@nhathangg: với cái tính hay quên của t thì uống hộp tổng hợp này là ok ròi :))) #mebimsua #vitabiotics #pregnacare #vitaminsausinh #mevabe

Mẹ em Ken (Nhật Hà)
Mẹ em Ken (Nhật Hà)
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Region: VN
Monday 13 July 2026 09:13:27 GMT
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xinhgaitv3
🐳Mẹ em Bún🐳 :
T cũng mua này đi sinhh
2026-07-14 01:25:53
1
emsamthuii
emsamthuii :
loại này uống sau sinh kèm theo combo avisure mama dc ko mom hay chỉ dùng mỗi loại này là đủ vitamin cho mẹ bỉm rồi ạ
2026-08-22 05:34:12
1
memessidaily
Mê Messi Daily 🍼✨ :
Fai mua thôi vứa hết lun kkkk
2026-07-13 15:08:55
1
myna_61w
Mẹ Myna đây nè! :
Tui cũng dùng loại này từ bầu tới khi đẻ
2026-07-13 10:13:16
1
mebehana26
Mommy Hana🥰 :
Tui cũng mua loại này nè bà
2026-07-13 09:43:09
1
nanacuamenhi.09
Mẹ Nhật Hạ :
Rất lười canh h uống canxi sắt
2026-07-13 11:43:28
1
bebon200
Chuyện Nhà Bon :
loại này quốc dân rồi mom ơii
2026-07-13 13:34:08
1
oanh.thu1408
Thư Mẹ Xoài 🥭 :
Có mùi k bà
2026-09-15 08:02:37
0
nhu.moc5
Em Tiger 🐯 :
Uống cái này có cần uống thêm sắt hay canxi kh ạ
2026-07-13 10:49:28
1
mmt.136
muối - mì - tôm :
3 đứa tui đều dùng hãng này
2026-07-13 19:07:00
1
bodino28
Uy Vũ đâyyy (Dino) :
T cũng phải dùng loại này để hút sữa, không đau lưng xiut
2026-07-13 14:43:44
1
nh.minmei
Nhà MinMei :
Uống giống vợ hả anh
2026-07-13 13:02:03
1
huyenhd220900
Mommy Bún (Huyền Béeee) :
Loại này t cũng dùng nè
2026-07-13 13:39:39
1
meemgaoday1
Nhà có Gạo :
T cũng xài vtm bầu hãng này
2026-07-13 10:10:39
1
begoldday_
Mẹ bé Gold đây ✨ :
Loại này tốt lắm
2026-07-13 11:39:44
1
To see more videos from user @nhathangg, please go to the Tikwm homepage.

Other Videos

fractal zoom pt. 21 #edit #fyp #viral #fractal #fypシ The Mandelbrot set is one of the most celebrated and visually striking objects in modern mathematics, serving as the quintessential example of what scientists and artists call a fractal. In simple terms, a fractal is a geometric shape that possesses infinite complexity and a property known as self-similarity, meaning that its overarching patterns tend to echo and repeat themselves across different scales. While familiar shapes like circles or triangles become smooth and featureless when magnified, a fractal defies everyday intuition by revealing brand-new layers of intricate detail at every magnification level. The Mandelbrot set itself arises from a surprisingly basic mathematical rule applied to points on a two-dimensional coordinate plane: each point is put through a repetitive feedback loop of simple arithmetic, and if the resulting numbers remain trapped within a certain limit forever, that point is declared part of the set. Because resolving these equations for millions of individual coordinates requires enormous computational power, modern computers are employed to generate visual renders of the shape. To create a render, a program analyzes each pixel on the screen and assigns colors based on the outcome of the calculation. Typically, the points that belong to the set are painted solid black, while the surrounding exterior points are shaded in vivid color gradients according to how rapidly their numbers spiral away toward infinity. The true magic of this construct reveals itself through zooming in, an interactive process where a viewer digitally magnifies any region along the boundary of the shape. As the magnification increases by thousands, millions, or even trillions of times, the border never blurs or flattens out into a plain line. Instead, zooming uncovers an inexhaustible wilderness of swirling tendrils, geometric spirals, and tiny, imperfect replicas of the original shape nestled deeply inside the larger structure. Through these computational renders, the Mandelbrot set translates a concise mathematical formula into an endless visual landscape, illustrating how limitless beauty and complexity can emerge from utter simplicity.
fractal zoom pt. 21 #edit #fyp #viral #fractal #fypシ The Mandelbrot set is one of the most celebrated and visually striking objects in modern mathematics, serving as the quintessential example of what scientists and artists call a fractal. In simple terms, a fractal is a geometric shape that possesses infinite complexity and a property known as self-similarity, meaning that its overarching patterns tend to echo and repeat themselves across different scales. While familiar shapes like circles or triangles become smooth and featureless when magnified, a fractal defies everyday intuition by revealing brand-new layers of intricate detail at every magnification level. The Mandelbrot set itself arises from a surprisingly basic mathematical rule applied to points on a two-dimensional coordinate plane: each point is put through a repetitive feedback loop of simple arithmetic, and if the resulting numbers remain trapped within a certain limit forever, that point is declared part of the set. Because resolving these equations for millions of individual coordinates requires enormous computational power, modern computers are employed to generate visual renders of the shape. To create a render, a program analyzes each pixel on the screen and assigns colors based on the outcome of the calculation. Typically, the points that belong to the set are painted solid black, while the surrounding exterior points are shaded in vivid color gradients according to how rapidly their numbers spiral away toward infinity. The true magic of this construct reveals itself through zooming in, an interactive process where a viewer digitally magnifies any region along the boundary of the shape. As the magnification increases by thousands, millions, or even trillions of times, the border never blurs or flattens out into a plain line. Instead, zooming uncovers an inexhaustible wilderness of swirling tendrils, geometric spirals, and tiny, imperfect replicas of the original shape nestled deeply inside the larger structure. Through these computational renders, the Mandelbrot set translates a concise mathematical formula into an endless visual landscape, illustrating how limitless beauty and complexity can emerge from utter simplicity.

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