@n.rtz4: اخخخ يالعجوز افضل شخصيه عطبوها الكُتاب#ninjago #تيم_رايجون💎 #نينجاغو #نينجاغوي_للنخاع⚜️

𝐑 𝐓 𝐙 | 𝐑𝐆
𝐑 𝐓 𝐙 | 𝐑𝐆
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Region: SA
Thursday 17 September 2026 13:04:36 GMT
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xv.jj12
𝐑𝐀𝐗𝐙 || 𝐑𝐆 :
بس بالكتاب حق نينجاغو باسترد؟!
2026-09-17 13:29:31
1
iokvn6
𝓢𝓐𝓣-𝓡𝓩𝓣 :
حي عينه +عدباع العكس
2026-09-17 18:15:06
1
morro.707
𝒏 𝒂 𝒇 || 𝒓𝒈 🥷☹️ . :
قدحت على الانكوندراي الي النينجا ماقدرو لهم 👆 😹😹
2026-09-17 15:03:43
1
mw_.o1
𝐏𝐖𝐉𝐗 :
يعجبني تنوع اللقطات
2026-09-17 13:09:20
0
.4rde
𝐀𝐑𝐋𝐎 :
شف شف الركضه الجده نمبر وننن😹
2026-09-17 18:23:35
1
.dz.h
𝐀𝐥𝐚𝐣𝐦𝐢 𓅓 | 𝐑𝐆 :
الاعظم كتابياً 👆🏼 هههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههههه
2026-09-17 13:10:15
0
3zoz.alshh
✪AZOZ✪ :
ههههههههههههههههههههه+مبروووووك الف متابع
2026-09-18 06:42:36
0
qweew448
CV😮‍💨 :
هههههه ياخي عليك افكار مبدعيييييي
2026-09-18 06:09:30
0
iixz.10
𝑹 𝑻 𝑽 :
ابي اقدام
2026-09-17 13:12:10
0
od12ay
𝑳𝑶𝑵 | 𝑹𝑮 :
عطبوها💔
2026-09-17 13:07:15
1
a.hg85
𝐊𝐀𝐈𝐑𝐎𝐒 | 𝐑𝐆 :
مبدعيي
2026-09-17 13:07:08
0
ah_8i1
NOKT :
هههه ماكو افكارررر 😂😂😂😂
2026-09-18 01:16:27
0
a.ol11
𝐀𝐛𝐮 𝐅𝐚𝐡𝐢𝐝 | 𝐑𝐆 𓅓 :
مبدععععع+اول🔥
2026-09-17 13:06:32
1
g.xqh7r
𝑲𝑳 :
شنو هاي
2026-09-17 14:01:25
0
user9127438623252
ايرون سميث / 🇸🇦 :
جيت كل لقطاتها
2026-09-17 13:36:59
0
wsiam282207
وسـٰـــA :
الجده >سيد الاسبينجيتسو ديرث لويد المعلم وو
2026-09-17 13:23:22
0
o.t.x00
اིلཻشيخ مຼوٰ໑ٰرٰو|BZ :
من وين القطات + مبدععععععع
2026-09-17 13:11:10
0
z_3mk1
メ𝓥𝓨𝓝𝓡メ┃メ𝓡𝓖💎メ :
تاريخيييي يا التاريخ ب كبره
2026-09-17 13:23:00
0
theforbiddenfive4
shahzade Mustafa :
بموووتتت 🤣🤣🤣🤣
2026-09-18 12:45:07
0
a.6ls
𝐴 | 𝑅𝐺 :
مصمميي 👆🏼😼
2026-09-17 13:07:30
0
m5647864
بـــو ســعــيـــد🇸🇦📿 /QG :
اول يا زياد اجحدها ها اجحدها والله إني مسكين عيييييييييييييي[يبكي][يبكي][يبكي]
2026-09-17 13:08:27
1
r8_po9
سيف✯ :
ابداع
2026-09-17 18:41:25
1
k7.omar1
✦𝑨𝒍𝒉𝟒𝒍𝒊 | 𝑹𝑮 ✦ :
اعظم شخصيه شاء من شاء وابى من ابى👆☝️
2026-09-17 13:40:00
0
.9nsc0
صقر المنتصر~🇷🇺 :
بنت اول معلم سبينجتسو المنسيه💔
2026-09-17 13:08:11
0
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One of the deepest questions in physics is why anything survived the Big Bang. Matter and antimatter should have been created in almost equal amounts. When they met, they should have destroyed each other, leaving behind a Universe filled mostly with radiation. But that did not happen. Matter somehow won. Now, CERN’s LHCb experiment has observed a new kind of difference between matter and antimatter. The discovery involves baryons, the family of particles that includes protons and neutrons. Using data from the Large Hadron Collider, physicists studied more than 80,000 decays of a short-lived particle called the beauty-lambda baryon and its antimatter counterpart. They found that the two did not decay in exactly the same way. This is called CP violation, a tiny crack in the mirror symmetry between matter and antimatter. CP violation has been seen before in mesons, but this is the first time it has been confirmed in baryon decays. That matters because baryons make up the visible matter in the Universe. This result does not solve the mystery yet. The CP violation we know from the Standard Model is still far too small to explain why matter dominates the cosmos. But CERN has opened a new window. The answer to why the Universe exists may be hiding in the tiny ways matter and antimatter fail to behave as perfect opposites. 📄 RESEARCH PAPER 📌 LHCb Collaboration, “Observation of charge-parity symmetry breaking in baryon decays”, Nature (2025) #creatorsearchinsights #humans #universe #bigbang #CERN
One of the deepest questions in physics is why anything survived the Big Bang. Matter and antimatter should have been created in almost equal amounts. When they met, they should have destroyed each other, leaving behind a Universe filled mostly with radiation. But that did not happen. Matter somehow won. Now, CERN’s LHCb experiment has observed a new kind of difference between matter and antimatter. The discovery involves baryons, the family of particles that includes protons and neutrons. Using data from the Large Hadron Collider, physicists studied more than 80,000 decays of a short-lived particle called the beauty-lambda baryon and its antimatter counterpart. They found that the two did not decay in exactly the same way. This is called CP violation, a tiny crack in the mirror symmetry between matter and antimatter. CP violation has been seen before in mesons, but this is the first time it has been confirmed in baryon decays. That matters because baryons make up the visible matter in the Universe. This result does not solve the mystery yet. The CP violation we know from the Standard Model is still far too small to explain why matter dominates the cosmos. But CERN has opened a new window. The answer to why the Universe exists may be hiding in the tiny ways matter and antimatter fail to behave as perfect opposites. 📄 RESEARCH PAPER 📌 LHCb Collaboration, “Observation of charge-parity symmetry breaking in baryon decays”, Nature (2025) #creatorsearchinsights #humans #universe #bigbang #CERN

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