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    "story_id": "mp-2026-08-02-005",
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    "headline": "A Brighter Cloud Shifted Weather Far Away",
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    "dek": "Models weakened a later El Nino after targeted Pacific cloud brightening while moving rainfall risks toward Europe and Asia.",
    "summary": "Models weakened a later El Nino after targeted Pacific cloud brightening while moving rainfall risks toward Europe and Asia.",
    "body_text": "Climate-model experiments found that targeted marine cloud brightening in the southeastern Pacific could weaken a subsequent El Nino by cooling surface waters that feed the cycle. The same simulations produced remote shifts, including rainfall and temperature changes across Europe and Asia. The work explores a hypothetical intervention rather than recommending deployment, and it reinforces that a regional cooling action can redistribute risk across borders.",
    "why_it_matters": "Models weakened a later El Nino after targeted Pacific cloud brightening while moving rainfall risks toward Europe and Asia.",
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    "first_published_at": "2026-08-02T09:00:00.000-04:00",
    "modified_at": "2026-08-02T09:00:00.000-04:00",
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    "tags": [
      "climate",
      "El Nino",
      "marine cloud brightening",
      "geoengineering"
    ],
    "image_url": null,
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      "source_id": "source-2026-08-02-005",
      "title": "Science Advances: targeted marine cloud brightening and El Nino",
      "publisher": "Science Advances",
      "url": "https://doi.org/10.1126/sciadv.adx3012",
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    "description": "A daily newspaper for the age of artificial intelligence."
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    "title": "A Brighter Cloud Shifted Weather Far Away",
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