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On the midway on the philosophy, physics, physiology, offer the quantification of spiritualist dualism, which is a mathematical concept in continuum mechanics on the agent of the movement that called the soul of the universe exercised by the will of the universe. That is different from artificial intelligence and genetic algorithms and brings a new wave to metrology in biotechnology.
Knowledge Working :

 

Familiar with the following studies :
 - Sculpting / Modeling
 - Automaton / Automation
 - Horology / Astrobiology
 - Mechanics (Biomechanics, Fluid mechanics, Continuum mechanics)
 - Global environmental health & sustainability
 - Collective consciousness / Behavioural science

Integration  :

 

« Exercise-based Neurorehabilitation for Immune function enhancement, Perceptual and Motor Skills enhancement using Simulated reality.»
« Molecular machine, High mobility animal type autonomous vehicles for land, sea, sky and space. »
« Automatic artificial prosthetic limbs. Swarm intelligence. Communication method with natural animals. »

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Mails : moc.nopirav@tcatnoc

 

 

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 humains

Task 2.1 : Running « https://lnkd.in/fHg_dkz »

Task 2.2 : 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 »

(Update) Task 2.6 : Crawl swimming « https://goo.gl/MpI1po »

Task 2.7 : Breaststroke swimming « https://goo.gl/7zKgh8 »

Task 2.8 : Butterfly stroke swimming « https://goo.gl/3RzstG »

Task 2.9 : Kung Fu « https://goo.gl/kTnwRU »

 

Work Plan 3. Biomechanical simulation of multi legs

Task 3.1 : Equestrianism « https://youtu.be/bsjl0hNEH3whttp://varipon.com/index.php/work-plan-3/task-31/ »

Task 3.2 : Leopard running « http://goo.gl/MYirCz »

Task 3.3 : Dung beetle running « https://vimeo.com/146872666, https://goo.gl/1uoiqc»

Task 3.4 : Millipede walking « https://goo.gl/qaPn5P»

 

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 : Drone beetles « https://goo.gl/pjws8C , https://goo.gl/oM4k10 »

Task 9.2 : Dragonflies « https://lnkd.in/fvtmaRd , https://youtu.be/iqDwqHi8FvE»

Task 9.3 : Bees : « ‪https://goo.gl/gavztu »

Task 9.4 : Bats and Divine formulas :

« https://goo.gl/fiS1kK , https://youtu.be/YhnCr8MqOSs »

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 

« http://varipon.com/index.php/work-plan-10/task-101-atp-synthase/ »

 

WebGL simulator "Turbulence" 

« http://varipon.com/index.php/laboratoire/task-101/ »