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Let U(λ) denote the class of all analytic functions f in the unit disk Δ of the form f(z)=z+a2z2+? satisfying the condition
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We extend some results concerning the univalence of rational functions recently obtained by Mitrinovi相似文献   

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The purpose of the present paper is to determine univalence conditions of certain integral operators.  相似文献   

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We determine a condition on M, α, λ and μ for which
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We consider a nonlinear integral equation of a special type that appears in the inverse spectral theory of integro-differential operators and whose unique solvability in the class of square-integrable functions is known. However, for some applied issues in order to construct effective algorithms for solving equations of this type, it is required to establish their solvability in the class of analytic functions. Assuming the free term of the nonlinear equation under consideration to be an entire function of exponential type, we prove that so is its solution. Leaning on this result we provide a constructive procedure for solving this equation in the class of square-integrable functions, which can be easily implemented numerically.  相似文献   

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In the present work, we apply the general theory of differential subordination to obtain certain interesting criteria for starlikeness of an analytic function.  相似文献   

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In this note our aim is to deduce some sufficient conditions for integral operators involving Bessel functions of the first kind to be univalent in the open unit disk. The key tools in our proofs are the generalized versions of the well-known Ahlfors’ and Becker’s univalence criteria and some inequalities for the normalized Bessel functions of the first kind.  相似文献   

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We study approximation properties of certain nonlinear integral operators L n * obtained by a modification of given operators L n . The operators L n;r and L n;r * of r-times differentiable functions are also studied. We give theorems on approximation orders of functions by these operators in polynomial weight spaces.  相似文献   

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Integral operator, introduced by Noor, is defined by using convolution. Let fn(z)=z/(1−z)n+1, nN0, and let f be analytic in the unit disc E. Then Inf=f(−1)nf, where fnf(−1)n=z/(1−z). Using this operator, certain classes of analytic functions, related with the classes of functions with bounded boundary rotation and bounded boundary radius rotation, are defined and studied in detail. Some basic properties, rate of growth of coefficients, and a radius problem are investigated. It is shown that these classes are closed under convolution with convex functions. Most of the results are best possible in some sense.  相似文献   

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Translated from Ukrainskii Matematicheskii Zhurnal, Vol. 41, No. 5, pp. 695–698, May, 1989.  相似文献   

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