Holistic work plan
organized into the following ten work packages
Work Plan is organized into the following ten work packages:
Work Plan 1. The universal biomechanical link mechanism for expressing the voluntary movements
Task 1.1 : Primary embodiment «
http://goo.gl/TP12MD
»
Task 1.2 : Secondary embodiment «
http://goo.gl/5P5KHb
»
Work Plan 2. Biomechanical simulation of humans
New!
Task 2.1 : Human Sprinting «
https://bit.ly/45jVTU9
»
Task 2.2 : Human Walking «
http://goo.gl/xsq9Mg
»
Task 2.3 : Funkyman Running «
http://goo.gl/tSKt14
»
Task 2.4 : Feminin Walking «
http://goo.gl/0OqMXi
»
Task 2.5 : Hands, the automatisme in orthopedics «
https://goo.gl/MnUWgX
»
Task 2.6 : Front Crawl «
https://goo.gl/MpI1po
»
Task 2.7 : Breast stroke «
https://bit.ly/3aqazX0
»
Task 2.8 : Butterfly stroke «
https://goo.gl/3RzstG
»
Task 2.9 : Kung Fu «
https://goo.gl/kTnwRU
»
Task 2.10.1 : Swing : Driver shot «
https://bit.ly/3gJcLgW
»
Task 2.10.2 : Swing : Drum major «
https://bit.ly/38fvHS
K
»
Work Plan 3. Biomechanical simulation of multi legs
Task 3.1 :
Equestrianism
«
https://varipon.com/index.php/work-plan-3/task-31/
»
Task 3.2 : Leopard running «
http://goo.gl/MYirCz
»
Task 3.3 : Dung beetles gait «
https://bit.ly/3coWpKC
»
Task 3.4 : Millipedes gait «
http://bit.ly/3l0LjAw
»
Work Plan 4. Biomechanical simulation of fishes
Task 4.1 : Fish swimming «
http://goo.gl/P4Ejhg
»
Work Plan 5. Biomechanical simulation of birds
Task 5.1 : Falcon flapping «
http://goo.gl/A9XWJ9
»
Work Plan 6. The formula of the voluntary movements of animal bodies
Task 6.1 : The formula «
http://goo.gl/bKevoS
»
Task 6.1a : The divine formula «
http://goo.gl/CbdmWO
»
(This is feedback from WP 9 as a nested Formula)
Task 6.2 : The octagonal formula «
http://goo.gl/j3z7rL
»
Task 6.3 : Method using the Inverse kinematics «
http://goo.gl/NCgbth
»
Task 6.4 : Flow of trigonometric functions «
https://goo.gl/tk9uAa
»
Task 6.5 : The diamond rhombus configuration «
https://goo.gl/eSNaF0
»
Work Plan 7. Biomechanical simulation of serpents
Task 7.1 : Serpent crawling «
https://goo.gl/lLeVFf
»
Work Plan 8. Biomechanical simulation of fishes fin
Task 8.1 : Rays «
http://goo.gl/XihZNT
»
Task 8.2 : Anomalocaris «
http://goo.gl/v47j7G
»
Task 8.3 : Largehead hairtails «
http://goo.gl/M6ARvR
»
Task 8.4 : Sea turtles «
http://goo.gl/zawS7n
»
Task 8.5 : Angel fishes «
http://goo.gl/zawS7n
»
Task 8.6 : Schinderhannes bartelsi «
http://goo.gl/v47j7G
»
Task 8.7 : Jellyfishes «
https://goo.gl/1AiYRG
»
Work Plan 9. Biomechanical simulation of divine flight
Task 9.1 : Dung beetles «
https://bit.ly/3v0FqF5
»
Task 9.2 : Dragonflies «
https://bit.ly/3leonJ6
»
Task 9.3 : Bees : «
https://goo.gl/gavztu
»
Task 9.4 : Bats :
«
https://goo.gl/fiS1kK
»
Task 9.5 : Hamming birds and Airfoil «
https://goo.gl/tSKkN0
»
Task 9.6 : Natural airfoil and Alternative formula «
http://goo.gl/O3Tm0N
»
Work Plan 10.
Biomechanical simulation of molecular machines
Task 10.1 : ATP synthase
«
https://varipon.com/index.php/work-plan-10/task-101-atp-synthase/
»
Task 10.2 : Myosin
«
https://varipon.com/index.php/work-plan-10/task-102-myosin/
»
WebGL simulator "Turbulence"
«
https://varipon.com/index.php/laboratoire/task-101/
»
ACCUEIL
INTRODUCTION
THEOREM
Holistic work plan
Work Plan 1. The universal mechanical linkage for the voluntary movement
Work Plan 2. Biomechanical simulation of humans
Work Plan 3. Biomechanical simulation of multi legs
Work Plan 4. Biomechanical simulation of fishes
Work Plan 5. Biomechanical simulation of birds
Work Plan 6. The formula of the voluntary movement
Work Plan 7. Biomechanical simulation of serpents
Work Plan 8. Biomechanical simulation of fins in fishes
Work Plan 9. Biomechanical simulation of divine flight
Work Plan 10. Biomechanical simulation of molecular machines
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