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1 повторное интегрирование
Универсальный русско-английский словарь > повторное интегрирование
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2 повторное интегрирование
iterated integration мат., repeated integrationРусско-английский научно-технический словарь Масловского > повторное интегрирование
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3 интеграл
* * *интегра́л м.
integralинтегра́л берё́тся по … — the integral is taken around [over] …, integration is over …брать интегра́л вдоль ко́нтура — take the integral along the contourбрать интегра́л вдоль окру́жности — take the integral around the circleинтегра́л в преде́лах от а до б — the integral between the limits a and bинтегра́л от фу́нкции f(x) — the integral of (the function) f(x)выноси́ть за знак интегра́ла — factor outside the integral signвы́числить интегра́л — compute the value of an integral, evaluate the integralинтегра́л не берё́тся в элемента́рных фу́нкциях — the integral cannot be expressed as elementary functionsинтегра́л от … — integral of …интегра́л по … — integral (taken) over …, integral extended along …под интегра́лом — under the integralа́белев интегра́л — Abelian integralинтегра́л актива́ции — activation integralинтегра́л вероя́тности — probability integralинтегра́л вероя́тности оши́бки — error function, error (function) integral, erf, erfiвну́тренний интегра́л — inner [inside] integralинтегра́л во вре́мени — time integralгиперэллипти́ческий интегра́л — hyperelliptic integralдвойно́й интегра́л — double integralдвукра́тный интегра́л — double [twofold iterated, double-iterated] integralинтегра́л де́йствия — action integralинтегра́л дифференциа́льного уравне́ния — primitive integral, solution of a differential equationинтегра́л дифференциа́льного уравне́ния, о́бщий — complete integral of a differential equation, general solution of a differential equationинтегра́л дро́бного поря́дка — fractional integralинтегра́л Дюаме́ля — Duhamel integralко́нтурный интегра́л — contour [circulatory] integralкорреляцио́нный интегра́л — correlation integralинтегра́л Коши́ — Cauchy integralкра́тный интегра́л — multiple integral
n-кра́тный интегра́л — n -fold multiple integral(криво)лине́йный интегра́л — line [contour] integralкругово́й интегра́л — circuital integral, integral (taken) round a closed circuitинтегра́л Ле́бега — Lebesgue integralлине́йный интегра́л — line integralнеопределё́нный интегра́л — indefinite integralнесо́бственный интегра́л — improper integralо́бщий интегра́л — general integral, general solution (of a differential equation)определё́нный интегра́л — definite integralинтегра́л от показа́тельной фу́нкции — exponential integralинтегра́л от тригонометри́ческой фу́нкции — trigonometric integralинтегра́л от фу́нкции действи́тельной переме́нной — real integralинтегра́л оши́бок — error function, error (function) integral, erf, erfiповто́рный интегра́л — iterated [repeated] integralпо́лный интегра́л — complete integralинтегра́л по объё́му — volume [space] integral, integral (taken) over spaceинтегра́л по пове́рхности — surface integral, integral (taken) through a surfaceинтегра́л рассе́яния — scattering integralинтегра́л Рима́на — Riemann integralинтегра́л с бесконе́чным преде́лом — infinite integralсингуля́рный интегра́л — singular integralскаля́рный (криво)лине́йный интегра́л — scalar line integralинтегра́л Сти́лтьеса — Stieltjes integralтрёхкра́тный интегра́л — threefold iterated integralтройно́й интегра́л — triple integralфа́зовый интегра́л — phase integralча́стный интегра́л — particular integral, particular solution (of a differential equation)эллипти́ческий интегра́л — elliptic integral -
4 Отсутствие артиклей перед существительными, которые обозначают действия (в конструкциях с of может быть использован the)
(The) application (use) of Definition 1 yields (gives) (2)(The) repeated application (use) of (1) shows that...The last formula can be derived by direct consideration of the estimate (1)This set is the smallest possible extension in which differentiation is always possibleUsing integration by parts, we obtain $I=I_1$If we apply induction to (1), we get $A=B$(The) addition of (1) and (2) gives (yields) (3)This reduces the solution to division by $Ax$(The) comparison of (1) and (2) shows that...Multiplying the first relation in (1) by $x$ and the second one by $y$, followed by summation, we come to the concise form of the above equationsTherefore, we omit consideration of how to obtain this solutionThis specimen is subjected to uniaxial active tensionConsider the invariant points of the compound transformation $T^nR_k$, where $R_k$ denotes $k$-fold rotation through the angle $2pi$Русско-английский словарь по прикладной математике и механике > Отсутствие артиклей перед существительными, которые обозначают действия (в конструкциях с of может быть использован the)
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5 Отсутствие артиклей перед существительными, которые обозначают действия (в конструкциях с of может быть использован the)
(The) application (use) of Definition 1 yields (gives) (2)(The) repeated application (use) of (1) shows that...The last formula can be derived by direct consideration of the estimate (1)This set is the smallest possible extension in which differentiation is always possibleUsing integration by parts, we obtain $I=I_1$If we apply induction to (1), we get $A=B$(The) addition of (1) and (2) gives (yields) (3)This reduces the solution to division by $Ax$(The) comparison of (1) and (2) shows that...Multiplying the first relation in (1) by $x$ and the second one by $y$, followed by summation, we come to the concise form of the above equationsTherefore, we omit consideration of how to obtain this solutionThis specimen is subjected to uniaxial active tensionConsider the invariant points of the compound transformation $T^nR_k$, where $R_k$ denotes $k$-fold rotation through the angle $2pi$Русско-английский словарь по прикладной математике и механике > Отсутствие артиклей перед существительными, которые обозначают действия (в конструкциях с of может быть использован the)
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