@mv_kpop · Post #5205 · 10/03/2019, 12:47 AM
T-ARA & SUPERNOVA - TTL Listen 2 • 540x360 #Tara#Supernova@MV_Kpop
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TGINSIGHT SIMILAR POSTS
Source channel @olddriverGDstudy · Post #53 · Mar 24
#知识#接吻 第一式:舔吻 用舌舔对方的上下唇,让对方感受舌部味蕾舔掠的感觉,注意要保持唾液的充分,如果唾液太少,干燥的舔吻会有不舒服的感觉。 第二式:咬吻 用牙齿轻咬对方的唇,但别咬的太用力,以免受伤喔! 第三式:吸吻 轻轻的吸吮对方的唇部;可用自己的唾液轻抹在对方的唇部,然后吸吮干净。 第四式:推动吻 把舌伸进对方口中,让舌与舌互相推放,男生力气应放小,以免女生疼痛;这种互推吻可形成快感。 第五式:吸舌吻 以你的唇含住他的舌,轻轻的吸吮对方的舌头,动作宜缓慢而轻柔,勿过于仓促。 第六式:齿龈吻 用舌探索对方的牙及牙龈的内外两侧,以刺激口内粘膜为目的。动作要仔细,慢,轻柔的介于碰触与不碰触之间,以产生一种特殊的亲密感。 第七式:滑动吻 用舌尖稍用力的舔对方的舌部内侧,由里向外滑舔。 第八式:舔舌吻 双方以舌对舌互舔,以用舌尖为主,不用唇。 第九式:嚼食之吻 咬住对方的舌头,似欲吞食般的吻;请小心别用力过火,只是假装而已。想像对方的舌头是好吃的东西,又咬又舔又吸的想吞进肚子里去。 第十式:律动之吻 以舌在对方的口中,有节奏律动般的的绕着对方的舌尖,画圈似的舔吻。 第十一式:深喉咙吻 将舌深入对方的喉咙重舔。重压,是霸道占有般的吻;这是一种颇不舒服的吻法,但还是有乐在其中的人。 第十二式:热情之吻 将自己的舌把对方的舌包卷于口中,上下左右回旋翻动,用放肆的旋动来增加快感,虽嫌粗鲁但颇具挑战性,是接吻高手必备的技巧之一。 第十三式:甘泉之吻 利用两唇相接时……以舌将自己的唾液渡入对方口中,并吸食对方的唾液。适用于两情相悦且身体健康的爱侣,会觉入口之唾液为琼浆玉液般,世间独有。
Search: #supernova
@mv_kpop · Post #5205 · 10/03/2019, 12:47 AM
T-ARA & SUPERNOVA - TTL Listen 2 • 540x360 #Tara#Supernova@MV_Kpop
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@mv_kpop · Post #5204 · 10/03/2019, 12:47 AM
T-ARA & SUPERNOVA - TTL (TIME TO LOVE) • 480x360 #Tara#Supernova@MV_Kpop
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@spaceuniverses · Post #147 · 02/26/2022, 04:00 PM
💥The shock wave from the #supernova explosion that created remnant G306 is racing through #space at ~2.4 million km/h. Chandra data reveals iron, neon, silicon, and sulfur all at temperatures exceeding 28 million C. A reminder not only of the energies involved, but of the role supernovas play in seeding galaxies with heavy elements produced in the hearts of massive stars.🌟
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@interesting_planet_facts · Post #911 · 10/15/2025, 12:11 PM
🌎 In 2020, astronomers detected a mysterious object named “The Cow,” a fast and extremely bright stellar explosion. Unlike normal supernovas, “The Cow” rapidly peaked in brightness, confounding scientists. Follow-up observations revealed it was likely the birth of a black hole or neutron star—providing a rare view of a star’s collapse in real time. ✨ #astronomy⚡#supernova⚡#blackhole 👉subscribe Interesting Planet 👉more Channels
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@interesting_planet_facts · Post #512 · 08/06/2025, 08:22 PM
🌎 Gold, a precious metal treasured since ancient times, forms in supernova explosions when massive stars die. This cosmic alchemy scatters gold atoms through space, seeding our planet with the gold we mine and wear today. ✨ #gold⚡#supernova⚡#astronomy 👉subscribe Interesting Planet
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@cosmomyst · Post #700 · 03/03/2026, 10:21 PM
🪐 In 2016, astronomers watched the star KSN 2011d in the galaxy UGC 11066 explode as a supernova, capturing the "shock breakout"—a brief burst of light that occurs when the explosion’s blast wave first reaches the star’s surface. This rare observation let scientists directly witness the very instant a star’s core collapse triggers a cosmic explosion, providing clues to the exact sequence of events when massive stars end their lives and enrich their galaxies with newly created elements. ✨ #supernova⚡#stars⚡#galaxies⚡#nasa⚡#galaxy⚡#astronomy⚡#universe⚡#cosmos⚡#space 👉subscribe Universe Mysteries 👉more Channels
@cosmomyst · Post #66 · 08/02/2025, 01:12 PM
🪐 In the distant galaxy MACS J1149+2223, astronomers have witnessed an unusual event called a "refreshed" supernova, where a massive star's explosion appeared to brighten twice, likely caused by material from the original blast catching up to the shockwave years later. This rare phenomenon allows scientists to observe the same supernova event evolving in real time, a cosmic encore not often seen in the universe. ✨ #supernova⚡#galaxy⚡#phenomena⚡#nasa⚡#stars⚡#astronomy⚡#universe⚡#cosmos⚡#space 👉subscribe Universe Mysteries
@cosmomyst · Post #681 · 02/15/2026, 12:21 PM
🪐 In the spiral galaxy NGC 2525, located around 70 million light-years from Earth, astronomers watched supernova SN 2018gv gradually fade over 2018 and 2019 in real time. This stellar explosion outshone its entire galaxy for weeks—when a white dwarf star in a close binary system grew too heavy and detonated, releasing enough energy to briefly rival the brightness of billions of suns before slowly fading back into darkness. ✨ #supernova⚡#NGC2525⚡#astronomy⚡#nasa⚡#galaxy⚡#stars⚡#universe⚡#cosmos⚡#space 👉subscribe Universe Mysteries 👉more Channels
@cosmomyst · Post #586 · 12/28/2025, 12:21 PM
🪐 The supernova SN 1987A in the Large Magellanic Cloud, about 168,000 light-years from Earth, stunned astronomers by producing a burst of neutrinos—ghostly particles that rarely interact with normal matter—detected in underground observatories worldwide. This was the first time scientists caught direct evidence that a supernova creates these elusive particles during a star's collapse, confirming key theories about how massive stars end their lives and spread elements throughout space. ✨ #supernova⚡#neutrinos⚡#stars⚡#nasa⚡#galaxy⚡#astronomy⚡#universe⚡#cosmos⚡#space 👉subscribe Universe Mysteries 👉more Channels
@cosmomyst · Post #199 · 08/27/2025, 08:11 PM
🪐 Deep inside the galaxy 3C 273, astronomers have identified a quasar—a super-bright region powered by a supermassive black hole eating up material, causing it to shine with light brighter than entire galaxies. Meanwhile, the Crab Pulsar in the Crab Nebula is a rapidly spinning neutron star left over from a massive star’s explosion, sending out beams of radio waves and light as it spins—a cosmic lighthouse flashing 30 times a second. ✨ #quasars⚡#pulsars⚡#supernova⚡#nasa⚡#galaxy⚡#stars⚡#astronomy⚡#universe⚡#cosmos⚡#space 👉subscribe Universe Mysteries
@cosmomyst · Post #225 · 09/05/2025, 03:11 AM
🪐 In the vacuum of space, the speed of light is an incredible 299,792 kilometers per second—so fast that a beam from the Sun takes just over eight minutes to reach Earth, even though the distance is about 150 million kilometers. When astronomers observe events like a supernova in the galaxy NGC 2525, they're actually seeing what happened years, decades, or even millions of years ago, because the light takes that long to cross vast cosmic distances. ✨ #speedoflight⚡#space⚡#distances⚡#supernova⚡#nasa⚡#galaxy⚡#stars⚡#astronomy⚡#universe⚡#cosmos 👉subscribe Universe Mysteries
@cosmomyst · Post #254 · 09/11/2025, 12:11 AM
🪐 The magnetar CXOU J171405.7−381031, found in the supernova remnant CTB 37B, is famous for its exceptionally strong magnetic field—over a thousand trillion times more powerful than Earth's. Such intense magnetism can twist the star’s crust, causing violent starquakes and bursts of high-energy radiation that briefly outshine everything else in its region of space. ✨ #magnetar⚡#supernova⚡#neutronstar⚡#nasa⚡#galaxy⚡#stars⚡#astronomy⚡#universe⚡#cosmos⚡#space 👉subscribe Universe Mysteries