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basic variable造句

"basic variable"是什么意思   

例句與造句

  1. It follows visual basic variable naming conventions
    它符合visual basic變量命名規(guī)則。
  2. For the purpose of constructing development options , we need to establish the basic variables
    我們必須先厘訂各項(xiàng)基本參數(shù),方能擬議發(fā)展方案。
  3. 3 . the basic variable of family environment has significant negative relationship with the children ' s aggression action in school
    3 、家庭環(huán)境基本變量因子與幼兒攻擊性?破壞性行為呈顯著負(fù)相關(guān)。
  4. The best object of the finance management is maximizing corporate value , which lies in basic variables : future cash flow and venture
    財(cái)務(wù)管理的最優(yōu)目標(biāo)是企業(yè)價(jià)值最大化,決定企業(yè)價(jià)值的兩個(gè)基本變量是未來現(xiàn)金流和折現(xiàn)率(風(fēng)險(xiǎn)) 。
  5. The . net framework , furthermore , contains classes that represent all the basic variable data types such as strings , integers , bytes , characters , and arrays
    更重要的是, . net框架還將所有一些基礎(chǔ)變量都表示了出來,例如字符串類型,整型,字符型和數(shù)組。
  6. It's difficult to find basic variable in a sentence. 用basic variable造句挺難的
  7. By the presented methods , the possibility distribution of displacements and stresses of uncertain structures may be obtained according to the possibility distribution of basic variables
    該法可由基本變量的模糊可能性分布求得結(jié)構(gòu)位移和應(yīng)力響應(yīng)的可能性分布。
  8. This paper defines three basic variables of social environment of nis , which are environment of intellectual resources , social institutional environment , social and cultural backgrounds
    本文界定了國(guó)家創(chuàng)新系統(tǒng)的社會(huì)環(huán)境的三個(gè)基本變量,即人力資源環(huán)境、社會(huì)制度環(huán)境以及社會(huì)文化背景。
  9. 4 . tthe basic variables of family environment have significant negative relation with the factors of moral and disposition flaw , shrinking back behavior , behavioral hinder in psychological health
    4 、家庭環(huán)境基本變量因子與心理健康中情緒、性格缺陷、退縮行為、行為障礙因子存在顯著負(fù)相關(guān)。
  10. Though it ca n ' t explain that a certain rule control the whole system , it tells us that the number of the basic variable composing the whole system is between 2 and 14
    雖然它沒有說明究竟哪些規(guī)律支配著系統(tǒng),但它卻告訴我們構(gòu)成這個(gè)系統(tǒng)的基本變量數(shù)目在內(nèi)容提要4個(gè)(大于分?jǐn)?shù)維的最小整數(shù))到14個(gè)(相空間的維數(shù))之間。
  11. Based on sand - storm ' s occurrence times data in ningxia , arctic sea - ice area index data , height and wind fields data of ncar / ncar reanalysis , the basic variable rules and anomalous air circulation background fields of spring sand - storm ' s occurrence times in ningxia are systematically analyzed . more attention was paid on studying the tele - connections between arctic sea - ice areas and spring sand - storm ' s occurrence times in ningxia , and impossible affecting process of greenland sea - ice areas " anomalies on sand - storm ' s occurrence times . the results are as follows : 1
    本文根據(jù)寧夏沙塵暴發(fā)生次數(shù)資料、北極海冰密集度資料和ncar / ncep再分析資料,較系統(tǒng)地分析了寧夏春季沙塵暴發(fā)生次數(shù)的基本變化規(guī)律及其異常的大氣環(huán)流背景場(chǎng),重點(diǎn)研究了北極海冰與寧夏春季沙塵暴發(fā)生次數(shù)之間的遙相關(guān)關(guān)系以及格陵蘭海冰異常變化對(duì)沙塵暴的可能影響途徑,結(jié)果表明: 1 、夏春季沙塵暴發(fā)生次數(shù)在1960 - 2000年有明顯的年代際和年際變化特點(diǎn),總體呈減少趨勢(shì),且在1984年發(fā)生了明顯的突變,有10年和7年左右的周期。
  12. Based on the theories of hybrid / mixed finite element method , the generalized energy functional including stress , mechanical displacement , electric displacement , electric field and electric potential is used , with the electric - potential relations and the constitutive equations of piezoelectric materials constrained , hybrid energy functional including mechanical displacement , electric potential and stress is gained . moreover , splitting in - plane components and transverse components , the mixed energy functional in which mechanical displacement , transverse stresses and electric potential as basic variables is derived . with the use of surface stress parameters of sub - elements , the continuity of transverse stress at interfaces between layers is obtained
    在回顧雜交混合有限元理論的基礎(chǔ)上,從包括位移、應(yīng)力、應(yīng)變、電勢(shì)、電位移、電場(chǎng)強(qiáng)度六個(gè)未知量的廣義壓電材料能量泛函出發(fā),通過約束電場(chǎng)強(qiáng)度?電勢(shì)關(guān)系、應(yīng)力與應(yīng)變及電場(chǎng)強(qiáng)度的關(guān)系,得到僅包括位移、電勢(shì)、應(yīng)力三個(gè)未知量的雜交變分泛函,利用一般層合板的雜交混合變分原理,分離面內(nèi)分量和橫向分量,導(dǎo)出以位移、橫向應(yīng)力、電勢(shì)為未知量的壓電層合板的修正變分泛函,作為壓電層合板的雜交元列式的理論基礎(chǔ)。
  13. Regarding the international competitiveness of specialized market and the degree of internationalization of chinese economy as basic variables , we induce four kinds of management pattern of specialized market and think inward internationalization is the basic pattern of the internationalization of specialized market
    本文以專業(yè)市場(chǎng)國(guó)際競(jìng)爭(zhēng)力和中國(guó)經(jīng)濟(jì)國(guó)際化程度作為分析我國(guó)專業(yè)市場(chǎng)國(guó)際化的基本變量,將專業(yè)市場(chǎng)經(jīng)營(yíng)歸納為四種模式,認(rèn)為內(nèi)向國(guó)際化經(jīng)營(yíng)是目前我國(guó)專業(yè)市場(chǎng)國(guó)際化基本模式。
  14. The paper depicts the elasticity with euler form and associates the form with depiction of behavior of fluid . the method takes the velocity as basic variables and then derives the left - deformation tensor from the velocity in order to deal with the time - independent motion . at last in this chapter the equations of the finite flow - element are set up from the principle of the virtual work
    首先建立流管元的概念,對(duì)彈性固體相關(guān)的部分采用euler描寫,并融入流體行為的描寫中;以速度為變量,反推左變形張量,用于處理流固物質(zhì)的定常運(yùn)動(dòng),給出了控制方程和相應(yīng)的變分式;以此為基礎(chǔ)發(fā)展了一套相應(yīng)的有限流管元算法。
  15. Based on the results of test , monitoring and past analyses of the high rock slope , a generalized model for geology and construction process is established . by combination of computing schemes of orthogonal and even design methods with rock mechanical parameters and initial stress field as basic variable , the finite difference method is used to complete the excavation - simulated computation of the high slope considering the effect of excavation unloading , and an optimized back analysis is conducted by using the neural network and genetic algorithm
    在工程試驗(yàn)、現(xiàn)場(chǎng)監(jiān)測(cè)和前期計(jì)算分析的基礎(chǔ)上,建立了地質(zhì)與施工的概化模型,以巖土力學(xué)參數(shù)和初始應(yīng)力場(chǎng)為基本變量,按正交設(shè)計(jì)和均勻設(shè)計(jì)方法進(jìn)行計(jì)算方案的組合,采用考慮開挖卸荷效應(yīng)的顯式有限差分法flac ~ ( 2d )程序完成了船閘高邊坡的開挖模擬計(jì)算,并通過神經(jīng)網(wǎng)絡(luò)和遺傳算法進(jìn)行邊坡位移反分析。
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