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1 higher order tapered beam finite element
Англо-русский словарь промышленной и научной лексики > higher order tapered beam finite element
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2 higher-order boundary element method
Англо-русский словарь промышленной и научной лексики > higher-order boundary element method
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3 higher-order finite element
Англо-русский словарь промышленной и научной лексики > higher-order finite element
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4 higher-order finite element representation
Англо-русский словарь промышленной и научной лексики > higher-order finite element representation
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5 higher-order serendipity element
Англо-русский словарь промышленной и научной лексики > higher-order serendipity element
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6 higher-order simplex element
Англо-русский словарь промышленной и научной лексики > higher-order simplex element
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7 элемент высокого порядка
Русско-английский физический словарь > элемент высокого порядка
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8 элемент высокого порядка
Русско-английский политехнический словарь > элемент высокого порядка
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9 элемент высокого порядка
higher order element матем.Русско-английский научно-технический словарь Масловского > элемент высокого порядка
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10 элемент высокого порядка
1) Engineering: higher-order element2) Mathematics: higher order elementУниверсальный русско-английский словарь > элемент высокого порядка
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11 конечный элемент высокого порядка
Универсальный русско-английский словарь > конечный элемент высокого порядка
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12 конечный элемент высокого порядка
Русско-английский физический словарь > конечный элемент высокого порядка
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13 член
member матем., (напр. набора данных) tenant, term* * *член м. мат.
term, memberчлен библиоте́ки вчт. — member of a libraryчлен бо́лее высо́кого поря́дка — higher(-order) termчлен вы́сшего поря́дка — highest(-order) termчлен мно́жества — element [member] of a setо́бщий член — general termоста́точный член — remainder (term)член отноше́ния, пе́рвый — antecedentчлен отноше́ния, после́дующий — succedent, consequentчлен отноше́ния, предыду́щий — antecedentподо́бные чле́ны — like [similar] termsгруппирова́ть подо́бные чле́ны уравне́ния — collect similar terms of an equationсокраща́ть подо́бные чле́ны уравне́ния — cancel similar [like] terms of an equationчлен после́довательности — member of a sequenceчлен пропо́рции — term of a proportion, proportionalчлен пропо́рции, кра́йний — extreme term of a proportionчлен пропо́рции, сре́дний — mean proportionalчлен ря́да — term of a seriesоставля́ть чле́ны ря́да — retain terms of a seriesотбра́сывать чле́ны ря́да — discard [suppress] terms of a seriesсвобо́дный член — absolute [constant, free] termста́рший член — highest degree(d) term; term of highest degree; ( многочлена) leading coefficientчлен уравне́ния — term of an equationпереноси́ть чле́ны уравне́ния из одно́й ча́сти в другу́ю — transpose terms from one to the other member [side] of an equationчлен уравне́ния, свобо́дный — absolute term of an equation -
14 Определенные артикли перед существительными, которые снабжены ссылками
The differential problem (1) can be reduced to the form (2)The asymptotic formula (1) follows from the above lemmaThe differential equation (1) can be solved numericallyWhat is needed in the final result is a simple bound on quantities of the form (1)The inequality (1) (артикль можно опустить) shows that $a>b$The bound (estimate) (2) is not quite as good as the bound (estimate) (1)If the norm of $A$ satisfies the restriction (1), then by the estimate (2) this term is less than unitySince the spectral radius of $A$ belongs to the region (1), this iterative method converges for any initial guessesThe array (1) is called the matrix representing the linear transformation of $f$It should be noted that the approximate inequality (1) bounds only the absolute error in $x$The inequality (1) shows that...The second step in our analysis is to substitute the forms (1) and (2) into this equation and simplify it by dropping higher-order termsFor small $ze$ the approximation (1) is very good indeedA matrix of the form (1), in which some eigenvalue appears in more than one block, is called a derogatory matrixThe relation between limits and norms is suggested by the equivalence (1)For this reason the matrix norm (1) is seldom encountered in the literatureTo establish the inequality (1) from the definition (2)Our conclusion agrees with the estimate (1)The characterization is established in almost the same way as the results of Theorem 1, except that the relations (1) and (2) take place in the eigenvalue-eigenvector relation...This vector satisfies the differential equation (1)The Euclidean vector norm (2) satisfies the properties (1)The bound (1) ensures only that these elements are small compared with the largest element of $A$There is some terminology associated with the system (1) and the matrix equation (2)A unique solution expressible in the form (1) restricts the dimensions of $A$The factorization (1) is called the $LU$-factorizationIt is very uncommon for the condition (1) to be violatedThe relation (1) guarantees that the computed solution gives very small residualThis conclusion follows from the assumptions (1) and (2)The factor (1) introduced in relation (2) is now equal to 2The inequalities (1) are still adequateWe use this result without explicitly referring to the restriction (1)Русско-английский словарь по прикладной математике и механике > Определенные артикли перед существительными, которые снабжены ссылками
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