Examples of using Aetherpoint in English and their translations into German
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Colloquial
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Official
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Ecclesiastic
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Medicine
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Financial
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Ecclesiastic
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Political
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Computer
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Programming
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Official/political
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Political
An aetherpoint and its neighbours e. g.
Some later, aether moves opposite and finally each aetherpoint comes back to its original location moving at circle track.
An aetherpoint A is moving at a circle track.
All aether is swinging by previous motion-pattern, each aetherpoint(nearby) parallel to its neighbours, each around its own fulcrum.
Each aetherpoint is swinging around its own fulcrum.
Resulting is a deceleration left side at G andan acceleration right side at H. Here is drawn only one black aetherpoint and its track.
The aetherpoint observed keeps its local area all times.
At any position of both radius-arms(here shown four times below each other) the aetherpoint(black, at the end of second hand) will move at straight line.
Each aetherpoint continuously is pushed to-and-fro into all directions.
At previous chapter overlay of a horizontal swinging HS by a vertical swinging VS was described,where observed aetherpoint AP e. g.
This aetherpoint is turning around a fulcrum D marked black.
By view at north pole N. The aetherpoint C(black) is swinging outward at a left-turning, oval track D and afterward will come back near north pole.
The aetherpoint are never gliding at border faces alongside each other.
That's no rotation like at previous chapter, where an aetherpoint stays in front(in turning sense) of his neighbours, so all aetherpoints are turning at circle track, commonly around only one centre.
Each aetherpoint is bound to every neighbouring aetherpoint without any gaps between.
The observed red aetherpoint now is located quite right side, its blue neighbour still is some left.
An aetherpoint however can not be left and same time be right side of its fulcrum.
At B and C this aetherpoint swings to left side and the strong bow of the connecting line is shifted ahead-left-side.
Aetherpoint marked light-red is located left side- and during total movement this aetherpoint will stay left side of his neighbours.
At its left edge an aetherpoint A momentary is at its uppermost position and at right edge the aetherpoint B correspondingly is most down.
The aetherpoint comes back all times to its focus G(white), each time some shifted in turning sense.
Each aetherpoint is located directly besides its neighbouring points.
That aetherpoint keeps near to north pole in general, however is moving at a'rosette-shaped' track.
Observed aetherpoint is swinging around system axis, here by view diagonal down, at an elliptic track.
Every aetherpoint is moving at a'track-with-stroke', where the fast track-section shows into tangential directions.
So if an aetherpoint is moving at previous circled track, all neighbouring aetherpoints must move at analogue tracks, i. e.
When this aetherpoint stays within that north-pole-region, its antipode will move at analogue tracks within corresponding space for motions near south-pole.
An aetherpoint may not only swing around one fulcrum by radius R1, but this motion must be overlaid by second swinging with radius R2, into likely sense.
An aetherpoint won't wander whole length of these arrows E, but all aetherpoints of that region are shifted just a little bit into direction of arrows.
If the aetherpoint starts at its position at east(E) and moves to position south(S), that point has to go a rather long distance from upside of east-axis towards left side of south-axis.