@article{ author = {Arulprakasam, R. and Dare, V. R. and Gnanasekara, S.}, title = {Deterministic Fuzzy Automaton on Subclasses of Fuzzy Regular ω-Languages}, abstract ={In formal language theory, we are mainly interested in the natural language computational aspects of ω-languages. Therefore in this respect it is convenient to consider fuzzy ω-languages. In this paper, we introduce two subclasses of fuzzy regular ω-languages called fuzzy n-local ω-languages and Buchi fuzzy n-local ω-languages, and give some closure properties for those subclasses. We define a deterministic fuzzy automaton acceptance conditions on fuzzy ω-languages and fuzzy n-local automaton. The relationship between deterministic fuzzy n-local automaton and two subclasses of fuzzy regular ω-languages are established and proved that every fuzzy ω-language accepted by a deterministic fuzzy automaton in 2-mode is a projection of a Buchi fuzzy 2-local ω-language.}, Keywords = {Fuzzy set, Local ω-language, Deterministic fuzzy automaton, Fuzzy regular ω-languages.}, volume = {14}, Number = {1}, pages = {1-11}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-565-en.html}, eprint = {http://ijmsi.ir/article-1-565-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Gupta, S. and Narang, T.}, title = {Best Coapproximation in Quotient Spaces}, abstract ={As a counterpart to best approximation, a new kind of approximation, called best coapproximation was introduced in normed linear spaces by C. Franchetti and M. Furi. In this paper, we use this coapproximation to prove some results on the existence and uniqueness of best coapproximation in quotient spaces when the underlying spaces are metric linear spaces. We shall also see how coproximinality can be transmitted to and from quotient spaces.}, Keywords = {Best coapproximation, co-Proximinal set, co-Chebyshev set, Boundedly compact set, Pseudo co-Chebyshev set.}, volume = {14}, Number = {1}, pages = {13-20}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-652-en.html}, eprint = {http://ijmsi.ir/article-1-652-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Bardestani, F. and Adhami, S. R.}, title = {Isotropic Constant Dimension Subspace Codes}, abstract ={ In network code setting, a constant dimension code is a set of k-dimensional subspaces of F nq . If F_q n is a nondegenerated symlectic vector space with bilinear form f, an isotropic subspace U of F^n_q is a subspace that for all x, y ∈ U, f(x, y) = 0. We introduce isotropic subspace codes simply as a set of isotropic subspaces and show how the isotropic property use in decoding process, then we show that for suitable parameters there are isotropic spread codes.}, Keywords = {Isotropic subspace, Constant dimension subspace code, Spread Codes.}, volume = {14}, Number = {1}, pages = {21-34}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-849-en.html}, eprint = {http://ijmsi.ir/article-1-849-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Ramezani, F. and Vatandoost, E.}, title = {Domination and Signed Domination Number of Cayley Graphs}, abstract ={In this paper, we investigate domination number as well as signed domination numbers of Cay(G : S) for all cyclic group G of order n, where n in {p^m; pq} and S = { a^i : i in B(1; n)}. We also introduce some families of connected regular graphs gamma such that gamma_S(Gamma) in {2,3,4,5 }.}, Keywords = {Cayley graph, cyclic group, Domination number, Signed domination number.}, volume = {14}, Number = {1}, pages = {35-42}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-881-en.html}, eprint = {http://ijmsi.ir/article-1-881-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Molabahrami, A.}, title = {A Modified Degenerate Kernel Method for the System of Fredholm Integral Equations of the Second Kind}, abstract ={In this paper, the system of Fredholm integral equations of the second kind is investigated by using a modified degenerate kernel  method (MDKM). To construct a MDKM the source function is approximated by the same way of producing degenerate kernel. The interpolation is used to make the needed approximations. Lagrange polynomials are adopted for the interpolation. The equivalency of  proposed method and  Lagrange-collocation method is shown. The error and convergence of the algorithm are given strictly. The efficiency of the approach will be shown by applying the procedure on some prototype examples.}, Keywords = {A System of Fredholm Integral Equations of the Second Kind, Degenerate Kernel Method, A Modified Degenerate Kernel Method, Lagrange Interpolation Method, Lagrange-Collocation Method.}, volume = {14}, Number = {1}, pages = {43-53}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-882-en.html}, eprint = {http://ijmsi.ir/article-1-882-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {RezaeiAliabad, A. and parsinia, M.}, title = {z_R-Ideals and z^0_R-Ideals in Subrings of R^X}, abstract ={Let X be a topological space and R be a subring of RX. By determining some special topologies on X associated with the subring R, characterizations of maximal fixxed and maximal growing ideals in R of the form Mx(R) are given. Moreover, the classes of zR-ideals and z0R-ideals are introduced in R which are topological generalizations of z-ideals and z0-ideals of C(X), respectively. Various characterizations of these ideals are established, also, coincidence of zR-ideals with z-ideals and zR-ideals with z-ideals in R are investigated. It turns out that some fundamental statements in the context of C(X) are extended to the subrings of RX}, Keywords = {Z(R)-topology, Coz(R)-topology, Growing ideal, z_R- ideal, z^0_R-ideal, Invertible subring.}, volume = {14}, Number = {1}, pages = {55-67}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-896-en.html}, eprint = {http://ijmsi.ir/article-1-896-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Mahjoob, R. and Vougioklis, T.}, title = {On the Lie-Santilli Admissibility}, abstract ={The largest class of hyperstructures is the one which satisfies the  weak properties. We connect the theory of P-hopes, a large class of  hyperoperations, with the Lie-Santilli admissibility used in  Hardonic Mechanics. This can be achieved by a kind of Ree,  sandwich hyperoperation.}, Keywords = {H_v-structures, Hopes.}, volume = {14}, Number = {1}, pages = {69-79}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-908-en.html}, eprint = {http://ijmsi.ir/article-1-908-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Rostami, E. and Nekooei, R.}, title = {Computation of Minimum Hamming Weight for Linear Codes}, abstract ={In this paper, we consider the minimum Hamming weight for linear codes over special finite quasi-Frobenius rings. Furthermore, we obtain minimal free $R$-submodules of a finite quasi-Frobenius ring $R$  which contain a linear code and derive the relation between their minimum Hamming weights. Finally, we suggest an algorithm that computes this weight using the Grobner basis and we show that under certain conditions a linear code takes the maximum of minimum Hamming weight.}, Keywords = {Algebraic coding theory, Linear codes, Quasi-Frobenius rings, Grobner basis, SPAP-rings.}, volume = {14}, Number = {1}, pages = {81-93}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-944-en.html}, eprint = {http://ijmsi.ir/article-1-944-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {ElMoumni, M.}, title = {Renormalized Solutions for Strongly Nonlinear Elliptic Problems with Lower Order Terms and Measure Data in Orlicz-Sobolev Spaces}, abstract ={The purpose of this paper is to prove the existence of a renormalized solution of perturbed elliptic problems$ -operatorname{div}Big(a(x,u,nabla u)+Phi(u) Big)+ g(x,u,nabla u) = mumbox{ in }Omega,  $ in the framework of Orlicz-Sobolev spaces without any restriction on the $M$ N-function of the Orlicz spaces, where $-operatorname{div}Big(a(x,u,nabla u)Big)$ is a Leray-Lions operator defined from $W^{1}_{0}L_{M}(Omega)$ into its dual, $Phi in C^{0}(mathbb{R},mathbb{R}^{N})$. The function $g(x,u,nabla u)$ is a non linear lower  order term with natural growth with respect to $|nabla u|$, satisfying the sign condition and the  datum $mu$ is assumed belong to $L^1(Omega)+W^{-1}E_{overline{M}}(Omega)$.}, Keywords = {Elliptic equation, Orlicz-Sobolev spaces, Renormalized solution.}, volume = {14}, Number = {1}, pages = {95-119}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-936-en.html}, eprint = {http://ijmsi.ir/article-1-936-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Ramezani, M. and Baghani, H.}, title = {On the 2-Adjointable Operators and Superstability of Them Between 2-Pre Hilbert $C^*$-module Spaces}, abstract ={In this paper, first, we introduce the new concept of 2-inner product on Banach modules over a $C^*$-algebra. Next,  we present the concept of 2-linear operators over a $C^*$-algebra. Our result improve  the main result of the paper  Z. Lewandowska.  In the final of this paper, we define the notions 2-adjointable mappings between 2-pre Hilbert C*-modules and prove supperstability of them in the spirit of Hyers-Ulam-Rassias.}, Keywords = {$C^*$-algebra , 2-Adjointable mapping, Supperstability.}, volume = {14}, Number = {1}, pages = {121-126}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-945-en.html}, eprint = {http://ijmsi.ir/article-1-945-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Tehranian, A. and Moghimipor, R.}, title = {Linear Resolutions of Powers of Generalized Mixed Product Ideals}, abstract ={Let L be the generalized mixed product ideal induced by a monomial ideal I. In this paper we compute powers of the genearlized mixed product ideals and show that Lk  have a linear resolution if and only if Ik have a linear resolution for all k. We also introduce the generalized mixed polymatroidal ideals and prove that powers and monomial localizations of a generalized mixed polymatroidal ideal is again generalized mixed polymatroidal ideal.}, Keywords = {Free resolutoins, Graded betti numbers, Monomial ideals.}, volume = {14}, Number = {1}, pages = {127-134}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-946-en.html}, eprint = {http://ijmsi.ir/article-1-946-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Mousavi, H. and Mohammadi, R. and Rahimi, S.}, title = {On Skew Cyclic Codes over a Finite Ring}, abstract ={In this paper, we classify the skew cyclic codes over Fp + vF_p + v^2F_p, where p is a prime number and v^3 = v. Each skew cyclic code is a F_p+vF_p+v^2F_p-submodule of the (F_p+vF_p+v^2F_p)[x;alpha], where v^3 = v and alpha(v) = -v. Also, we give an explicit forms for the generator of these codes. Moreover, an algorithm of encoding and decoding for these codes is presented.}, Keywords = {Skew Cycilc Codes, Skew Polynomial Rings, Hamming Distance.}, volume = {14}, Number = {1}, pages = {135-145}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-954-en.html}, eprint = {http://ijmsi.ir/article-1-954-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Babaei, S. and Payrovi, Sh. and SengelenSevim, E.}, title = {A Submodule-Based Zero Divisors Graph for Modules}, abstract ={‎Let $R$ be commutative ring with identity and $M$ be an $R$-module‎. ‎The zero divisor graph of $M$ is denoted $Gamma{(M)}$‎. ‎In this study‎, ‎we are going to generalize the zero divisor graph $Gamma(M)$ to submodule-based zero divisor graph $Gamma(M‎, ‎N)$ by replacing elements whose product is zero with elements whose product is in some submodules $N$ of $M$‎. ‎The main objective of this paper is to study the interplay of the properties of submodule $N$ and‎ ‎the properties of $Gamma(M‎, ‎N)$‎.}, Keywords = {Zero-divisor graph‎, ‎Submodule-based zero-divisor graph‎,‎ Semi simple module.}, volume = {14}, Number = {1}, pages = {147-157}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-956-en.html}, eprint = {http://ijmsi.ir/article-1-956-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Modak, Sh. and Noiri, T.}, title = {Some Generalizations of Locally Closed Sets}, abstract ={Arenas et al. [1] introduced the notion of lambda-closed sets as a generalization of locally closed sets. In this paper, we introduce the notions of lambda locally closed sets, Lambda_lambda closed sets and lambda_g-closed sets and obtain some decompositions of closed sets and continuity in topological spaces.}, Keywords = {Lambda-open set, Lambda-locally closed set, Lambda_lambda-closed set, Lambda_g-closed set, Decompositions of continuity.}, volume = {14}, Number = {1}, pages = {159-165}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-983-en.html}, eprint = {http://ijmsi.ir/article-1-983-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Fukhar-ud-din, H.}, title = {Iterative Process for an α- Nonexpansive Mapping and a Mapping Satisfying Condition(C) in a Convex Metric Space}, abstract ={We construct one-step iterative process for an α- nonexpansive mapping and a mapping satisfying condition (C) in the framework of a convex metric space. We study -convergence and strong convergence of the iterative process to the common fixed point of the mappings. Our results are new and are valid in hyperbolic spaces, CAT(0) spaces, Banach spaces and Hilbert spaces, simultaneously.}, Keywords = {Convex metric space, α-Nonexpansive mapping, Condition(C), Common fixed point, One-step iterative process, Convergence.}, volume = {14}, Number = {1}, pages = {167-179}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-985-en.html}, eprint = {http://ijmsi.ir/article-1-985-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {InThisVolume, The Name of Authors}, title = {ABSTRACTS IN PERSIAN Vol.14, No.1}, abstract ={Please see the full text contains the Pesian abstracts for this volume.}, Keywords = {ABSTRACTS, PERSIAN, Vol. 14, No. 1}, volume = {14}, Number = {1}, pages = {181-196}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-1685-en.html}, eprint = {http://ijmsi.ir/article-1-1685-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Abu-dawwas, R. and Bataineh, M.}, title = {Graded r-Ideals}, abstract ={Let $G$ be a group with identity $e$ and $R$ be a commutative $G$-graded ring with nonzero unity $1$. In this article, we introduce the concept of graded $r$-ideals. A proper graded ideal $P$ of a graded ring $R$ is said to be graded $r$-ideal if whenever $a, bin h(R)$ such that $abin P$ and $Ann(a)={0}$, then $bin P$. We study and investigate the behavior of graded $r$-ideals to introduce  several results. We introduced several characterizations for graded $r$-ideals;  we proved that $P$ is a graded $r$-ideal of $R$ if and only if $aP=aRbigcap P$  for all $ain h(R)$ with $Ann(a)={0}$. Also, $P$ is a graded $r$-ideal of $R$  if and only if $P=(P:a)$ for all $ain h(R)$ with $Ann(a)={0}$. Moreover,  $P$ is a graded $r$-ideal of $R$ if and only if whenever $A, B$ are graded ideals of   $R$ such that $ABsubseteq P$ and $Abigcap r(h(R))neqphi$, then $Bsubseteq P$. In this article, we introduce the concept of $huz$-rings. A graded ring $R$ is said to be $huz$-ring if every homogeneous element of $R$ is either a zero divisor or a unit. In fact, we proved that $R$ is a $huz$-ring if and only if every graded ideal of $R$ is a graded $r$-ideal. Moreover, assuming that $R$ is a graded domain, we proved that ${0}$ is the only graded $r$-ideal of $R$.}, Keywords = {Graded prime ideals, Graded r-ideals.}, volume = {14}, Number = {2}, pages = {1-8}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-984-en.html}, eprint = {http://ijmsi.ir/article-1-984-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {P., S.}, title = {Hereditarily Homogeneous Generalized Topological Spaces}, abstract ={In this paper we study hereditarily homogeneous generalized topological spaces. Various properties of hereditarily homogeneous generalized topological spaces are discussed. We prove that a generalized topological space is hereditarily homogeneous if and only if every transposition of $X$ is a $mu$-homeomorphism on $X$.}, Keywords = {$mu$-Open, $mu$-Closed, Generalized topology, Homogeneous, Hereditarily homogeneous GTS, Highly transitive permutation groups, Bihomogeneous}, volume = {14}, Number = {2}, pages = {9-18}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-964-en.html}, eprint = {http://ijmsi.ir/article-1-964-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Nikbakhtsarvestani, F. and Vaezpour, S. M. and Asadi, M.}, title = {Common Fixed Point Theorems for Weakly Compatible Mappings by (CLR) Property on Partial Metric Space}, abstract ={The purpose of this paper is to obtain the common fixed point results for two pair of weakly compatible mapping by using common (CLR) property in partial metric space. Also we extend the very recent results which are presented in [17,  Muhammad Sarwar, Mian Bahadur Zada and Inci M. Erhan, Common Fixed Point Theorems of Integral type on Metric Spaces and application to system of functional equations, Fixed point theory and applications, 2015, 2015:217] with proofing a new version of the continuity of partial metric.}, Keywords = {Fixed point, Partial metric space, (CLR)-Property.}, volume = {14}, Number = {2}, pages = {19-32}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-970-en.html}, eprint = {http://ijmsi.ir/article-1-970-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Sadeghi, A. and Saraj, M. and MahdaviAmiri, N.}, title = {Solving A Fractional Program with Second Order Cone Constraint}, abstract ={We consider a fractional program with both linear and quadratic equation in numerator and denominator  having second order cone (SOC) constraints. With a suitable change of variable, we transform the problem into a  second order cone programming (SOCP)  problem.  For the quadratic fractional case, using a relaxation, the problem is reduced to a semi-definite optimization (SDO) program. The problem is solved with SDO relaxation and the obtained results are compared with the interior point method (IPM), a sequential quadratic programming (SQP) approach, an active set strategy and a genetic algorithm. It is observed that the SDO relaxation method is much more accurate and faster than the other methods. Finally,a few numerical examples are worked through to demonstrate the applicability of the procedure.}, Keywords = {Fractional Programming, Second Order Cone, SDP Relaxation.}, volume = {14}, Number = {2}, pages = {33-42}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-1314-en.html}, eprint = {http://ijmsi.ir/article-1-1314-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Khan, A. and Sharma, V.}, title = {Approximation by $(p,q)$-Lupac{s} Stancu Operators}, abstract ={In this paper, $(p,q)$-Lupas Bernstein Stancu operators are constructed. Statistical as well as other approximation properties of $(p,q)$-Lupac{s} Stancu operators are studied. Rate of statistical convergence by means of modulus of continuity and Lipschitz type maximal functions has been investigated.}, Keywords = {$(p,q)$-Integers, Lupac{s} $(p,q)$-Bernstein Stancu operators, Statistical approximation, Korovkin's type approximation.}, volume = {14}, Number = {2}, pages = {43-60}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-1012-en.html}, eprint = {http://ijmsi.ir/article-1-1012-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Mortazavizadeh, M. and RaisiTousi, R. and KamyabiGol, R. A.}, title = {On a Metric on Translation Invariant Spaces}, abstract ={In this paper we de ne a metric on the collection of all translation invarinat spaces on a locally compact abelian group and we study some properties of the metric space.}, Keywords = {Locally compact abelian group, Translation invariant space, , Translation metric.}, volume = {14}, Number = {2}, pages = {61-67}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-994-en.html}, eprint = {http://ijmsi.ir/article-1-994-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Hosseini, R. and ‎Jahanshahi, M. and Pashavand, A.A. and Aliev, N.}, title = {The Study ‎of ‎S‎ome Boundary Value Problems Including Fractional ‎Partial ‎Differential‎ Equations with non-Local Boundary Conditions}, abstract ={In this paper, we consider some boundary value problems (BVP) for fractional order partial differential equations ‎(FPDE)‎ with non-local boundary conditions. The solutions of these problems are presented as series solutions analytically via modified Mittag-Leffler functions. These functions have been modified by authors such that their derivatives are invariant with respect to fractional derivative. The peresented solutions for these problems are as infinite series. ‎Convergence‎ of series solutions and uniqueness of them are stablished by general theory of mathematical analysis and theory of ODEs.}, Keywords = {Mittag-Lefller function‎, Fractional partial differential equation‎, Non local boundary condition.}, volume = {14}, Number = {2}, pages = {69-77}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-1040-en.html}, eprint = {http://ijmsi.ir/article-1-1040-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Gao, Zh.-B. and Han, R.-Y. and Lee, S.-M. and Ren, H.-N. and Lau, G.-Ch.}, title = {Labeling Subgraph Embeddings and Cordiality of Graphs}, abstract ={Let $G$ be a graph with vertex set $V(G)$ and edge set $E(G)$, a vertex labeling $f : V(G)rightarrow mathbb{Z}_2$ induces an edge labeling $ f^{+} : E(G)rightarrow mathbb{Z}_2$ defined by $f^{+}(xy) = f(x) + f(y)$, for each edge $ xyin E(G)$.  For each $i in mathbb{Z}_2$, let $ v_{f}(i)=|{u in V(G) : f(u) = i}|$ and $e_{f^+}(i)=|{xyin E(G) : f^{+}(xy) = i}|$. A vertex labeling $f$ of a graph $G$ is said to be friendly if $| v_{f}(1)-v_{f}(0) | leq 1$. The friendly index set of the graph $G$, denoted by $FI(G)$, is defined as  ${|e_{f^+}(1) - e_{f^+}(0)|$ : the vertex labeling $f$ is friendly$}$. The full friendly index set of the graph $G$, denoted by $FFI(G)$, is defined as ${e_{f^+}(1) - e_{f^+}(0)$ : the vertex labeling $f$ is friendly$}$. A graph $G$ is cordial if $-1, 0$ or $1in FFI(G)$. In this paper, by introducing labeling subgraph embeddings method, we determine the cordiality of a family of cubic graphs which are double-edge blow-up of $P_2times P_n, nge 2$. Consequently, we completely determined friendly index and full product cordial index sets of this family of graphs.}, Keywords = {Vertex labeling, Full friendly index set, Cordiality, $P_2$-embeddings, $C_4$-embeddings.}, volume = {14}, Number = {2}, pages = {79-92}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-925-en.html}, eprint = {http://ijmsi.ir/article-1-925-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Firuzi, F. and AlipourFakhri, Y. and Peyghan, E.}, title = {Local Symmetry of Unit Tangent Sphere Bundle With g- Natural Almost Contact B-Metric Structure}, abstract ={We consider the unit tangent sphere bundle of Riemannian manifold ( M, g ) with g-natural metric G̃ and we equip it to an almost contact B-metric structure. Considering this structure, we show that there is a direct correlation between the Riemannian curvature tensor of ( M, g ) and local symmetry property of G̃. More precisely, we prove that the flatness of metric g is necessary and sufficient for the g-natural metric G̃ to be locally symmetric.}, Keywords = {Almost contact structure, B-metrics, g-natural metrics, Local symmetry, Sphere bundle.}, volume = {14}, Number = {2}, pages = {93-104}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-1014-en.html}, eprint = {http://ijmsi.ir/article-1-1014-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Ramane, H. S. and Gudodagi, G. A. and Manjalapur, V. V. and Alhevaz, A.}, title = {On Complementary Distance Signless Laplacian Spectral Radius and Energy of Graphs}, abstract ={Let $D$ be a diameter and $d_G(v_i, v_j)$ be the distance between the vertices $v_i$ and $v_j$ of a connected graph $G$. The complementary distance signless Laplacian matrix of a graph $G$ is $CDL^+(G)=[c_{ij}]$ in which $c_{ij}=1+D-d_G(v_i, v_j)$ if $ineq j$ and $c_{ii}=sum_{j=1}^{n}(1+D-d_G(v_i, v_j))$. The complementary transmission $CT_G(v)$ of a vertex $v$ is defined as $CT_G(v)=sum_{u in V(G)}[1+D-d_G(u, v)]$. Let $CT(G)=diag[CT_G(v_1), CT_G(v_2), ldots, CT_G(v_n)]$. The complementary distance signless Laplacian matrix of $G$ is $CDL^+(G)=CT(G)+CD(G)$. If $rho_1, rho_2, ldots, rho_n$ are the eigenvalues of $CDL^+(G)$ then the complementary distance signless Laplacian energy of $G$ is defined as $E_{CDL^+}(G)=sum_{i=1}^{n}left| rho_i-frac{1}{n}sum_{j=1}^{n}CT_G(v_j)right|$. noindent In this paper we obtain the bounds for the largest eigenvalue of $CDL^+(G)$. Further we determine Nordhaus-Gaddum type results for the largest eigenvalue. In the sequel we establish the bounds for the complementary distance signless Laplacian energy.}}, Keywords = {Complementary distance matrix, Complementary distance signless Laplacian eigenvalues, Complementary distance signless Laplacian energy, Diameter.}, volume = {14}, Number = {2}, pages = {105-125}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-1017-en.html}, eprint = {http://ijmsi.ir/article-1-1017-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Daskalov, R. and Metodieva, E.}, title = {Bounds on $m_r(2,29)$}, abstract ={ An $(n, r)$-arc is a set of $n$ points of a projective plane such that some $r$, but no $r+1$ of them, are collinear. The maximum size of an $(n, r)$-arc in  PG(2, q) is denoted by $m_r(2,q)$. In this paper thirteen new $(n, r)$-arc in  PG(2,,29) and a table with the best known lower and upper bounds on $m_r(2,29)$ are presented. The results are obtained by non-exhaustive local computer search.}, Keywords = {Finite projective plane, $(n,r)$-Arc in a projective plane, $(l,t)$-Blocking set in a projective plane, Maximum size of an $(n,r)$-arc}, volume = {14}, Number = {2}, pages = {127-138}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-1020-en.html}, eprint = {http://ijmsi.ir/article-1-1020-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Amini, M. and Hassani, F.}, title = {Copresented Dimension of Modules}, abstract ={ In this paper, a new homological dimension of modules, copresented dimension, is defined. We study some basic properties of this homological dimension. Some ring extensions are considered, too. For instance, we prove that if $Sgeq R$ is a finite normalizing extension and $S_R$ is a projective module, then for each right $S$-module $M_S$, the copresented dimension of $M_S$ does not exceed the copresented dimension of $Hom_{R}(S,M)$.}, Keywords = {Coherent ring‎, ‎Copresented‎, ‎Dimension‎, ‎Projective module.}, volume = {14}, Number = {2}, pages = {139-151}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-1036-en.html}, eprint = {http://ijmsi.ir/article-1-1036-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Safa, H.}, title = {A Bound for the Nilpotency Class of a Lie Algebra}, abstract ={In the present paper, we prove that if L is a nilpotent Lie algebra whose proper subalge- bras are all nilpotent of class at most n, then the class of L is at most bnd=(d 􀀀 1)c, where b c denotes the integral part and d is the minimal number of generators of L.}, Keywords = {Minimal number of generators, Nilpotency class, Nilpotent Lie algebra.}, volume = {14}, Number = {2}, pages = {153-156}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-1037-en.html}, eprint = {http://ijmsi.ir/article-1-1037-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Rastegar, A.}, title = {Arithmetic Teichmuller Theory}, abstract ={By Grothedieck's Anabelian conjectures, Galois representations landing in outer automorphism group of the algebraic fundamental group which are associated to hyperbolic smooth curves defined over number fields encode all arithmetic information of these curves. The goal of this paper is to develope and arithmetic teichmuller theory, by which we mean, introducing arithmetic objects summarizing the arithmetic information coming from all curves of the same topological type defined over number fields. We also introduce Hecke-Teichmuller Lie algebra which plays the role of Hecke algebra in the anabelian framework.}, Keywords = {Anabelian geometry, Grothendieck conjectures, Huperbolic curves, Outer automorphism, Galois representation.}, volume = {14}, Number = {2}, pages = {157-171}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-992-en.html}, eprint = {http://ijmsi.ir/article-1-992-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {Kok, J. and Germina, K. A.}, title = {Chromatic Harmonic Indices and Chromatic Harmonic Polynomials of Certain Graphs}, abstract ={In the main this paper introduces the concept of chromatic harmonic polynomials denoted, $H^chi(G,x)$ and chromatic harmonic indices denoted, $H^chi(G)$ of a graph $G$. The new concept is then applied to finding explicit formula for the minimum (maximum) chromatic harmonic polynomials and the minimum (maximum) chromatic harmonic index of certain graphs. It is also applied to split graphs and certain derivative split graphs. }, Keywords = {Chromatic harmonic index, Chromatic harmonic polynomial, Split graph, Derivative split graph}, volume = {14}, Number = {2}, pages = {173-184}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-1007-en.html}, eprint = {http://ijmsi.ir/article-1-1007-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} } @article{ author = {InThisVolume, The Name of Authors}, title = {ABSTRACTS IN PERSIAN Vol.14, No.2}, abstract ={Please see the full text contains the Pesian abstracts for this volume.}, Keywords = {ABSTRACTS, PERSIAN, Vol. 14, No. 2}, volume = {14}, Number = {2}, pages = {185-200}, publisher = {ACECR at Tarbiat Modares University}, url = {http://ijmsi.ir/article-1-1918-en.html}, eprint = {http://ijmsi.ir/article-1-1918-en.pdf}, journal = {Iranian Journal of Mathematical Sciences and Informatics}, issn = {1735-4463}, eissn = {2008-9473}, year = {2019} }