Current Topics In Analytic Function TheoryThis volume is a collection of research-and-survey articles by eminent and active workers around the world on the various areas of current research in the theory of analytic functions.Many of these articles emerged essentially from the proceedings of, and various deliberations at, three recent conferences in Japan and Korea: An International Seminar on Current Topics in Univalent Functions and Their Applications which was held in August 1990, in conjunction with the International Congress of Mathematicians at Kyoto, at Kinki University in Osaka; An International Seminar on Univalent Functions, Fractional Calculus, and Their Applications which was held in October 1990 at Fukuoka University; and also the Japan-Korea Symposium on Univalent Functions which was held in January 1991 at Gyeongsang National University in Chinju. |
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第 1 到 5 筆結果,共 87 筆
第 頁
... a Unifying Principle in Geometric Function Theory D. Minda A Class of Bounded Starlike Functions M. Nalinakshi and ... and Some Classes of Univalent Functions M. Obradovic The Quasi-Hadamard Products of Certain Analytic Functions $.
... a Unifying Principle in Geometric Function Theory D. Minda A Class of Bounded Starlike Functions M. Nalinakshi and ... and Some Classes of Univalent Functions M. Obradovic The Quasi-Hadamard Products of Certain Analytic Functions $.
第 頁
A Certain Class of Multivalent Functions H. Saitoh A Certain Class of p-Valent Functions with Negative Coefficients T. Sekine, S. Owa and M. Obradovic Convex Subfamilies of Schwarz Functions H. Silverman A Brief Overview of Subclasses ...
A Certain Class of Multivalent Functions H. Saitoh A Certain Class of p-Valent Functions with Negative Coefficients T. Sekine, S. Owa and M. Obradovic Convex Subfamilies of Schwarz Functions H. Silverman A Brief Overview of Subclasses ...
第 14 頁
In addition, utilizing (1.1), the family R(o) := {f e A : f * sa e S" (o)} = K1–22, o 31 was investigated in [8] and [12]. A function f e R(o) is called prestarlike of order o. For further generalizations of this class, one may refer to ...
In addition, utilizing (1.1), the family R(o) := {f e A : f * sa e S" (o)} = K1–22, o 31 was investigated in [8] and [12]. A function f e R(o) is called prestarlike of order o. For further generalizations of this class, one may refer to ...
第 15 頁
note that the relation (1.2) may be expressed as - 2(2n-1 f)(a) - —I- - The symbol D"f was introduced in [7] and was called the Ruscheweyh derivative of f by Al-Amiri [5]. The class Rx(o) for X e No was studied in [1], [2], and [4].
note that the relation (1.2) may be expressed as - 2(2n-1 f)(a) - —I- - The symbol D"f was introduced in [7] and was called the Ruscheweyh derivative of f by Al-Amiri [5]. The class Rx(o) for X e No was studied in [1], [2], and [4].
第 16 頁
In Sec. 3, we determine the order of starlikeness for the functions in TA(o). Finally, in Sec. 4, using Theorem B we find extreme points of the class TA(o). In particular, the corresponding results for the classes T, To (o), C(o), CA, ...
In Sec. 3, we determine the order of starlikeness for the functions in TA(o). Finally, in Sec. 4, using Theorem B we find extreme points of the class TA(o). In particular, the corresponding results for the classes T, To (o), C(o), CA, ...
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Amer analytic functions Bergman spaces bounded class of functions close-to-convex completes the proof complex plane convex functions convex sets Corollary defined denote the class Department of Mathematics derivative differential equation domains of univalence entire function euclidean extremal functions Fatou set Fractional Calculus function f(z functions with negative given H. M. Srivastava half-plane Hence holomorphic functions hyperbolic hypergeometric functions implies integral operator Julia set Lemma Little Picard Theorem locally schlicht logharmonic mapping Math meromorphic functions normal Nunokawa obtain p-valently starlike P. T. Mocanu problem Proc proof of Theorem properties radius Re(z real number Remark Rep(z result is sharp Ruscheweyh Saigo sharp for functions spherical linear invariance spherically convex starlike and convex starlike functions strictly increasing subclass Suppose TA(o unit disk Univ univalence for F(K univalent functions zero divisor zero set