• 제목/요약/키워드: ${\alpha}$(X)

검색결과 1,839건 처리시간 0.03초

BOUNDARIES AND PEAK POINTS OF LIPSCHITZ ALGEBRAS

  • MAHYAR, H.
    • 호남수학학술지
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    • 제22권1호
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    • pp.47-52
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    • 2000
  • We determine the Shilov and Choquet boundaries and the set of peak points of Lipschitz algebras $Lip(X,\;{\alpha})$ for $0<{\alpha}{\leq}1$, and $lip(X,\;{\alpha})$ for $0<{\alpha}<1$, on a compact metric space X. Then, when X is a compact subset of $\mathbb{C}^n$, we define some subalgebras of these Lipschitz algebras and characterize their Shilov and Choquet boundaries. Moreover, for compact plane sets X, we determine the Shilove boundary of them. We also determine the set of peak points of these subalgebras on certain compact subsets X of $\mathbb{C}^n$.

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A NOTE ON PARTIAL SIGN-SOLVABILITY

  • Hwang, Suk-Geun;Park, Jin-Woo
    • 대한수학회보
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    • 제43권3호
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    • pp.471-478
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    • 2006
  • In this paper we prove that if AX=b is a partial sign-solvable linear system with A being sign non-singular matrix and if ${\alpha}=\{j:\;x_j\;is\;sign-determined\;by\; Ax=b\}, then $A_{\alpha}X_{\alpha}=b_{\alpha}$ is a sign-solvable linear system, where $A_{\alpha}$ denotes the submatrix of A occupying rows and columns in o and xo and be are subvectors of x and b whose components lie in ${\alpha}$. For a sign non-singular matrix A, let $A_l,\;...,A_{\kappa}$ be the fully indecomposable components of A and let ${\alpha}_i$ denote the set of row numbers of $A_r,\;r=1,\;...,\;k$. We also show that if $A_x=b$ is a partial sign-solvable linear system, then, for $r=1,\;...,\;k$, if one of the components of xor is a fixed zero solution of Ax=b, then so are all the components of x_{{\alpha}r}$.

Multiple Parallel-Pollard's Rho Discrete Logarithm Algorithm

  • Lee, Sang-Un
    • 한국컴퓨터정보학회논문지
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    • 제20권8호
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    • pp.29-33
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    • 2015
  • This paper proposes a discrete logarithm algorithm that remarkably reduces the execution time of Pollard's Rho algorithm. Pollard's Rho algorithm computes congruence or collision of ${\alpha}^a{\beta}^b{\equiv}{\alpha}^A{\beta}^B$ (modp) from the initial value a = b = 0, only to derive ${\gamma}$ from $(a+b{\gamma})=(A+B{\gamma})$, ${\gamma}(B-b)=(a-A)$. The basic Pollard's Rho algorithm computes $x_i=(x_{i-1})^2,{\alpha}x_{i-1},{\beta}x_{i-1}$ given ${\alpha}^a{\beta}^b{\equiv}x$(modp), and the general algorithm computes $x_i=(x_{i-1})^2$, $Mx_{i-1}$, $Nx_{i-1}$ for randomly selected $M={\alpha}^m$, $N={\beta}^n$. This paper proposes 4-model Pollard Rho algorithm that seeks ${\beta}_{\gamma}={\alpha}^{\gamma},{\beta}_{\gamma}={\alpha}^{(p-1)/2+{\gamma}}$, and ${\beta}_{{\gamma}^{-1}}={\alpha}^{(p-1)-{\gamma}}$) from $m=n={\lceil}{\sqrt{n}{\rceil}$, (a,b) = (0,0), (1,1). The proposed algorithm has proven to improve the performance of the (0,0)-basic Pollard's Rho algorithm by 71.70%.

CHARACTERIZATIONS OF THE POWER FUNCTION DISTRIBUTION BY THE INDEPENDENCE OF THE LOWER RECORD VALUES

  • Chang, Se-Kyung
    • Journal of applied mathematics & informatics
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    • 제25권1_2호
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    • pp.541-550
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    • 2007
  • This paper presents characterizations of the power distribution with the parameter $\beta=1$ by the independence of the lower record values. We prove $X\;{\in}\;POW({\alpha},\;1)$ for ${\alpha}\;>\;0$, if and only if $\frac{X_{L(n)}}{X_{L(m)}}$ and $X_{L(m)}$ for $1\;{\leq}\;m\;<\;n$ are independent. And we prove that $X\;{\in}\;POW({\alpha},\;1)$ for ${\alpha}\;>\;0$, if and only if $\frac{X_{L(m)}-X_{L(m+1)}}{X_{L(m)}}$ and $X_{L(m)$ for $m\;{\geq}\;1$ are independent or $\frac{X_{L(m)}-X_{L(m+1)}}{X_{L(m+1)}}$ and $X_{L(m)}$ for $m\;{\geq}\;1$ are independent.

A COVERING CONDITION FOR THE PRIME SPECTRUMS

  • Hwang, Chul-Ju
    • East Asian mathematical journal
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    • 제21권1호
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    • pp.61-64
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    • 2005
  • Let R be a commutative ring with identity, and let $f,\;g_i(i=1,\;\ldots,\;n),\;g_{\alpha}(\alpha{\in}S)$ be elements of R. We show that the following statements are equivalent; (i) $X_f{\subseteq}{\cup}_{\alpha{\in}S}X_{g\alpha}$ only if $X_f{\subseteq}X_{g\alpha}$ for some $\alpha{\in}S$, (ii) $V(f){\subseteq}{\cup}_{\alpha{\in}S}V(g_{\alpha})$ only if $V(f){\subseteq}V(g_{\alpha})$ for some $\alpha{\in}S$, (iii) $V(f){\subseteq}{\cup}^n_{i=1}V(g_i)$ only if $V(f){\subseteq}V(g_i)$ for some i, (iv) Spec(R) is linearly ordered under inclusion.

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EVALUATIONS OF THE IMPROPER INTEGRALS ${\int}_0^{\infty}$[sin$^{2m}({\alpha}x)]/(x^{2n})dx$ AND ${\int}_0^{\infty}$[sin$^{2m+1}({\alpha}x)]/(x^{2n+1})dx$

  • Qi, Feng;Luo, Qiu-Ming;Guo, Bai-Ni
    • 한국수학교육학회지시리즈B:순수및응용수학
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    • 제11권3호
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    • pp.189-196
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    • 2004
  • In this article, using the L'Hospital rule, mathematical induction, the trigonometric power formulae and integration by parts, some integral formulae for the improper integrals ${\int}_0^{\infty}$[sin$^{2m}({\alpha}x)]/(x^{2n})dx$ AND ${\int}_0^{\infty}$[sin$^{2m+1}({\alpha}x)]/(x^{2n+1})dx$ are established, where m $\geq$ n are all positive integers and $\alpha$$\neq$ 0.

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ITERATION PROCESSES WITH ERRORS FOR NONLINEAR EQUATIONS INVOLVING $\alpha$-STRONGLY ACCRETIVE OPERATORS IN BANACH SPACES

  • Jung, Jong-Soo
    • East Asian mathematical journal
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    • 제17권2호
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    • pp.349-365
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    • 2001
  • Let X be a real Banach space and $A:X{\rightarrow}2^X$ be an $\alpha$-strongly accretive operator. It is proved that if the duality mapping J of X satisfies Condition (I) with additional conditions, then the Ishikawa and Mann iteration processes with errors converge strongly to the unique solution of operator equation $z{\in}Ax$. In addition, the convergence of the Ishikawa and Mann iteration processes with errors for $\alpha$-strongly pseudo-contractive operators is given.

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HILBERT-SCHMIDT INTERPOLATION ON Ax = y IN A TRIDIAGONAL ALGEBRA ALGL

  • Jo, Young-Soo;Kang, Joo-Ho
    • 한국수학교육학회지시리즈B:순수및응용수학
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    • 제11권2호
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    • pp.167-173
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    • 2004
  • Given vectors x and y in a separable Hilbert space $\cal H$, an interpolating operator is a bounded operator A such that Ax = y. In this article, we investigate Hilbert-Schmidt interpolation problems for vectors in a tridiagonal algebra. We show the following: Let $\cal L$ be a subspace lattice acting on a separable complex Hilbert space $\cal H$ and let x = ($x_{i}$) and y = ($y_{i}$) be vectors in $\cal H$. Then the following are equivalent; (1) There exists a Hilbert-Schmidt operator A = ($a_{ij}$ in Alg$\cal L$ such that Ax = y. (2) There is a bounded sequence {$a_n$ in C such that ${\sum^{\infty}}_{n=1}\mid\alpha_n\mid^2 < \infty$ and $y_1 = \alpha_1x_1 + \alpha_2x_2$ ... $y_{2k} =\alpha_{4k-1}x_{2k}$ $y_{2k=1} = \alpha_{4kx2k} + \alpha_{4k+1}x_{2k+1} + \alpha_{4k+1}x_{2k+2}$ for K $\epsilon$ N.

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우라늄산화물중 Cs의 전자탐침 미세분석 (Electron Probe Micro Analysis of Cs in $UO_2$)

  • 박순달;조기수;김원호
    • 분석과학
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    • 제14권3호
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    • pp.203-211
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    • 2001
  • 우라늄산화물중 Cs의 전자탐침 미세분석시 우라늄에 의한 방해와 몇 가지 Cs 화합물의 Cs $L_{\alpha}$ X-선 세기 안정도를 측정하였다. Cs 화합물 중 CsI의 Cs $L_{\alpha}$ X-선 세기가 가속전압과 결정의 종류에 관계없이 가장 높았다. 빔전류량 100 nA 사용시 Cs $L_{\alpha}$ X-선 세기는 측정시간이 경과함에 따라 감소하였으며, X-선 세기의 감소율은 가속전압과 빔전류량에 비례하였으나 빔직경에 반비례하였다. $UO_2$ 시편에 함유된 Cs의 전자탐침미세분석시 LiF결정의 Cs $L_{\alpha}$ X-선 파장을 사용하면 우라늄에 의한 방해를 제거 할 수 있었다.

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소수계량함수 (The Prime Counting Function)

  • 이상운;최명복
    • 한국컴퓨터정보학회논문지
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    • 제16권10호
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    • pp.101-109
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    • 2011
  • 리만의 제타함수 $\zeta(s)$는 주어진 수 x보다 작은 소수의 개수 $\pi$(x)를 구하는 해답으로 알려져 있으며, 소수정리에서 지금까지 리만의 제타 함수 이외에 $\frac{x}{lnx}$,Li(x)와 R(x)의 근사치 함수가 제안되었다. 여기서 $\pi$(x)와의 오차는 R(x) < Li(x) < $\frac{x}{lnx}$이다. 로그적분함수 Li(x) = $\int_{2}^{x}\frac{1}{lnt}dt$, ~ $\frac{x}{lnx}\sum\limits_{k=0}^{\infty}\frac{k!}{(lnx)^k}=\frac{x}{lnx}(1+\frac{1!}{(lnx)^1}+\frac{2!}{(lnx)^2}+\cdots)$ 이다. 본 논문은 $\pi$(x)는 유한급수��Li(x)로 표현됨을 보이며, 일반화된 $\sqrt{ax}{\pm}{\beta}$의 소수계량함수를 제안한다. 첫 번째로, $\pi$(x)는 $0{\leq}t{\leq}2k$의 유한급수인 $Li_3(x)=\frac{x}{lnx}(\sum\limits_{t=0}^{{\alpha}}\frac{k!}{(lnx)^k}{\pm}{\beta})$$Li_4(x)=\lfloor\frac{x}{lnx}(1+{\alpha}\frac{k!}{(lnx)^k}{\pm}{\beta})\rfloor$, $k\geq2$ 함수로 표현됨을 보였다. $Li_3$(x)는 $\pi(x){\simeq}Li_3(x)$가 되도록 ${\alpha}$ 값을 구하고 오차를 보정하는 ${\beta}$ 값을 갖도록 조정하였다. 이 결과 $x=10^k$에 대해 $Li_3(x)=Li_4(x)=\pi(x)$를 얻었다. 일반화된 함수로 $\pi(x)=\sqrt{{\alpha}x}{\pm}{\beta}$를 제안하였다. 제안된 $\pi(x)=\sqrt{{\alpha}x}{\pm}{\beta}$ 함수는 리만의 제타함수에 비해 소수를 월등히 계량할 수 있었다.