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Solar Cosmotronics
Solar Cosmotronics

[SOCOS] Solar Cosmotronics

ActiveKillboard
Jason AnetoCEOJason AnetoIndependent
Founded on
Members
5
Tax rate
0%
War eligible
No

Combat Record

Career-long numbers from eve-kill

Combat
Kills
1
Losses
4
Efficiency
20%
Danger Ratio
100%
ISK
Destroyed
6.92B
Lost
64.4M
ISK Efficiency
99%
Balance
+6.86B
Solo
Solo Kills
0
Solo Ratio
0%
Final Blows
0
Points
1
Other
NPC Losses
0
NPC Loss Ratio
0%
Avg Kills/Day
Activity
Inactive

Activity

What the corporation flies and where it fights

Most Valuable

Matchups

Who they kill, who kills them, what they lose

Top ListsLast 90d
Hulls LostLast 90d

Losses broken down by hull class.

Battles

Engagements in the selected window, from our own killmail archive

Alliance history

Corporations flown for, most recent first

Description

The missile knows where it is at all times.

It knows this because it knows where it isn't. By subtracting where it is from where it isn't, or where it isn't from where it is - whichever is greater - it obtains a difference or deviation. The guidance subsystem uses deviations to generate corrective commands to drive the missile from a position where it is to a position where it isn't, and arriving at a position that it wasn't, it now is. Consequently, the position where it is is now the position that it wasn't, and if follows that the position that it was is now the position that it isn't. In the event that the position that it is in is not the position that it wasn't, the system has acquired a variation. The variation being the difference between where the missile is and where it wasn't. If variation is considered to be a significant factor, it too may be corrected by the GEA. However, the missile must also know where it was. The missile guidance computer scenario works as follows: Because a variation has modified some of the information that the missile has obtained, it is not sure just where it is. However, it is sure where it isn't, within reason, and it know where it was. It now subtracts where it should be from where it wasn't, or vice versa. And by differentiating this from the algebraic sum of where it shouldn't be and where it was, it is able to obtain the deviation and its variation, which is called error.