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{
    "url": "https://mailman.amsat.org/hyperkitty/api/list/[email protected]/email/EXAUG7ELDOMYWR2QESOEBHYO5B6RTCCH/",
    "mailinglist": "https://mailman.amsat.org/hyperkitty/api/list/[email protected]/",
    "message_id": "[email protected]",
    "message_id_hash": "EXAUG7ELDOMYWR2QESOEBHYO5B6RTCCH",
    "thread": "https://mailman.amsat.org/hyperkitty/api/list/[email protected]/thread/OC4WNJVXKH6TSW7RX6XSS2PS5H37TDYF/",
    "sender": {
        "address": "rmann (a) latencyzero.com",
        "mailman_id": "121de019d9f84629960e595cfec5bbe3",
        "emails": "https://mailman.amsat.org/hyperkitty/api/sender/121de019d9f84629960e595cfec5bbe3/emails/"
    },
    "sender_name": "Rick Mann",
    "subject": "[amsat-bb] Re: ISS power output ? MM",
    "date": "2008-01-02T20:47:46Z",
    "parent": "https://mailman.amsat.org/hyperkitty/api/list/[email protected]/email/M3B7YFTQ3MMK34DLYT5I7NSF7TSWQXVS/",
    "children": [],
    "votes": {
        "likes": 0,
        "dislikes": 0,
        "status": "neutral"
    },
    "content": "\nOn Jan 2, 2008, at 12:01 PM, James C. Mankin wrote:\n\n> There is a distinction between  free convection and forced  \n> convection.   Free convection requires gravity\n> and doesnt work in microgravity while forced convection with a fan  \n> does.   Both are types of convective heat\n> transfer.\n\nFair 'nough. I tend to think of the unqualified \"convection\" as free  \nconvection, but you're right. In any case, I would think that (on this  \nradio) the forced convection for the fan greatly eclipses the free  \nconvection one would get in a uniform gravity field, making cooling  \nrequirements a bit of a non-issue in this case.\n\n-- \nRick\n\n",
    "attachments": []
}