more “efficiently.”
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Reposted by Christopher Kenseth
UMD Science @umdscience.bsky.social · 14/04/2026
🎉 Congrats to the 4 #ScienceTerps who received the 2025 NOAA Hollings Scholarship: Allison Fenley ➡️ go.umd.edu/fenley-hollings Donovan Fry ➡️ go.umd.edu/fry-hollings Felix Gomez ➡️ go.umd.edu/gomez-hollings Jenna Strauch ➡️ go.umd.edu/strauch-hollings
Collage of four headshots, top right to bottom left: Allison Fenley, Donovan Fry, Felix Gomez, Jenna Strauch
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Paul Wennberg @paulowennberg.bsky.social · 10/04/2026
Published today, the atmospheric chemistry community and ACS ES&T Air celebrate the important scientific contributions of John H. Seinfeld to atmospheric and aerosol science through this Special Issue dedicated to his legacy. pubs.acs.org/toc/aeacd5/3/4
pubs.acs.org
ACS ES&T Air
The atmospheric chemistry community and ACS ES&T Air celebrate the important scientific contributions of John H. Seinfeld to atmospheric and aerosol science through this Special Issue dedicated to his legacy and showcasing some of the latest advances in the field. View the article.
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Reposted by Christopher Kenseth
Paul Byrne @theplanetaryguy.com · 03/04/2026
This image of home just came down from the Artemis II crew. Taken after their translunar injection burn, there are aurorae at top right and lower left, and zodiacal light at lower right. Credit: NASA/Reid Wiseman
That's home. That's us.
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Christopher Kenseth @chriskenseth.bsky.social · 15/01/2026
Very excited to share that today is my first day as an Asst. Prof. of Atmospheric Chemistry in the Department of Atmospheric and Oceanic Science (AOSC) at UMD! aosc.umd.edu/people/chris... @umdscience.bsky.social
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Reposted by Christopher Kenseth
UMD Science @umdscience.bsky.social · 14/01/2026
From journalists covering #SevereWeather events to investment bankers assessing climate risk, it's essential to have a climate-literate workforce that extends beyond scientific disciplines. That's the goal of the #ClimateChange fluency minor in our Department of Atmospheric and Oceanic Science ⤵️
go.umd.edu
New Climate Change Fluency Minor Will Train Non-Scientists in Climate Literacy | College of Computer, Mathematical, and Natural Sciences | University of Maryland
Students from across the University of Maryland can now incorporate climate science into their career preparatio
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Ann Marie Carlton @amgcarlton.bsky.social · 05/11/2025
Congratulations to John Mak and all of GOTHAAM. The NSF-NCAR video summary really captures the magic of atmospheric chemistry
youtu.be
GOTHAAM: Air Quality Research in New York City
YouTube video by NSF NCAR & UCAR
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Matthew Goss @matthewgoss.bsky.social · 24/09/2025
Our paper examining the chemical conditions of past chamber studies is out! This work explores assumptions made when creating SOA parametrizations based on laboratory data, and can hopefully point to ways of improving model representation of SOA. pubs.acs.org/doi/full/10....
pubs.acs.org
Re-Examining Chemical Conditions of Past Chamber Studies of Secondary Organic Aerosol Formation
The simulation of secondary organic aerosol (SOA) in 3D models generally relies on measurements made in laboratory chamber studies. However, many of the laboratory studies that underpin the aerosol pa...
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Paul Wennberg @paulowennberg.bsky.social · 19/09/2025
Celebrating Richard Flagan's 50 years of service to @caltech.edu! Rick arrived in 1975 intending to study combustion chemistry and ended up playing an enormously influential role in developing new instrumentation to quantify atmospheric aerosol and helping to mitigate air pollution in LA and beyond.
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Joost de Gouw @gouwlab.bsky.social · 03/09/2025
Just watched the powerful new PBS documentary “Clearing the Air: the War on Smog”. My colleague Ellie Browne acted as Science Advisor. Very proud of her! www.pbs.org/wgbh/america...
pbs.org
Clearing the Air: The War on Smog | American Experience | PBS
The story of L.A.’s devastating smog problem and the creation of the EPA and the Clean Air Act.
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Christopher Kenseth @chriskenseth.bsky.social · 21/07/2025
Excited to share our new paper, out today in ACS ES&T Air! Using theory, we map the pathways of α-pinene ozonolysis leading to first-generation products under different atmospheric conditions. Co-authors: Jing Chen (lead), @atmostaj.bsky.social, and Henrik Kjaergaard. @uwatmossci.bsky.social (1/2)
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Theoretical Mapping of the Gas-Phase Ozonolysis of α-Pinene: Formation of First-Generation Products under Different Atmospheric Conditions
Ozonolysis of α-pinene is a significant and well-established source of atmospheric secondary organic aerosol (SOA), which plays a pivotal role in climate, air quality, and human health. The products of α-pinene ozonolysis measured experimentally are typically characterized by only their molecular formulas, while their structures and formation mechanisms often remain unclear. In this work, we theoretically map the oxidation pathways, structures, and formation time scales of the major first-generation products formed from α-pinene ozonolysis by calculating the H-shift and bond-scission reaction rate coefficients of the peroxy (RO2) and alkoxy (RO) radicals that arise under atmospheric conditions with different RO2 bimolecular reaction rates (kbi): polluted (kbi > 0.2 s–1), moderate (0.2 s–1 > kbi > 0.01 s–1), and pristine (kbi ≈ 0.01 s–1). In polluted environments, almost no RO2 unimolecular reactions are of importance and ozonolysis leads to nitrates and small fragmented products. By contrast, in moderate to pristine atmospheres, C10 highly oxygenated organic molecules (HOMs) with up to 12 oxygen atoms can form from either purely unimolecular or a combination of unimolecular and bimolecular reactions. Our results suggest that explicit chemical mechanisms of α-pinene ozonolysis used ubiquitously in the literature require significant revision in their treatment of unimolecular-isomerization and stereoisomer-specific reactions.
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The Weather & Climate Livestream @wclivestream.bsky.social · 31/05/2025
Thought-provoking quote from @atmostaj.bsky.social during the Weather and Climate Livestream about the role of "serendipity" in scientific discovery and the importance of having a broadly funded scientific enterprise that allows for it. wclivestream.com/watch/
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Paul Wennberg @paulowennberg.bsky.social · 24/03/2025
@NASA and @caltech.edu kineticist extraordinaire Stan Sander died Saturday night surrounded by his family. Stan was a kind mentor, inventive scientist and engineer. He will be sorely missed by me and many colleagues around the world.
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Colette Heald @coletteheald.bsky.social · 13/11/2024
Here's the atmospheric chemistry starter pack! Let me know if you'd like to join! Looking forward to hearing about everyone's fun science on bluesky! go.bsky.app/GgmWgSo
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