๐Ÿš€ ๅฎ‡ๅฎ™ใฎ่จ˜ๆ†ถใƒปใ‚ซใƒฌใƒณใƒ€ใƒผๆคœ็ดข
ใใ‚‡ใ† ใƒฉใƒณใƒ€ใƒ 
ๅ›ž่ปขใ™ใ‚‹ๅœฐ็ƒไธŠใฎๅค่‡ณ Solstice on a Spinning Earth
ๅœฐ็ƒใฎๅ‚พใใ‹ใ‚‰ใ€ไปŠๆ—ฅใŒๅค่‡ณใ ใจๅˆ†ใ‹ใ‚Šใพใ™ใ‹๏ผŸใฏใ„ใ€‚ๅค่‡ณใซใฏใ€ๅœฐ็ƒใฎๆ˜Žๆš—ๅขƒ็•Œ็ทš๏ผˆๆ˜ผใจๅคœใฎๅขƒ็•Œ็ทš๏ผ‰ใŒๆœ€ใ‚‚ๅ‚พใใพใ™ใ€‚ใ“ใฎใ‚ฟใ‚คใƒ ใƒฉใƒ—ใ‚นๅ‹•็”ปใฏใ€ๅœฐ็ƒใฎ1ๅนด้–“ใ‚’12็ง’ใง่กจ็คบใ™ใ‚‹ใ“ใจใงใ€ใ“ใฎใ“ใจใ‚’็คบใ—ใฆใ„ใพใ™ใ€‚้™ๆญข่ปŒ้“ไธŠใฎใƒกใƒ†ใ‚ชใ‚ตใƒƒใƒˆ9ๅท่ก›ๆ˜Ÿใฏใ€ๆฏŽๆ—ฅๅŒใ˜็พๅœฐๆ™‚้–“ใซๅœฐ็ƒใฎ่ตคๅค–็ทš็”ปๅƒใ‚’ๆ’ฎๅฝฑใ—ใพใ—ใŸใ€‚ๅ‹•็”ปใฏใ€ๆ˜Žๆš—ๅขƒ็•Œ็ทšใŒๅž‚็›ดใช2010ๅนด9ๆœˆใฎๆ˜ฅๅˆ†็‚น๏ผˆๆ˜ฅๅˆ†็‚น๏ผ‰ใ‹ใ‚‰ๅง‹ใพใ‚Šใพใ™ใ€‚ๅœฐ็ƒใŒๅคช้™ฝใฎๅ‘จใ‚Šใ‚’ๅ…ฌ่ปขใ™ใ‚‹ใซใคใ‚Œใฆใ€ๆ˜Žๆš—ๅขƒ็•Œ็ทšใฏๅŒ—ๅŠ็ƒใซๅฝ“ใŸใ‚‹ๆ—ฅ็…งๆ™‚้–“ใŒ็Ÿญใใชใ‚‹ใ‚ˆใ†ใซๅ‚พใใ€ๅŒ—ๅŠ็ƒใงใฏๅ†ฌใซใชใ‚Šใพใ™ใ€‚ๆœ€ใ‚‚ๅ‚พใ„ใŸใจใใ€ๅŒ—ๅŠ็ƒใงใฏๅ†ฌ่‡ณใ€ๅ—ๅŠ็ƒใงใฏๅค่‡ณใŒ่ตทใ“ใ‚Šใพใ—ใŸใ€‚1ๅนดใŒ้€ฒใ‚€ใซใคใ‚Œใฆใ€ๅ‹•็”ปใฎ้€”ไธญใง2011ๅนด3ๆœˆใฎๆ˜ฅๅˆ†็‚นใŒ่จชใ‚Œใ€ๆ˜Žๆš—ๅขƒ็•Œ็ทšใฏๅๅฏพๆ–นๅ‘ใซๅ‚พใใ€ๅ—ๅŠ็ƒใงใฏๅ†ฌใ€ๅŒ—ๅŠ็ƒใงใฏๅคใซใชใ‚Šใพใ™ใ€‚่จ˜้Œฒใ•ใ‚ŒใŸ1ๅนดใฏ9ๆœˆใฎ็ง‹ๅˆ†ใงๅ†ใณ็ต‚ใ‚ใ‚Šใ‚’่ฟŽใˆใ€ๅœฐ็ƒใŒๅคช้™ฝใฎๅ‘จใ‚Šใ‚’ไฝ•ๅๅ„„ๅ›žใ‚‚ๅ…ฌ่ปขใ—ใฆใใŸ๏ผˆใใ—ใฆใ“ใ‚Œใ‹ใ‚‰ใ‚‚ๅ…ฌ่ปขใ—ใฆใ„ใใงใ‚ใ‚ใ†๏ผ‰ใ†ใกใฎ1ๅ›žใŒๅฎŒไบ†ใ™ใ‚‹ใ€‚APODใƒฌใƒ“ใƒฅใƒผ๏ผšRJNใฎๅคœ็ฉบใƒใƒƒใƒˆใƒฏใƒผใ‚ฏ่ฌ›ๆผ”
ๅŽŸๆ–‡๏ผˆEnglish๏ผ‰
Can you tell that today is a solstice by the tilt of the Earth? Yes. At a solstice, the Earth's terminator -- the dividing line between night and day -- is tilted the most. The featured time-lapse video demonstrates this by displaying an entire year on planet Earth in twelve seconds. From geosynchronous orbit, the Meteosat 9 satellite recorded infrared images of the Earth every day at the same local time. The video started at the September 2010 equinox with the terminator line being vertical: an equinox. As the Earth revolved around the Sun, the terminator was seen to tilt in a way that provides less daily sunlight to the northern hemisphere, causing winter in the north. At the most tilt, winter solstice occurred in the north, and summer solstice in the south. As the year progressed, the March 2011 equinox arrived halfway through the video, followed by the terminator tilting the other way, causing winter in the southern hemisphere -- and summer in the north. The captured year ends again with the September equinox, concluding another of the billions of trips the Earth has taken -- and will take -- around the Sun. APOD Review: RJN's Night Sky Network Lecture

๏ผผ ใ“ใฎๆ„Ÿๅ‹•ใ‚’ๅฎ‡ๅฎ™ไปฒ้–“ใซใ‚ทใ‚งใ‚ข ๏ผ

ๅฎ‡ๅฎ™ใ‚’Xใงใ‚ทใ‚งใ‚ข
ยฉ NASA / APOD