Quanta
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![[:es]The Gut Microbiome Helps Social Skills Develop in the Brain[:]](https://katedra.eus/app/uploads/2022/11/png3-9.png)
[:es]The Gut Microbiome Helps Social Skills Develop in the Brain[:]
New research in fish suggests that gut microbes can have a crucial early influence on the brain’s social development.
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![[:es]The Gut Microbiome Helps Social Skills Develop in the Brain[:]](https://katedra.eus/app/uploads/2022/11/png3-9.png)
[:es]The Gut Microbiome Helps Social Skills Develop in the Brain[:]
[:es]New research in fish suggests that gut microbes can have a crucial early influence on the brain’s social development.[:]
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![[:es]New Chip Expands the Possibilities for AI[:]](https://katedra.eus/app/uploads/2022/11/png1-6.png)
[:es]New Chip Expands the Possibilities for AI[:]
An energy-efficient chip called NeuRRAM fixes an old design flaw to run large-scale AI algorithms on smaller devices, reaching the same accuracy as wasteful digital computers.
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![[:es]How Supergenes Fuel Evolution Despite Harmful Mutations[:]](https://katedra.eus/app/uploads/2022/11/png1-3.png)
[:es]How Supergenes Fuel Evolution Despite Harmful Mutations[:]
[:es]Supergenes that lock inherited traits together are widespread in nature. Recent work shows that their blend of genetic benefits and risks for species can be complex.[:]
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![[:es]How Supergenes Fuel Evolution Despite Harmful Mutations[:]](https://katedra.eus/app/uploads/2022/11/png1-3.png)
[:es]How Supergenes Fuel Evolution Despite Harmful Mutations[:]
[:es]Supergenes that lock inherited traits together are widespread in nature. Recent work shows that their blend of genetic benefits and risks for species can be complex.[:]
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![[:es]How Supergenes Fuel Evolution Despite Harmful Mutations[:]](https://katedra.eus/app/uploads/2022/11/png1-3.png)
[:es]How Supergenes Fuel Evolution Despite Harmful Mutations[:]
Supergenes that lock inherited traits together are widespread in nature. Recent work shows that their blend of genetic benefits and risks for species can be complex.
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![[:es]Ocean Bacteria Reveal an Unexpected Multicellular Form[:]](https://katedra.eus/app/uploads/2020/04/PNG-3-1.png)
[:es]Ocean Bacteria Reveal an Unexpected Multicellular Form[:]
[:es]Marine bacteria normally seen as single cells join together as a “microscopic snow globe” to consume bulky floating carbohydrates.[:]
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![[:es]Ocean Bacteria Reveal an Unexpected Multicellular Form[:]](https://katedra.eus/app/uploads/2020/04/PNG-3-1.png)
[:es]Ocean Bacteria Reveal an Unexpected Multicellular Form[:]
[:es]Marine bacteria normally seen as single cells join together as a “microscopic snow globe” to consume bulky floating carbohydrates.[:]
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![[:es]Ocean Bacteria Reveal an Unexpected Multicellular Form[:]](https://katedra.eus/app/uploads/2020/04/PNG-3-1.png)
[:es]Ocean Bacteria Reveal an Unexpected Multicellular Form[:]
[:es]Marine bacteria normally seen as single cells join together as a “microscopic snow globe” to consume bulky floating carbohydrates.[:]
