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Sobolev Spaces
Sobolev spaces play an outstanding role in modern analysis, in particular, in the theory of partial differential equations and its applications in mathematical physics. They form …
The Maz’ya Anniversary Collection
During the week of August 31 - September 4, 1998, a conference in honour of Vladimir Maz'ya was held in Rostock as a satellite meeting of the World Congress of Mathematicians. It …
Mazya Aayushyaat Aalelya Striya Ani Purush
Mrutyu Mazya Umbarthyashi
Differential Equations with Operator Coefficients
The first systematic, self-contained presentation of a theory of arbitrary order ODEs with unbounded operator coefficients in a Hilbert or Banach space. Developed over the last 10 …
Recent Trends in Operator Theory and Partial Differential Equations
This volume is dedicated to the eminent Georgian mathematician Roland Duduchava on the occasion of his 70th birthday. It presents recent results on Toeplitz, Wiener-Hopf, and …
Asymptotic Analysis of Fields in Multi-structures
The asymptotic analysis of boundary value problems in parameter-dependent domains is a rapidly developing field of research in the theory of partial differential equations, with …
Sobolev Spaces
Sobolev spaces play an outstanding role in modern analysis, in particular, in the theory of partial differential equations and its applications in mathematical physics. They form …
Sobolev Spaces
The Sobolev spaces, i. e. the classes of functions with derivatives in L , occupy p an outstanding place in analysis. During the last two decades a substantial contribution to the …
Sobolev Spaces
Sobolev spaces play an outstanding role in modern analysis, in particular, in the theory of partial differential equations and its applications in mathematical physics. They form …
Differential Equations of My Young Years
Vladimir Maz'ya (born 1937) is an outstanding mathematician who systematically made fundamental contributions to a wide array of areas in mathematical analysis and in the theory of …
Sobolev Spaces in Mathematics I
0 such that wheneverB(x,r)= {y?X :d(x,y)