@T_Hanks1 shit sucks dude. I'm bout to tough it out and make that bitch my new #bionicmuscle


Graphene in Prosthesis #Graphene on rubber makes an efficient #bionicmuscle as electrical stimulation on this compound makes it possible to control tension and relaxation. Graphene is useful for making splints to achieve the necessary hardness and strength. @richardbranson

avadaingraphene's tweet image. Graphene in Prosthesis
#Graphene on rubber makes an efficient #bionicmuscle as electrical stimulation on this compound makes it possible to control tension and relaxation. Graphene is useful for making splints to achieve the necessary hardness and strength. @richardbranson

Graphene in Prosthesis #Graphene on rubber makes an efficient #bionicmuscle as electrical stimulation on this compound makes it possible to control tension and relaxation. Graphene is useful for making splints to achieve the necessary hardness and strength. @richardbranson

avadaingraphene's tweet image. Graphene in Prosthesis
#Graphene on rubber makes an efficient #bionicmuscle as electrical stimulation on this compound makes it possible to control tension and relaxation. Graphene is useful for making splints to achieve the necessary hardness and strength. @richardbranson

@T_Hanks1 shit sucks dude. I'm bout to tough it out and make that bitch my new #bionicmuscle


Graphene in Prosthesis #Graphene on rubber makes an efficient #bionicmuscle as electrical stimulation on this compound makes it possible to control tension and relaxation. Graphene is useful for making splints to achieve the necessary hardness and strength. @richardbranson

avadaingraphene's tweet image. Graphene in Prosthesis
#Graphene on rubber makes an efficient #bionicmuscle as electrical stimulation on this compound makes it possible to control tension and relaxation. Graphene is useful for making splints to achieve the necessary hardness and strength. @richardbranson

Loading...

Something went wrong.


Something went wrong.


United States Trends