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seyed-fakhari--s--a
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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
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| 1 | مقاله | On the h-vector of a simplicial complex with Serre's condition | Goodarzi, A. | 2012 |
Primary.
Secondary. |
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| 2 | مقاله | Stanley depth of the integral closure of monomial ideals | Seyed Fakhari, S. A. | 2013 |
Integral closure.
Integrally closed ideal. Monomial ideal. Normal ideal. Stanley conjecture. Stanley depth. |
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| 3 | مقاله | The clique numbers of regular graphs of matrix algebras are finite | Akbari, S. | 2009 |
Clique number.
Matrix algebra. Regular graph. Clique number. Distinct elements. Positive integers. Regular graph. Regular graphs. Algebra. Graph theory. Matrix algebra. |
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| 4 | مقاله | Combinatorics comes to the rescue: H-vectors in commutative algebra | Chin, A. Y. M. | Springer New York LLC, | 2019 |
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| 5 | مقاله | Combinatorics comes to the rescue: h-vectors in commutative algebra | Chin, A. Y. M. | Springer New York LLC, | 2018 |
Ideal.
Hilbert function. Monomial ideals. |
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| 6 | مقاله | Cohen-Macaulayness and Limit Behavior of Depth for Powers of Cover Ideals | Constantinescu, A. | Taylor and Francis Inc, | 2015 |
Bracket power.
Cohen-Macaulay module. Cover ideal. Depth of a module. Symbolic power. |
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| 7 | مقاله | A glimpse to most of the old and new results on very well-covered graphs from the viewpoint of commutative algebra | Kimura, K. | Springer Science and Business Media Deutschland GmbH, | 2022 |
Betti number.
CM t property. Cohen–Macaulay graph. Cohen–Macaulay ring. Compression. Cover ideal. Depth. Edge ideal. Edge-weighted ideal. f-Vector. Flag complex. h-Vector. Height. Independence complex. Linear resolution. Local cohomology. Minimal free resolution. Projective dimension. Regularity. Shellability. Simplicial complex. Stanley–Reisner ideal. Symbolic power. Vertex-decomposability. Very well-covered graph. Well-covered graph. |
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| 8 | مقاله | On the size of graphs whose cycles have length divisible by a fixed integer | Akbari, S. | 2009 |
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| 9 | پایان نامه | بررسی اثر دما بر پارامترهای مختلف MOSFET و مدل سازی موبیلیتی حاملین در محدوده ی دمایی 77 تا 300 کلوین Investigation of Temperature Effect on MOSFET Parameters and Modeling of Carrier Mobility in Temperature Range of 77 - 300K | سید فخاری، معین Seyed Fakhari, Moein | صنعتی شریف | 1389 | فناوری مسفت Metal Semiconductor Field Effect Transistor (MESFET)Technology / ترانزیستورهای اثر میدان Field Effect Transistors / پراکندگی Scattering / تحرک پذیری Mobility / ولتاژ آستانه Threshold Voltage / الکترونیک دمای پایین Cryoelectronics |
05-41197
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| 10 | مقاله | Stanley depth of powers of the edge ideal of a forest | Pournaki, M. R. | 2013 |
Edge ideal.
Monomial ideal. Stanley conjecture. Stanley depth. |
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| 11 | مقاله | On the Stanley depth of weakly polymatroidal ideals | Pournaki, M. R. | 2013 |
Monomial ideal.
Polymatroidal ideal. Stanley conjecture. Stanley depth. |
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| 12 | مقاله | On the h-triangles of sequentially (S r) simplicial complexes via algebraic shifting | Pournaki, M. R. | 2013 |
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| 13 | مقاله | New Classes of Set-theoretic Complete Intersection Monomial Ideals | Pournaki, M. R. | Taylor and Francis Inc, | 2015 |
Arithmetical rank.
Lyubeznik resolution. s-Coloring. Set-theoretic complete intersection ideal. Simplicial complex. |
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| 14 | مقاله | Survey article: Simplicial complexes satisfying Serre's condition: A survey with some new results | Pournaki, M. R. | 2014 |
(Sr) simplicial complex.
Cohen-Macaulay simplicial complex. Sequentially (Sr) simplicial complex. Sequentially cohen-macaulay simplicial complex. Simplicial complex. |
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| 15 | مقاله | What is... Stanley depth? | Pournaki, M. R. | 2009 |
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| 16 | مقاله | High flux electrospun nanofiberous membrane: Preparation by statistical approach, characterization, and microfiltration assessment | Seyed Shahabadi, S. M. | Taiwan Institute of Chemical Engineers | 2016 |
Bead area density.
Electrospinning. Fibers. Membranes. Microfiltration. Nanofibers. Pore size. Porosity. Suspensions (fluids) Area density. Average fiber diameters. Central composite designs. Electrospinning parameters. Membrane compaction. Response surface methodology. Spinning distance. Statistical approach. Spinning (fibers) |
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| 17 | مقاله | High flux electrospun nanofiberous membrane: Preparation by statistical approach, characterization, and microfiltration assessment | Seyed Shahabadi, S. M. | Elsevier Doyma Mexico, | 2016 |
Average fiber diameter.
Bead area density. Electrospinning. Membrane. Microfiltration. Response surface methodology. |
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| 18 | مقاله | Study of the compaction behavior of composite powders under monotonic and cyclic loading | Tavakoli, A. H. | 2005 |
Aluminum.
Compaction. Compressibility of solids. Consolidation. Cyclic loads. Densification. Mechanical properties. Microstructure. Powders. Pressure effects. Reinforcement. Silicon carbide. Compaction behavior. Composite powders. Cycling loading. Monotonic loading. Pressure cycling. Composite materials. Powder. |
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| 19 | مقاله | Metrical theory for small linear forms and applications to interference alignment | Hussain, M. | Springer, | 2020 |
Approximation theory.
Numbering systems. Complex number. Diophantine approximation. Interference alignment. Metrical theory. Mixed type. Signal processing. |
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| 20 | مقاله | Mechanical induced reaction in Al-CuO system for in-situ fabrication of Al based nanocomposites | Arami, H. | 2008 |
Alloying.
Alumina. Aluminum. Argon. Copper. Copper oxides. Crystal growth. Crystallite size. Crystals. Dissolution. Grain boundaries. Inert gases. Light metals. Matrix algebra. Mechanical alloying. Metal casting. Metal recovery. Metallic matrix composites. Metallurgy. Metals. Milling (machining) Nanocomposites. Nanostructured materials. Optical design. Powder metals. Powders. Reinforcement. Smelting. Thermoanalysis. X ray analysis. X ray diffraction analysis. Argon atmospheres. Attrition milling. Average crystallite size. Chemical-. Differential-thermal analysis. Exothermic peaks. High energies. High-purity. In-situ. In-situ fabrication. Liquid-solid reactions. Metal matrix composites. Metal-matrix nanocomposites. Milled powders. Milling time. Nanometric. Nanometric alumina. Oxide particles. Reaction products. Reinforcement particles. Solid-state reactions. transmission electron microscopy (TEM) Ultrafine. Uniform size distribution. X-ray diffraction. In situ processing. |
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