unbounded sequence - tradução para russo
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unbounded sequence - tradução para russo

FUNCTION OR SEQUENCE WHOSE POSSIBLE VALUES FORM A BOUNDED SET
Bounded sequence; Bounded measure; Bounded sequences; Bounded map; Unbound function; Unbounded function; Bounded (function)

unbounded sequence      

математика

неограниченная последовательность

unbounded operator         
LINEAR OPERATOR DEFINED ON A DENSE LINEAR SUBSPACE
Closed operator; Closeable operator; Closable operator; Closed unbounded operator; Closure of an operator; Unbounded linear operator

математика

неограниченный оператор

closable operator         
LINEAR OPERATOR DEFINED ON A DENSE LINEAR SUBSPACE
Closed operator; Closeable operator; Closable operator; Closed unbounded operator; Closure of an operator; Unbounded linear operator

математика

замыкаемый оператор

Definição

Sequence
·noun The state of being sequent; succession; order of following; arrangement.
II. Sequence ·noun That which follows or succeeds as an effect; sequel; consequence; result.
III. Sequence ·noun A melodic phrase or passage successively repeated one tone higher; a rosalia.
IV. Sequence ·noun Three or more cards of the same suit in immediately consecutive order of value; as, ace, king, and queen; or knave, ten, nine, and eight.
V. Sequence ·noun All five cards, of a hand, in consecutive order as to value, but not necessarily of the same suit; when of one suit, it is called a sequence flush.
VI. Sequence ·noun Any succession of chords (or harmonic phrase) rising or falling by the regular diatonic degrees in the same scale; a succession of similar harmonic steps.
VII. Sequence ·noun A hymn introduced in the Mass on certain festival days, and recited or sung immediately before the gospel, and after the gradual or introit, whence the name.
VIII. Sequence ·noun Simple succession, or the coming after in time, without asserting or implying causative energy; as, the reactions of chemical agents may be conceived as merely invariable sequences.

Wikipédia

Bounded function

In mathematics, a function f defined on some set X with real or complex values is called bounded if the set of its values is bounded. In other words, there exists a real number M such that

| f ( x ) | M {\displaystyle |f(x)|\leq M}

for all x in X. A function that is not bounded is said to be unbounded.

If f is real-valued and f(x) ≤ A for all x in X, then the function is said to be bounded (from) above by A. If f(x) ≥ B for all x in X, then the function is said to be bounded (from) below by B. A real-valued function is bounded if and only if it is bounded from above and below.

An important special case is a bounded sequence, where X is taken to be the set N of natural numbers. Thus a sequence f = (a0, a1, a2, ...) is bounded if there exists a real number M such that

| a n | M {\displaystyle |a_{n}|\leq M}

for every natural number n. The set of all bounded sequences forms the sequence space l {\displaystyle l^{\infty }} .

The definition of boundedness can be generalized to functions f : X → Y taking values in a more general space Y by requiring that the image f(X) is a bounded set in Y.

Como se diz unbounded sequence em Russo? Tradução de &#39unbounded sequence&#39 em Russo