@minhkhang_aus: Nhanh lên để còn lấy 2lit về uống bia nào, đi làm culi nhưng mà vui lắm 💪💪💸💸 #úc #australia #462 #workingholiday #farm #pickers #bluberry #fruit #berry #viral_video #trending

Khang_garoo 🦘🇻🇳🇦🇺
Khang_garoo 🦘🇻🇳🇦🇺
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Region: AU
Friday 01 December 2023 10:16:47 GMT
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yenny.haa
Yenny Ha 🇦🇺🇻🇳 :
Không nên nói như vậy, lao động là vinh quang. Nghề nào cũng có tốt -xấu, vất vả riêng. Nên tự hào vì mình đã chăm chỉ thì hơn ấy
2023-12-01 13:30:30
3
bng999.999
Bao Nguyen và 75,8k người khác :
Làm farm lương ổn ko anh ?
2023-12-01 10:35:45
2
quynh_xikho
Nguyen Nhu Quynh :
Mùa này blackberry trái to thích quá
2023-12-01 13:51:55
2
mai.xun.dn
Mai Xuân Dần :
ko biêt đi kiêu nao ai biêt cty nao y tin bao minh vơi
2023-12-02 13:53:59
2
abnhuy456_princess
£❍ҩℰɣ❍ʊ🐉✿꧁༺༒༻꧂︵²ᵏ :
còn tuyển ko ạ
2025-07-28 03:08:21
1
luongdat995
Andy :
có tuyển người ko a oi
2024-01-31 20:18:09
1
jpgon4
JP Gon :
Ai biết đi ntn hướng dẫn em vs
2024-01-26 07:51:59
1
nguyn.ngn3386
阿银☘️☘️ :
Cho xin ít vía để qua cho may mắn đi bạn
2024-01-14 05:42:17
1
n.t8858
N.Thanh :
A rep ib e hỏi với ạ
2023-12-08 05:05:03
1
user9978802636291
HỒ TƯ :
có cho nợ phí ko mình xin một vé
2023-12-05 00:30:59
1
zzltzz
Anh nho em nhiuuuuuuuuu lam :
nghe đồn chua lắm😂
2023-12-03 05:00:00
1
_dung9897
Dung :
Em đc nhiều bằng họ ko đó
2023-12-02 15:09:00
1
selinamaria128
Selina🖤🤍🇻🇳🇦🇺 :
Chaizzza idol tớ
2023-12-02 11:44:38
1
harry52hz
Harry52hz :
Mình xin info contractor với ạ?
2023-12-01 11:08:11
1
kp_windy
KP_Windy :
Nay 3 lít nha 😂
2023-12-01 13:47:25
1
jackli1135
jackli1135 :
Thích
2023-12-01 12:20:21
1
annale171
💫ông chú 40💫 :
Muốn qua làm cần bao nhiu tiền bạn
2023-12-02 13:37:42
1
aussie_peoplee
Mas_Aussie 🦘🇭🇲 :
kaka farm
2023-12-23 04:56:29
0
nar_viet_uc
Bé__Nar 🇻🇳__🇦🇺 :
Cái mặt t lò ra rồi
2023-12-01 10:24:40
0
romancody5
Roman Cody :
Freelancer job is available if you are interested dm me or send me a friend request for more information
2024-12-20 09:15:57
0
users6zlh7x8j2
1 mình em :
🔥
2023-12-01 10:42:12
0
boquaquakhu7
Nguyễn Thuỳ :
Thấy làm vui quá
2024-01-18 13:55:54
0
15tx1
CR7 :
Farm nào để báo bộ di trú zo hốt về
2023-12-28 10:42:23
0
phuocluu7767
phuocluu7767 :
Blueberry ở coffhourber
2023-12-23 15:24:34
0
To see more videos from user @minhkhang_aus, please go to the Tikwm homepage.

Other Videos

Beyblades are spinning battle tops that look simple at first glance but are actually a mix of physics, engineering, and pure childhood chaos. At their core, a Beyblade is designed to spin as long as possible while either knocking the opponent out of the arena, outlasting them, or destabilizing them until they stop spinning. That sounds straightforward, but the way a Beyblade achieves this is where things get interesting. A standard Beyblade is made up of multiple parts, and each part has a specific role. The main components are the energy layer (or face/attack ring), the forge disc (weight disc), and the performance tip (driver). The energy layer is the top part and is usually the most visually aggressive-looking. It determines how the Beyblade interacts with others—whether it focuses on attacking, defending, or maintaining balance. Sharp protrusions and jagged shapes are meant to hit opponents hard and transfer momentum, while smoother, rounder shapes are better at deflecting hits and staying stable. The forge disc sits in the middle and adds weight. Weight is crucial in Beyblade battles because of momentum. A heavier Beyblade generally has more inertia, meaning it resists being knocked around by lighter opponents. However, weight alone doesn’t guarantee victory. If the weight is poorly distributed, the Beyblade can wobble, lose balance, or waste energy fighting against itself. This is why some discs are designed to distribute mass evenly, while others intentionally place more weight on the outer edges to increase rotational inertia and improve spin time. The performance tip is arguably the most important part of how a Beyblade behaves. This is the part that makes contact with the stadium floor, and it determines movement patterns and stamina loss. Flat tips create aggressive movement, causing the Beyblade to rush around the stadium and slam into opponents. Sharp tips reduce friction, allowing the Beyblade to spin longer but move less. Ball-shaped tips strike a balance, offering both mobility and endurance. The friction between the tip and the stadium directly affects how fast energy is lost, making this tiny piece of plastic or metal a huge factor in battle outcomes. The launcher is just as important as the Beyblade itself. When you pull the ripcord or activate a string launcher, you’re converting linear motion into rotational energy. The faster and smoother the launch, the more spin energy the Beyblade starts with. Angle also matters. Launching perfectly flat gives stability, while launching at a slight tilt can create aggressive movement patterns or help with spin-stealing techniques, where a Beyblade absorbs rotational energy from an opponent spinning in the opposite direction. Speaking of spin direction, Beyblades can spin clockwise, counterclockwise, or even switch modes depending on their design. Opposite-spin battles are especially intense because of friction between the two tops. Instead of just colliding, they grind against each other, allowing certain Beyblades to steal spin and extend their own rotation time. This is a direct application of real-world physics, where friction and angular momentum transfer play a massive role. There are also different battle types that shape how Beyblades are built. Attack types focus on speed and power, aiming to knock opponents out of the stadium as fast as possible. Defense types are built to absorb hits, stay centered, and avoid being launched out. Stamina types aim to spin longer than anything else, winning by simply outlasting the opponent. Balance types try to do everything at once, adapting to different situations depending on how the battle unfolds. Competitive players often customize their Beyblades by mixing parts from different models to create the perfect combination for their strategy. The stadium itself influences everything. Stadiums have slopes, ridges, pockets, and rails that affect movement and collision angles. A Beyblade that dominates in one stadium might struggle in
Beyblades are spinning battle tops that look simple at first glance but are actually a mix of physics, engineering, and pure childhood chaos. At their core, a Beyblade is designed to spin as long as possible while either knocking the opponent out of the arena, outlasting them, or destabilizing them until they stop spinning. That sounds straightforward, but the way a Beyblade achieves this is where things get interesting. A standard Beyblade is made up of multiple parts, and each part has a specific role. The main components are the energy layer (or face/attack ring), the forge disc (weight disc), and the performance tip (driver). The energy layer is the top part and is usually the most visually aggressive-looking. It determines how the Beyblade interacts with others—whether it focuses on attacking, defending, or maintaining balance. Sharp protrusions and jagged shapes are meant to hit opponents hard and transfer momentum, while smoother, rounder shapes are better at deflecting hits and staying stable. The forge disc sits in the middle and adds weight. Weight is crucial in Beyblade battles because of momentum. A heavier Beyblade generally has more inertia, meaning it resists being knocked around by lighter opponents. However, weight alone doesn’t guarantee victory. If the weight is poorly distributed, the Beyblade can wobble, lose balance, or waste energy fighting against itself. This is why some discs are designed to distribute mass evenly, while others intentionally place more weight on the outer edges to increase rotational inertia and improve spin time. The performance tip is arguably the most important part of how a Beyblade behaves. This is the part that makes contact with the stadium floor, and it determines movement patterns and stamina loss. Flat tips create aggressive movement, causing the Beyblade to rush around the stadium and slam into opponents. Sharp tips reduce friction, allowing the Beyblade to spin longer but move less. Ball-shaped tips strike a balance, offering both mobility and endurance. The friction between the tip and the stadium directly affects how fast energy is lost, making this tiny piece of plastic or metal a huge factor in battle outcomes. The launcher is just as important as the Beyblade itself. When you pull the ripcord or activate a string launcher, you’re converting linear motion into rotational energy. The faster and smoother the launch, the more spin energy the Beyblade starts with. Angle also matters. Launching perfectly flat gives stability, while launching at a slight tilt can create aggressive movement patterns or help with spin-stealing techniques, where a Beyblade absorbs rotational energy from an opponent spinning in the opposite direction. Speaking of spin direction, Beyblades can spin clockwise, counterclockwise, or even switch modes depending on their design. Opposite-spin battles are especially intense because of friction between the two tops. Instead of just colliding, they grind against each other, allowing certain Beyblades to steal spin and extend their own rotation time. This is a direct application of real-world physics, where friction and angular momentum transfer play a massive role. There are also different battle types that shape how Beyblades are built. Attack types focus on speed and power, aiming to knock opponents out of the stadium as fast as possible. Defense types are built to absorb hits, stay centered, and avoid being launched out. Stamina types aim to spin longer than anything else, winning by simply outlasting the opponent. Balance types try to do everything at once, adapting to different situations depending on how the battle unfolds. Competitive players often customize their Beyblades by mixing parts from different models to create the perfect combination for their strategy. The stadium itself influences everything. Stadiums have slopes, ridges, pockets, and rails that affect movement and collision angles. A Beyblade that dominates in one stadium might struggle in

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