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'I would never have guessed it': Unexpected effect is squeezing Mars' atmosphere like toothpaste, experts say

https://www.livescience.com/author/harry-baker· ·9 min read · 0 reactions · 0 comments · 44 views
 'I would never have guessed it': Unexpected effect is squeezing Mars' atmosphere like toothpaste, experts say
TL;DR · WeSearch summary

Researchers have discovered the Zwan-Wolf effect on Mars, which was previously thought to be impossible on the planet. This phenomenon, detected by NASA's MAVEN spacecraft, involves the squeezing of plasma in Mars' upper atmosphere following a solar storm. The findings could alter our understanding of space weather effects throughout the solar system.

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Live Science files mainly under science. We currently carry 137 of its stories.

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Live Science · https://www.livescience.com/author/harry-baker
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Record

Original publisherLive Science
Canonical URLhttps://www.livescience.com/space/mars/i-would-never-have-guessed-it-unexpected-effect-is-squeezing-mars-atmosphere-like-toothpaste-experts-say
Publication timeFri, 29 May 2026 14:48:56 +0000
Retrieval time2026-05-29T14:55:01.308Z
Last seen2026-05-29T14:55:01.308Z
Headline sourcePublisher (no WeSearch rewrite)
Excerpt sourcepublisher body
Excerpt methodFirst ~120 words (~800 chars) of extracted publisher body, fair-use limited.
SummaryWeSearch · cerebras-chat (WeSearch summarizer)
Summary source textcontentText
Citation coverageSummary is a WeSearch-generated derivative; primary citation is the original publisher URL.
ClusterMLtMbCgL5tj6
Cluster logicGrouped by semantic title/content similarity across sources within a rolling window. Same-publisher template collisions are excluded from coverage comparison.
Ranking reasonStory pages are not engagement-ranked. Hub feeds use recency, with optional source-diversified chronological ordering (cap consecutive stories per source). No personalized ranking.
Publisher visitYes — open original
Substitutes article?No — link-out required for full text

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Machine-readable
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WeSearch interpretation
WeSearch declared handling (basis: Derived from the published RSS/Atom feed). This is WeSearch policy, not a legal grant on the publisher's behalf.
Unknown
Retrieval and training permissions are not asserted unless the publisher confirms them.

WeSearch handling by dimension

Indexing May the item be indexed (stored, ranked, made findable)? Allowed
Snippet May a short excerpt of the publisher's text be shown? Allowed
AI summary May WeSearch generate its own short summary of the article? Limited
Retrieval / RAG May the content be exposed for third-party retrieval-augmented generation? Not asserted
Model training May the content be used to train AI models? Not asserted
Commercial reuse May the content be reused commercially? Not permitted

Basis: Derived from the published RSS/Atom feed. Contact: [email protected]. Reviewed: 2026-07-24.

Opening excerpt (first ~120 words) tap to expand

Space Astronomy Planets Mars 'I would never have guessed it': Unexpected effect is squeezing Mars' atmosphere like toothpaste, experts say Researchers have uncovered an unexpected phenomenon, dubbed the Zwan-Wolf effect, squeezing plasma "like toothpaste" in Mars' upper atmosphere. This effect, which also happens on Earth, was thought to be impossible on the Red Planet. By Harry Baker published 29 May 2026 in News When you purchase through links on our site, we may earn an affiliate commission. Here’s how it works. NASA's MAVEN spacecraft detected strange "wiggles" in Mars' atmosphere after a powerful coronal mass ejection smashed into the Red Planet in 2023. These fluctuations were tell-tale signs of the Zwan-Wolf effect, which was previously thought to be impossible on Mars.

Excerpt limited to ~120 words for fair-use compliance. The full article is at Live Science.

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