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Kinesis Module
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Kinesis is technology that allows human engineers and construction crews to move large masses easily in almost any environment. Hands-on Zero-Point applications have found use not only in space-borne construction, but also on planetary projects where bulkier construction exoskeletons and machinery are neither suited, nor welcome. Unlike with the Stasis Module, Kinesis' energy is drawn directly from the internal power source of the user's RIG, and as such does not require replenishment. Various features of the module can be upgraded at any workbench via nanocircuitry power node amelioration.
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Kinesis is technology that allows human engineers and construction crews to move large masses easily in almost any environment. Hands-on Zero-Point applications have found use not only in space-borne construction, but also on planetary projects where bulkier construction exoskeletons and machinery are neither suited, nor welcome. Kinesis works by projecting a tube of crackling white energy (an artificial gravity field) from the glove slip's palm emitter pad. Once grabbed by the leading edge of the energy tube, the desired object's gravity is presumably nullified and drawn toward the wielder. Small objects will stop about a foot from the pad, suspended in midair, while movable objects like rail pallets and shutters come as close as their connections allow. Deactivation of the Kinesis effect releases the object, leaving it to fall in the direction of the nearest gravitational center of mass. However, reversing the tube's polarity any time after achieving latch-on causes the object to be thrown away from the wielder with a velocity inversely proportional to the distance from the palm emitter pad. Unlike with the Stasis Module, Kinesis' energy is drawn directly from the internal power source of the user's RIG, and as such does not require replenishment. Various features of the module can be upgraded at any workbench via nanocircuitry power node amelioration. The Kinesis Module fits into the top of the Stasis Module armband just forward of its rear focus cylinder, and works in conjunction with a round emitter pad built into the palm of the glove-slip component. The module allows the wielder control over almost any organic and inorganic material with the wave of a hand.
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