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Numerous shrimps and some amphipods snap the movable finger of the enlarged claw against the hand as part of threat displays and courtship signals.
Besides the distance traveled by the movable finger of MEMS comb drive, studies of the effect of gap sizes between comb drive fingers and ground plane and between movable and fixed fingers for levitation are also needed.
For diverse gaps of MEMS comdrive design, the dual BEM (DBEM) has become a better method than the domain-type FEM because DBEM can provide a complete solution in terms of boundary values only, with substantial saving in modeling effort, hence the DBEM was used to simulate the fringing of field around the edges of the fixed finger and movable finger of MEMS combdrive for diverse gap size.
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By way of the finite element method, an accurate electrostatic field under diverse gap sizes considering the fringing electric field around the edges of the fixed and movable fingers of comb drive can be obtained.
The smaller the gap between comb drive fingers and ground plane, the larger the structural response of the movable finger.
Results show that the levitating displacement and strain of the movable finger are dependent on the distance traveled.
The different functional chelae of a multi-chela can be described independently: that in Leanchoilia superlata, for example, is composed of a proximal chela with a movable finger including a single element (the movable finger is the spine arising from the next distal element) and a distal chela where the movable finger includes two elements.
Because the gap size between combdrive fingers and ground plane or movable finger and fixed finger, plays a very important role for levitation, a study of the effect of gap size variation is indispensable.
In addition, the levitating force becomes more predominant as the gaps between movable finger and fixed finger decrease.
Results show that the less the gaps between combdrive fingers and ground plane are, the larger the levitating force acting on the movable finger is.
The distal two elements of a chelicera form a chela with a proximal fixed finger (digitus fixus) and a distal movable finger (digitus mobilis).
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com