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#水 — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #水, aggregated by home.social.

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  1. @emeraldmuse
    2/
    Ancient humans were just trying to draw a rippling stream, but they accidentally stumbled onto a perfect visual metaphor for the exact geometric lattice that quantum mechanics dictates for H2O at a microscopic level.

    #water
    #水

  2. @emeraldmuse
    2/
    Ancient humans were just trying to draw a rippling stream, but they accidentally stumbled onto a perfect visual metaphor for the exact geometric lattice that quantum mechanics dictates for H2O at a microscopic level.

    #water
    #水

  3. @emeraldmuse
    2/
    Ancient humans were just trying to draw a rippling stream, but they accidentally stumbled onto a perfect visual metaphor for the exact geometric lattice that quantum mechanics dictates for H2O at a microscopic level.

    #water
    #水

  4. @emeraldmuse
    2/
    Ancient humans were just trying to draw a rippling stream, but they accidentally stumbled onto a perfect visual metaphor for the exact geometric lattice that quantum mechanics dictates for H2O at a microscopic level.

    #water
    #水

  5. @emeraldmuse

    Look at the character again: 水.Physical chemistry tells us that water's bizarre anomalies—like expanding when it freezes—happen because it forms a #tetrahedral network, where every water molecule bonds with exactly four neighbors.By a beautiful bit of cosmic poetry, the Kanji 水 mirrors that exact same number: a central core surrounded by four distinct branching arms.

    #water
    #水
    #kanji
    #Japanese
    #Chinese
    #physics

  6. @emeraldmuse

    Look at the character again: 水.Physical chemistry tells us that water's bizarre anomalies—like expanding when it freezes—happen because it forms a #tetrahedral network, where every water molecule bonds with exactly four neighbors.By a beautiful bit of cosmic poetry, the Kanji 水 mirrors that exact same number: a central core surrounded by four distinct branching arms.

    #water
    #水
    #kanji
    #Japanese
    #Chinese
    #physics

  7. @emeraldmuse

    Look at the character again: 水.Physical chemistry tells us that water's bizarre anomalies—like expanding when it freezes—happen because it forms a #tetrahedral network, where every water molecule bonds with exactly four neighbors.By a beautiful bit of cosmic poetry, the Kanji 水 mirrors that exact same number: a central core surrounded by four distinct branching arms.

    #water
    #水
    #kanji
    #Japanese
    #Chinese
    #physics

  8. @emeraldmuse

    Look at the character again: 水.Physical chemistry tells us that water's bizarre anomalies—like expanding when it freezes—happen because it forms a #tetrahedral network, where every water molecule bonds with exactly four neighbors.By a beautiful bit of cosmic poetry, the Kanji 水 mirrors that exact same number: a central core surrounded by four distinct branching arms.

    #water
    #水
    #kanji
    #Japanese
    #Chinese
    #physics

  9. @emeraldmuse
    2/
    What blows my mind is that this isn't just a quirky physics simulation. If water didn't have this exact, bizarre molecular architecture, it wouldn't expand when it freezes. Ice would sink, the oceans would freeze from the bottom up, and the entire planet would be a dead, lifeless block of ice. We are literally a walking symphony of trillions of chemical reactions that only exist because of this chaotic shape-shifting liquid!

    #water
    #水

  10. @emeraldmuse
    2/
    What blows my mind is that this isn't just a quirky physics simulation. If water didn't have this exact, bizarre molecular architecture, it wouldn't expand when it freezes. Ice would sink, the oceans would freeze from the bottom up, and the entire planet would be a dead, lifeless block of ice. We are literally a walking symphony of trillions of chemical reactions that only exist because of this chaotic shape-shifting liquid!

    #water
    #水

  11. @emeraldmuse
    2/
    What blows my mind is that this isn't just a quirky physics simulation. If water didn't have this exact, bizarre molecular architecture, it wouldn't expand when it freezes. Ice would sink, the oceans would freeze from the bottom up, and the entire planet would be a dead, lifeless block of ice. We are literally a walking symphony of trillions of chemical reactions that only exist because of this chaotic shape-shifting liquid!

    #water
    #水

  12. @emeraldmuse
    2/
    What blows my mind is that this isn't just a quirky physics simulation. If water didn't have this exact, bizarre molecular architecture, it wouldn't expand when it freezes. Ice would sink, the oceans would freeze from the bottom up, and the entire planet would be a dead, lifeless block of ice. We are literally a walking symphony of trillions of chemical reactions that only exist because of this chaotic shape-shifting liquid!

    #water
    #水

  13. tkhunt.com/2409630/ 【日本株:国策銘柄15選】木野内栄治×田代昌之/防衛株の狙い目/サンリオはまだ伸びるのか/AI・半導体株の次の主役/NVIDIAの勢いに急ブレーキか/高市政権の成長戦略を読み解く【マーケット超分析】 #AI #GX #IP #pivot #インフラ #ピボット #リサイクル #半導体 #国策 #投資 #整備 #日本株 #日経平均 #柴田阿弥 #株 #水 #港湾 #脱炭素

  14. tkhunt.com/2409630/ 【日本株:国策銘柄15選】木野内栄治×田代昌之/防衛株の狙い目/サンリオはまだ伸びるのか/AI・半導体株の次の主役/NVIDIAの勢いに急ブレーキか/高市政権の成長戦略を読み解く【マーケット超分析】 #AI #GX #IP #pivot #インフラ #ピボット #リサイクル #半導体 #国策 #投資 #整備 #日本株 #日経平均 #柴田阿弥 #株 #水 #港湾 #脱炭素

  15. 德州大學研發集水布料 穿著外套即可憑空製水
    過往從空氣中收集水分的裝置通常體積龐大且笨重。德州大學奧斯汀分校(UT Austin)研究團隊最近改變了這項技 […]
    #戀上山 #環保 #運動科技 #textile
    unwire.hk/2026/06/12/ut-austin

  16. 德州大學研發集水布料 穿著外套即可憑空製水
    過往從空氣中收集水分的裝置通常體積龐大且笨重。德州大學奧斯汀分校(UT Austin)研究團隊最近改變了這項技 […]
    #戀上山 #環保 #運動科技 #textile
    unwire.hk/2026/06/12/ut-austin

  17. 德州大學研發集水布料 穿著外套即可憑空製水
    過往從空氣中收集水分的裝置通常體積龐大且笨重。德州大學奧斯汀分校(UT Austin)研究團隊最近改變了這項技 […]
    #戀上山 #環保 #運動科技 #textile
    unwire.hk/2026/06/12/ut-austin