invariant procedure - vertaling naar russisch
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invariant procedure - vertaling naar russisch

Positive invariance; Positively invariant; Positive invariant; Positive invariant set

invariant procedure      

математика

инвариантная процедура

invariant set         
  • operation]] denoted by <math>\circ</math> is the [[function composition]].
PROPERTY OF MATHEMATICAL OBJECTS THAT REMAINS UNCHANGED FOR TRANSFORMATIONS APPLIED TO THE OBJECTS
Invariant (computer science); Invariance (mathematics); Coordinate system invariant; Invariant set; Coordinate invariance; Coordinate system invariance; Programming invariant

математика

инвариантное множество

standard procedure         
SET OF STEP-BY-STEP INSTRUCTIONS COMPILED BY AN ORGANIZATION TO HELP WORKERS CARRY OUT ROUTINE OPERATIONS
Standard Operating Procedures; Standard procedures; Standard Operating Procedure; General operating procedure; General operating procedures; General Operating Procedures; General Operating Procedure; Standard operating procedures; Standing operating procedure; S.O.P.; Standard procedure
типовая процедура

Definitie

invariant
<programming> A rule, such as the ordering of an ordered list or heap, that applies throughout the life of a data structure or procedure. Each change to the data structure must maintain the correctness of the invariant. (1996-03-12)

Wikipedia

Positively invariant set

In mathematical analysis, a positively (or positive) invariant set is a set with the following properties:

Suppose x ˙ = f ( x ) {\displaystyle {\dot {x}}=f(x)} is a dynamical system, x ( t , x 0 ) {\displaystyle x(t,x_{0})} is a trajectory, and x 0 {\displaystyle x_{0}} is the initial point. Let O := { x R n φ ( x ) = 0 } {\displaystyle {\mathcal {O}}:=\left\lbrace x\in \mathbb {R} ^{n}\mid \varphi (x)=0\right\rbrace } where φ {\displaystyle \varphi } is a real-valued function. The set O {\displaystyle {\mathcal {O}}} is said to be positively invariant if x 0 O {\displaystyle x_{0}\in {\mathcal {O}}} implies that x ( t , x 0 ) O     t 0 {\displaystyle x(t,x_{0})\in {\mathcal {O}}\ \forall \ t\geq 0}

In other words, once a trajectory of the system enters O {\displaystyle {\mathcal {O}}} , it will never leave it again.

Vertaling van &#39invariant procedure&#39 naar Russisch