displacement tonnage - translation to greek
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displacement tonnage - translation to greek

VECTOR THAT IS THE SHORTEST DISTANCE FROM THE INITIAL TO THE FINAL POSITION OF A POINT P
Displacement (of location); Displacement (distance); Displacement (mathematics); Displacement vector; Displacement (vector); Displacement (physics); Displacement (mechanics)
  • Displacement versus distance travelled along a path

displacement tonnage         
  • USS ''Abel P. Upshur'']] are destroyers of comparable size, but because the latter is more heavily loaded, it sits lower, displacing more water.
  • Shipboard stability computer programs can be used to calculate a vessel's displacement.
SHIP'S WEIGHT
Light displacement; Standard displacement; Measures of ship displacement; Displace (ship); Full-load displacement; Displacement (ships); Loaded displacement; Normal displacement; Displacement (nautical); Deep load; Ship displacement; Displacement (hull); Full load displacement; Full load; Standard load; Displacement tonnage
εκτοπιζόμενο βάρος
εκτοπιζόμενο βάρος      
displacement tonnage
gross tonnage         
NONLINEAR MEASURE OF A SHIP'S OVERALL INTERNAL VOLUME
Gross ton; Gross tons; Gross Tonnage
ολική χωρητικότητα

Definition

tonnage
n. dead-weight; displacement; gross; net, registered tonnage

Wikipedia

Displacement (geometry)

In geometry and mechanics, a displacement is a vector whose length is the shortest distance from the initial to the final position of a point P undergoing motion. It quantifies both the distance and direction of the net or total motion along a straight line from the initial position to the final position of the point trajectory. A displacement may be identified with the translation that maps the initial position to the final position.

A displacement may be also described as a relative position (resulting from the motion), that is, as the final position xf of a point relative to its initial position xi. The corresponding displacement vector can be defined as the difference between the final and initial positions:

In considering motions of objects over time, the instantaneous velocity of the object is the rate of change of the displacement as a function of time. The instantaneous speed, then, is distinct from velocity, or the time rate of change of the distance travelled along a specific path. The velocity may be equivalently defined as the time rate of change of the position vector. If one considers a moving initial position, or equivalently a moving origin (e.g. an initial position or origin which is fixed to a train wagon, which in turn moves on its rail track), the velocity of P (e.g. a point representing the position of a passenger walking on the train) may be referred to as a relative velocity, as opposed to an absolute velocity, which is computed with respect to a point which is considered to be 'fixed in space' (such as, for instance, a point fixed on the floor of the train station).

For motion over a given interval of time, the displacement divided by the length of the time interval defines the average velocity, which is a vector, and differs thus from the average speed, which is a scalar quantity.