Lindelöf-type theorems for quasiconformal and quasiregular mappings
Matti Vuorinen (1983)
Banach Center Publications
Alestalo, Pekka, Trotsenko, D.A., Väisälä, Jussi (2003)
Sibirskij Matematicheskij Zhurnal
Aouf, M.K. (1990)
Publications de l'Institut Mathématique. Nouvelle Série
G. Lakshma Reddy, K. S. Padmanabhan (1983)
Publications de l'Institut Mathématique
Indrajit Lahiri (2002)
Annales Polonici Mathematici
We prove a uniqueness theorem for meromorphic functions involving differential polynomials which improves some previous results and provides a better answer to a question of C. C. Yang.
Banerjee, Abhijit (2007)
Bulletin of the Malaysian Mathematical Sciences Society. Second Series
Lahiri, Indrajit (2003)
Applied Mathematics E-Notes [electronic only]
Koskela, P., Rogovin, S. (2005)
Annales Academiae Scientiarum Fennicae. Mathematica
Schäfer, Ingo, Kempfle, Siegmar, Nolte, Bodo (2005)
Fractional Calculus and Applied Analysis
Mathematics Subject Classification: 26A33, 47A60, 30C15.In this paper we treat the question of existence and uniqueness of solutions of linear fractional partial differential equations. Along examples we show that, due to the global definition of fractional derivatives, uniqueness is only sure in case of global initial conditions.
L. Bernal-González (2005)
Studia Mathematica
We prove the following result which extends in a somewhat "linear" sense a theorem by Kierst and Szpilrajn and which holds on many "natural" spaces of holomorphic functions in the open unit disk 𝔻: There exist a dense linear manifold and a closed infinite-dimensional linear manifold of holomorphic functions in 𝔻 whose domain of holomorphy is 𝔻 except for the null function. The existence of a dense linear manifold of noncontinuable functions is also shown in any domain for its full space of holomorphic...
Ghanim, Firas, Darus, Maslina (2009)
Acta Universitatis Apulensis. Mathematics - Informatics
Stephan Ruscheweyh (1977)
Commentarii mathematici Helvetici
Carl G. Wagner (1971)
Journal für die reine und angewandte Mathematik
F.E.A. Johnson (1994)
Collectanea Mathematica
SoYoung Choi, Chang Heon Kim (2015)
Open Mathematics
We find linear relations among the Fourier coefficients of modular forms for the group Г0+(p) of genus zero. As an application of these linear relations, we derive congruence relations satisfied by the Fourier coefficients of normalized Hecke eigenforms.
Abul-Ez, M.A., Constales, D. (1991)
Portugaliae mathematica
A. Attioui, A. Azhari (2001)
Extracta Mathematicae
Emmanuel Risler (1999)
Mémoires de la Société Mathématique de France
Timoteo Carletti, Stefano. Marmi (2000)
Bulletin de la Société Mathématique de France
Janusz Godula, Victor Starkov (1996)
Banach Center Publications
In this paper we extend the definition of the linearly invariant family and the definition of the universal linearly invariant family to higher dimensional case. We characterize these classes and give some of their properties. We also give a relationship of these families with the Bloch space.