@hoaquynh0000: Người nghèo có đồng cảm với điều này? Quan điểm của bạn là gì? #xuhuongtiktok #LearnOnTikTok #chualanhtamhon #phattrienbanthan #tuduy

Hoa Quỳnh Nở 00.00
Hoa Quỳnh Nở 00.00
Open In TikTok:
Region: VN
Saturday 05 September 2026 04:51:15 GMT
14592
547
43
305

Music

Download

Comments

nghthinun17
Ng H Thin Ưng :
Cảm ơn c đã chia sẻ kiến thức hay em sẽ tiếp thu!
2026-09-05 08:37:39
3
longpham183
Long :
thấm quá
2026-09-05 06:19:39
34
dungmunnn
DungMun☘️ :
Thế mà lại hay c ơi 😆
2026-09-05 06:34:19
16
kelvin.nguyen.tn
Kelvin Nguyen :
Bà nói nhỏ thôi, âm lượng to quá tôi ù hết tai rồi 😁
2026-09-05 09:48:40
2
an_mi_to_fu
Dao Si Thui :
muahxxx
2026-09-05 04:59:44
0
kosii.09.08
Nguyễn Mỹ Duyên 🪄 :
Bị tắt tiếng ùi c iu ơi
2026-09-05 04:57:44
1
lhnq98
Lâm Hoàng Nhật Quỳnh :
Chị nói chí phải
2026-09-05 08:37:04
1
2531240196_viet
Lucky :
cảm ơn c đã tư vấn, e hiểu r ạ❤️❤️❤️
2026-09-05 07:56:40
2
nln17
🫪🫪 :
tôi cần luật sư
2026-09-05 07:03:41
2
serenatran397
serenatran397 :
Thật tinh tế
2026-09-05 06:58:19
1
threa.dt48
Threa.tb54 :
Làm t tưởng Air Pod Pro của t bị hư hong à
2026-09-05 10:05:59
0
970619k
Anh Trung :
ngồi nghe và ngẫm thấm từng câu từng chữ mà chị chia sẽ ..
2026-09-05 09:54:02
0
qui_1103
Quí :
Em đang giàu có quá rồi, thấy hình chứ ko nghee tiếngg chị 😁😳
2026-09-05 05:00:38
1
giatsaymytho
Giặt Sấy Happy Mỹ Tho :
Hên quá tui người nghèo , nghe rất rỏ
2026-09-05 09:52:23
0
hoaiiiiiii2001
Hoàiii :
Tôi đồng tính
2026-09-05 09:49:08
0
phamdungsky
Phạm Dũng :
Có thể khóc đc luôn
2026-09-05 06:31:33
1
lequang3686
Quang Hair :
Thấm từng câu
2026-09-05 05:51:18
1
meow.defish
Cá Mèo :
:))))) hay quá c ơi
2026-09-05 09:51:42
0
thuonghr.tuyendung
Thương tuyển dụng :
Hay quá chị ơi, mà âm lượng hơi to
2026-09-05 10:06:36
0
laaido21
nghiãaa :
rồi luôn, t vừa nghèo mà vừa điếc nữa
2026-09-05 09:48:54
0
vyvytiktok
Vyvy :
Chị nói thiệt k e nghe k rõ:)
2026-09-05 09:40:54
0
emyne4078
ĐĂNG XÀM XÀM 🐠🐠 :
Thấm,ý nghĩa
2026-09-05 09:39:03
0
ntt_907799
❤️‍🩹 :
em nghe thấy rồi, cảm ơn chị😓
2026-09-05 04:58:34
0
To see more videos from user @hoaquynh0000, please go to the Tikwm homepage.

Other Videos

Reposting! Graham’s number is an unimaginably massive integer that once held the world record for the largest number ever used in a serious mathematical proof. It was created by mathematician Ronald Graham in 1977 to solve a complex problem in Ramsey theory—a branch of math that looks for predictable patterns within large, chaotic systems.  ### Why Standard Notation Fails  This number is so huge that we cannot use scientific notation (10^n). Even if every single atom in the observable universe represented a digit, we would run out of universe long before writing down even a fraction of it. Instead, mathematicians use **Knuth's up-arrow notation (\uparrow)** to show extreme exponentiation:   * **3 \uparrow 3** = 3^3 = 27   * **3 \uparrow\uparrow 3** = 3^{3^3} = 3^{27} = 7,625,597,484,987   * **3 \uparrow\uparrow\uparrow 3** = A tower of exponents of 3 that is over 7.6 trillion layers tall.  ### How It Is Built (The 64 Layers)  Graham's number is built in 64 steps, where the output of one step determines the number of arrows used in the next:   1. **Layer 1 (g_1):** 3 \uparrow\uparrow\uparrow\uparrow 3 (Already too big to conceptualize).   2. **Layer 2 (g_2):** 3 \uparrow \dots \uparrow 3 (The number of arrows here is equal to the massive value of g_1).   3. **The Process:** This repeats all the way up to **Layer 64 (g_{64})**, which is Graham's Number.  ### Fun Fact  Even though the number of digits is too large to ever be known, mathematicians have used modular arithmetic to find its ending. The final five digits of Graham's number are **95387**. #truecrimecommunity #larp #viral #rampage #suzano
Reposting! Graham’s number is an unimaginably massive integer that once held the world record for the largest number ever used in a serious mathematical proof. It was created by mathematician Ronald Graham in 1977 to solve a complex problem in Ramsey theory—a branch of math that looks for predictable patterns within large, chaotic systems. ### Why Standard Notation Fails This number is so huge that we cannot use scientific notation (10^n). Even if every single atom in the observable universe represented a digit, we would run out of universe long before writing down even a fraction of it. Instead, mathematicians use **Knuth's up-arrow notation (\uparrow)** to show extreme exponentiation: * **3 \uparrow 3** = 3^3 = 27 * **3 \uparrow\uparrow 3** = 3^{3^3} = 3^{27} = 7,625,597,484,987 * **3 \uparrow\uparrow\uparrow 3** = A tower of exponents of 3 that is over 7.6 trillion layers tall. ### How It Is Built (The 64 Layers) Graham's number is built in 64 steps, where the output of one step determines the number of arrows used in the next: 1. **Layer 1 (g_1):** 3 \uparrow\uparrow\uparrow\uparrow 3 (Already too big to conceptualize). 2. **Layer 2 (g_2):** 3 \uparrow \dots \uparrow 3 (The number of arrows here is equal to the massive value of g_1). 3. **The Process:** This repeats all the way up to **Layer 64 (g_{64})**, which is Graham's Number. ### Fun Fact Even though the number of digits is too large to ever be known, mathematicians have used modular arithmetic to find its ending. The final five digits of Graham's number are **95387**. #truecrimecommunity #larp #viral #rampage #suzano

About