@rmtsinn: hidup bukan perlombaan untuk menjawabw semua pertanyaan orang. semuanya punya waktunya masing-masing. mungkin hidup bukan tentang seberapa cepat kita sampai, tapi tentang tetap berjalan tanpa kehilangan diri sendiri. not everyone needs to understand your timeline. #fyp #life #SelfImprovement #self #perunggu

rmtsinn
rmtsinn
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Region: ID
Wednesday 09 September 2026 22:27:51 GMT
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urluckydayasawlays
brams :
pertanyaan sederhana tapi nusuknya luar biasa wkwk
2026-09-10 00:46:27
351
dakdikdukser
iki :
sensitive topic
2026-09-11 00:07:16
78
inicaturr
tuyy :
udah cape jawabnya kadang, bikin energi terkuras
2026-09-10 04:53:11
67
iniijugaajejekok
جيجي :
cape
2026-09-10 02:05:59
35
hello712_
712 :
benci banget huhuhu
2026-09-10 23:58:12
7
putttttt20.09
Pouttt :
iya habis ini kerja.
2026-09-10 07:43:56
0
widiaoke_
wiD :
hemm💔
2026-09-10 07:52:45
0
rajwadoa
rkaawa :
"kerja apa? kuliah doang? kasian dong orang tuanya, adekmu kan 3, masih harus sekolah, ditambahin nyekolahin kamu lagi." mereka ga tau aku mikir tiap hari harus ngapain biar ga jadi anak beban. biar menghasilkan. aku udah coba kok. aku ga diem aja.
2026-09-10 08:22:30
5
manusyawaras0_0
￴ :
aku kerja cuman jagain warung terus ada guru waktu aku sma ditanyain "engga kuliah??" "coba kuliah disana murah,deket" nyesek banget hatiku bukannya disemangatin malah bikin ovt wkwkwk sampe sekarang aku engga ambil ijazah padahal uangnya ada wkwkwk males denger pertanyaan dari guru² yg jelas jelas tau aku kerja apa tapi tetep aja nanya mulu
2026-09-10 08:15:00
2
agentigabelas
13 :
mau repost tapi dia di dalam mobil
2026-09-10 18:18:29
0
rifan_030
sunsetz :
request versi pake motor bang biar lebih related
2026-09-10 21:45:40
0
abang.imass
d!m@$ :
pertanyaan sederhana tapi nusuknya luar biasa,semoga kita selalu di jalan yg benar dengan hantaman takdir yg di berikan
2026-09-10 05:37:18
1
ramli_la_ode
Ramli La Ode :
mau repost tapi gak bisa 😭😭
2026-09-10 05:49:42
1
claudyarr
R :
buat versi univ ga terkenal dong ka
2026-09-10 07:28:08
1
yibo1kun
Yiboo. :
2026-09-10 07:39:10
2
nananoo39
dnaa_ :
kirain pertanyaan "sudah kerja?" itu udah cukup lho, eh malah ada tambahan
2026-09-10 07:57:01
1
frzrimbaa
Rimba :
2 tahun melewati fase ini dan alhamdulillah sudah dimudahkan, semangat buat kalian semua, semoga dimudahkan dalam hal baik kedepannya 🙌🏼
2026-09-11 03:56:36
1
cchiyaa_
𝑪𝒄𝒉𝒊𝒚𝒂𝒂𝒂^᪲᪲᪲🐬 :
sering bgt dngerin nya jdi udah kebal telinganya tapiii itu kdng insecure juga soalnya itu juga mimpi aku cuma yaa ituuu mungkin rezeki aku bukan di kerja kali yaa🥺
2026-09-10 22:56:37
7
porisselatan_
arman🌟 :
2026-09-10 18:03:18
1
lvlymkdmpt_
lovlymkdmpt :
jika kau ragu dengan ini abadi mu maka jangan ragu dengan gemilang mu.
2026-09-10 08:02:52
1
japyouuu
￴ ￴ ￴ ￴ ￴ ￴ ￴ ￴ ￴ ￴ ￴ ￴ ￴ :
posting ulang nya kemana?
2026-09-10 04:28:05
1
vartzy969
vartzy969 :
2026-09-10 03:15:57
1
faisal03_04
sall :
2026-09-10 03:03:07
1
veeee_ga
v :
2026-09-11 02:28:29
1
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Other Videos

A walking cycle can be built directly into metal. This 3D animation shows a mechanical linkage coordinating two legs through a repeatable walking motion. As the joints rotate, each foot follows a controlled path. It lifts from the ground, swings forward, lowers into position and prepares to support the next step. The movement comes from rigid links, rotating pivots and carefully selected link lengths. Their geometry determines the trajectory of each foot and the timing between both legs. Moving a single pivot point can change the stride length, step height, ground clearance and overall gait. No camera, force sensor or machine learning system is shown here. The walking pattern is generated through mechanical kinematics. The structure performs part of the coordination that software would otherwise need to calculate. This type of walking mechanism helps engineers study how rotary motion can be converted into coordinated leg movement. A compact input can drive several connected joints while maintaining a consistent gait. The limitation is adaptability. A fixed linkage follows a path defined by its geometry. Stairs, slopes and unexpected obstacles would require additional actuators, sensors and feedback control. Modern legged robots combine mechanical design with motors, encoders, inertial sensors, cameras and real-time control. Good geometry gives the controller a stronger starting point and reduces the amount of correction required during each step. This video is a 3D mechanical animation rather than footage of a deployed robot. It provides a clear view of linkage design, gait generation and the kinematics behind robot locomotion. Follow @techniahqrobot on X, Instagram, TikTok, YouTube, LinkedIn, Facebook, Threads and Bilibili for more robotics and Physical AI content. #Robotics #RobotLocomotion #WalkingRobot #LeggedRobotics #MechanicalEngineering
A walking cycle can be built directly into metal. This 3D animation shows a mechanical linkage coordinating two legs through a repeatable walking motion. As the joints rotate, each foot follows a controlled path. It lifts from the ground, swings forward, lowers into position and prepares to support the next step. The movement comes from rigid links, rotating pivots and carefully selected link lengths. Their geometry determines the trajectory of each foot and the timing between both legs. Moving a single pivot point can change the stride length, step height, ground clearance and overall gait. No camera, force sensor or machine learning system is shown here. The walking pattern is generated through mechanical kinematics. The structure performs part of the coordination that software would otherwise need to calculate. This type of walking mechanism helps engineers study how rotary motion can be converted into coordinated leg movement. A compact input can drive several connected joints while maintaining a consistent gait. The limitation is adaptability. A fixed linkage follows a path defined by its geometry. Stairs, slopes and unexpected obstacles would require additional actuators, sensors and feedback control. Modern legged robots combine mechanical design with motors, encoders, inertial sensors, cameras and real-time control. Good geometry gives the controller a stronger starting point and reduces the amount of correction required during each step. This video is a 3D mechanical animation rather than footage of a deployed robot. It provides a clear view of linkage design, gait generation and the kinematics behind robot locomotion. Follow @techniahqrobot on X, Instagram, TikTok, YouTube, LinkedIn, Facebook, Threads and Bilibili for more robotics and Physical AI content. #Robotics #RobotLocomotion #WalkingRobot #LeggedRobotics #MechanicalEngineering

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