@nissie8271: 差0.1秒就吃到辣椒了🌶️😂還好媽媽手比她嘴巴快!

陳妮絲
陳妮絲
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Region: TW
Monday 03 August 2026 12:00:00 GMT
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angelcandy0405
晴晴&歆歆 :
妮妮不可以吃辣椒 會辣ㄛ
2026-08-03 12:09:04
87
bapoi17
Bắpoi :
太小了,不要給喝茶
2026-08-03 16:01:55
14
cherry78226
♥️🇹🇼summer🇹🇼🇹🇼 :
差一點咬了,就辣辣了,
2026-08-04 14:19:00
6
hebe00733
波辣貓 :
阿祖是什麼 媽媽的奶奶?
2026-08-05 04:36:35
0
xx64374
小矮子🤥.kk :
如果吃到可能會哭1個半小時😂
2026-08-03 12:33:33
10
gm12592251
GM12592251 :
多吃幾次就會知道不能吃了,反而現在一直阻止小孩吃,小孩就會越想吃,根本反效果
2026-08-04 03:23:31
4
lisa1399600
ㄗ.🐶👀 :
前面
2026-08-03 12:24:31
0
user2538729412312
心熊 :
那個女生是誰
2026-08-04 11:25:34
0
yxc125809j8
𝒁𝒕. 萌諾米^ :
我妹妹上次吃我弹珠我就想说欸她的脸颊怎么鼓起来我就想她可能在吃弹珠我从她嘴里拿出来好险欸差点给我吞下去
2026-08-03 23:20:09
2
user6828061362652
奶酪小泡芙🧀 :
太可愛了吧
2026-08-04 02:38:36
1
dywjnc3s6vc2
物理治療師 :
妹妹:我要當辣妹
2026-08-05 04:04:10
1
xyzboss888
柱仔 :
好可愛🤣🥰
2026-08-03 12:08:28
1
user5715238007435
ℳᥫᩣ必殺技. :
我也超愛喝16茶
2026-08-03 13:01:31
2
tiktok.comxnay0
酸冰🐹💞 :
辣椒小妮不能吃啦😂
2026-08-03 12:27:33
0
520shuhua26
*:.妤身只愛舒.:* :
1
2026-08-03 12:00:42
1
joyce_.0428
月光風雅 :
2026-08-03 12:44:32
1
sharon20140412
琦亘(想見🐧🐧) :
第二😱
2026-08-03 12:01:38
0
joyce_.0428
月光風雅 :
30
2026-08-03 12:44:29
1
._760709
雲林༄༊ོ࿆ྂ阿彌陀佛ོྂཾ࿆࿐ :
可愛
2026-08-05 03:23:09
0
momo520115
.ೀ妞妞甜八寶ᰔᩚᯓ :
我家都直接吃蒜頭…… 還不會辣 我傻眼🙄
2026-08-05 04:22:00
0
ff456334a2n
星河. :
小朋友很可爱 今年几岁啦 平时乖不乖呢?
2026-08-05 07:51:28
0
ooipingguan
ooipingguan :
2026-08-05 15:16:31
0
dyhl0niaogz7
dyhl0niaogz7 :
給他吃辣
2026-08-05 06:31:46
0
user3111108385068
笑笑好心情 :
好萌喔!金勾錐內
2026-08-05 11:35:56
0
elsa09017
鱈魚香思 :
第4
2026-08-03 12:02:57
0
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The Meissner effect is a physical phenomenon in which a superconductor, when cooled below a certain critical temperature, expels the magnetic field from its volume. This creates forces between the superconductor and a magnet that can lead to levitation. This principle underlies well-known quantum levitation experiments. In such experiments, a special superconductor is cooled, for example, with liquid nitrogen, and then placed above a magnetic track. After cooling, the superconductor begins to interact with the magnetic field and can hover above the track. A particularly interesting phenomenon is magnetic flux pinning: the magnetic field appears to be
The Meissner effect is a physical phenomenon in which a superconductor, when cooled below a certain critical temperature, expels the magnetic field from its volume. This creates forces between the superconductor and a magnet that can lead to levitation. This principle underlies well-known quantum levitation experiments. In such experiments, a special superconductor is cooled, for example, with liquid nitrogen, and then placed above a magnetic track. After cooling, the superconductor begins to interact with the magnetic field and can hover above the track. A particularly interesting phenomenon is magnetic flux pinning: the magnetic field appears to be "pinned" within the superconductor at certain points, allowing it to maintain a stable position relative to the magnetic track and move along it. Therefore, a superconductor can levitate not only above a magnet but also remain fixed on a specific trajectory even when the system's position changes. This phenomenon is often referred to as quantum levitation or quantum locking. In fact, the laws of physics are not violated here: the unusual behavior is explained by the properties of superconductors, the Meissner effect, and the interaction of the magnetic field with the quantum states of the material. Such experiments are a clear demonstration of superconductivity and help to understand why superconducting materials can be used in magnetic levitation technologies, such as in certain types of Maglev trains. #physics #experiment #sciencetok #education

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