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recursion formula造句

"recursion formula"是什么意思   

例句與造句

  1. there is a simple recursion formula for πk(g).
    關(guān)于K(G)存在一個(gè)簡(jiǎn)單的遞推。
  2. A simple recursion formula can then be used to solve such a system .
    一個(gè)簡(jiǎn)單而又重復(fù)的公式能用來(lái)解這樣的方程組。
  3. By translating this real cubic system into a complex planar system , an applicable linear algebraic recursion formula of the equator and the first 6 quantities of the equator are given
    將這類實(shí)三次系統(tǒng)轉(zhuǎn)化為復(fù)平面系統(tǒng)研究,給出了系統(tǒng)赤道環(huán)量的易于計(jì)算的線性代數(shù)遞推公式。
  4. In this paper , we brought out the concept of “ ergodic matrix ” , and gave out the recursion formula ( ii ) which can construct the ergodic matrix q with n n dimensions using a vector with n dimension . that is , we can delegate n2 bits ergodic matrix q using n bits integer vector , at the same time save the complexity of space and time
    在此基礎(chǔ)上,本文對(duì)利用遍歷矩陣生成信息摘要以及利用它們實(shí)現(xiàn)一般數(shù)字簽名和具有仲裁方式的數(shù)字簽名的算法及應(yīng)用進(jìn)行了相關(guān)的一些研究,對(duì)算法的強(qiáng)度進(jìn)行了分析,并用程序?qū)λ惴ㄟM(jìn)行了驗(yàn)證。
  5. On the basis of this , some annuities and life annuities with certain interest rate are more discussed . the property of m power of the present value about the discrete and continuous annuities is found as well as some recursion formulae and differential equations about some life annuities
    在此基礎(chǔ)上,一方面對(duì)確定利率下的一些(生存)年金作了進(jìn)一步地討論,得到了某些離散和連續(xù)年金現(xiàn)值的m ( m 2的整數(shù))次方性質(zhì)及一些離散生存年金精算現(xiàn)值的遞推方程和一些連續(xù)生存年金精算現(xiàn)值所滿足的微分方程。
  6. It's difficult to find recursion formula in a sentence. 用recursion formula造句挺難的
  7. Then we brought out algorithm to construct ergodic matrix according to the recursion formula ( i ) and expatiate characteristic theorems about “ ergodic matrix ” by the numbers , the difficult problem and one - way ( trapdoor ) function based on the ergodic matrix over finite field . then we put forward the concept of strong matrix based on ergodic matrix according to a problem and the algorithm of finding and constructing the strong matrix of ergodic matrix . as one - way function played an important role in cryptography , we gave a new plan to realize application pattern in cryptology
    基于單向函數(shù)在密碼學(xué)中的重要性,本文構(gòu)造了基于遍歷矩陣的單向函數(shù)b = q _ 1 ~ aaq _ 2 ~ b ,并在此基礎(chǔ)上實(shí)現(xiàn)了包括密鑰管理協(xié)議、認(rèn)證協(xié)議和智力撲克協(xié)議在內(nèi)的五種典型的安全協(xié)議,同時(shí)就算法的特點(diǎn)和攻擊特性進(jìn)行了分析。
  8. In chapter 2 , by studying the computation of the quantities of singular point of the original of the following complex autonomous polynomial differential system two linear recursion formulas for the computation of quantities of singular point of system ( 1 ) are obtained . applicable formulas are presented unitedly for the computation of focus quantities and saddle quantities , which play an important role in center - focus determination and bifurcation of limit cycles in real planar polynomial differential systems
    在第二章,我們研究平面多項(xiàng)式復(fù)自治微分系統(tǒng)原點(diǎn)的奇點(diǎn)量計(jì)算,得到了奇點(diǎn)量計(jì)算的線性代數(shù)遞推公式,統(tǒng)一地給出了在實(shí)平面多項(xiàng)式微分系統(tǒng)的中心焦點(diǎn)判定與極限環(huán)分支中有著極為重要意義的焦點(diǎn)量與鞍點(diǎn)量的易于應(yīng)用的計(jì)算公式。
  9. The first chapter of this article consists of the following contents . suppose that are positive integers . , then the bergman kernel function for the second type of hua domain where determined by the following recursion formula : and where is determined by the following recursion formula : it is inappropriate to use holomorphic transitive group to compute the bergman kernel function of hen because he11 is not a homogeneous domain , and we can not obtain the bergman kernel function of hen by obtaining the sum of an infinite series as we compute the bergman kernel function of reinhardt domain . we firstly give some holomorphic automorphisms such that for any he there exists a holomorphic automorphism satisfying next , we introduce the concept of semi reinhardt domain and get its complete orthonormal system
    結(jié)合上述兩種方法就可獲得he _的bergman核函數(shù)的顯表達(dá)式,對(duì)于兩類廣義例外華羅庚域,還要用到j(luò)ordantriplesystem的理論,才能求出其bergman核函數(shù)的顯表達(dá)式: 2當(dāng)是正整數(shù),時(shí),廣義例外華羅庚域的bergman核函數(shù)其中滿足如下的等式:于是,可從等式得到所有的a _ j , ry u dstu thalca000ereereereforfortheerethettithen其中廣; k由下歹遞推公式?jīng)Q定: 。
  10. In the last chapter , by introducing the isochronous center of real systems into complex planar and defining complex center and complex isochronous center , a concise linear recursion formula for period constants is given , necessary and sufficient conditions of complex isochronous center ( the time - angle difference theorem ) proved , conditions of real systems with linearizable center and saddle treated unitedly and the isochronous center conditions discussed fully for a class of real planar cubic systems
    在第七章,通過(guò)把實(shí)系統(tǒng)等時(shí)中心引入復(fù)平面研究,定義了復(fù)中心和復(fù)等時(shí)中心,給出了等時(shí)中心周期常數(shù)計(jì)算的簡(jiǎn)明的線性遞推公式,證明了等時(shí)中心判定的充分必要條件(時(shí)角差定理人統(tǒng)一地處理了實(shí)系統(tǒng)具有可線性化的中心和鞍點(diǎn)條件,并對(duì)一類實(shí)平面三次系統(tǒng)的等時(shí)中心條件進(jìn)行了完整研究

相鄰詞匯

  1. "recursion algorithm"造句
  2. "recursion and iteration"造句
  3. "recursion definition"造句
  4. "recursion depth"造句
  5. "recursion equation"造句
  6. "recursion relation"造句
  7. "recursion theorem"造句
  8. "recursion theory"造句
  9. "recursion tree"造句
  10. "recursions"造句
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