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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
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| 1 | مقاله | Numerical study of aero- acoustic characteristics in an automotive air-intake system | Jahani, K. | OAL-Osterreichischer Arbeitsring fur Larmbekampfung, | 2013 |
Air- intake system.
Computational aero- Acoustic. Detached eddy simulation. Acoustic fields. Acoustic variables control. Aeroacoustics. Air intakes. Computational fluid dynamics. Geometry. Noise abatement. Resonators. Acoustic characteristic. Air induction systems. Computational analysis. Computational fluid dynamics simulations. Customer expectation. Detached eddy simulations. Geometrical features. Pressure fluctuation. Acoustic noise. |
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| 2 | مقاله | Automatic identification of overlapping/touching chromosomes in microscopic images using morphological operators | Jahani, S. | 2011 |
Automatic identification.
Data sets. Effective algorithms. Genetic disorders. Human chromosomes. Image objects. Karyotyping. Microscopic image. Milan , Italy. Morphological operator. Non-rigid. Overlapping. Tehran , Iran. Touching. Automation. Chromosomes. Computer vision. Data processing. Clustering algorithms. |
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| 3 | مقاله | Panel contribution analysis for a sedan car using numerical simulations | Jahani, K. | International Institute of Acoustics and Vibrations, | 2013 |
Acoustic fields.
Computer simulation. Modal analysis. Tools. Acoustic cavities. Body structure. Booming noise. Interior noise. Low frequency range. Noise transfer function. Panel contribution analysis. Vehicle development. Acoustic noise. |
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| 4 | مقاله | Highly regioselective, base-catalyzed, biginelli-type reaction of aldehyde, phenylacetone and urea/thiourea kinetic vs. thermodynamic control | Nematpour, M. | 2017 |
3,4-Dihydropyrimidin-2(1H)-one.
Biginelli- type. Kinetic-thermodynamic. Lithium N,N-diisopropylamide. Phenylacetone. Urea/thiourea. |
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| 5 | مقاله | A copper-catalyzed synthesis of functionalized quinazolines from isocyanides and aniline tri- and dichloroacetonitrile adducts through intramolecular C-H activation | Nematpour, M. | 2017 |
C-H activation.
Copper catalysis. Dichloroacetonitrile. Isocyanides. Quinazolines. Trichloroacetonitrile. Carbon. Chloroacetonitrile. Copper. Dichloroacetonitrile. Hydrogen. Isocyanide derivative. Organic compound. Proline. Quinazoline derivative. Unclassified drug. Catalysis. Chemical interaction. Chemical structure. Clinical protocol. Concentration (parameters) One pot synthesis. Purification. Reaction optimization. Room temperature. Solvent effect. Structure analysis. Tautomerization. |
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| 6 | مقاله | Synthesis of functionalized benzothiadiazine 1,1-dioxide derivatives via intramolecular C–H activation reactions of trichloroacetamidine and benzenesulfonyl chloride | Nematpour, M. | Elsevier Ltd, | 2018 |
Benzenesulfonyl chloride.
Benzothiadiazine 1,1-dioxide. Copper-catalyzed. C–H activation. Primary amine. Trichloroacetonitrile. Acetamidine derivative. Acetonitrile. Amine. Benzene derivative. Benzenesulfonyl chloride derivative. Benzothiadiazine 1,1 dioxide derivative. Benzothiadiazine derivative. Copper derivative. Proline. Trichloroacetamidine derivative. Unclassified drug. Article. Carbon hydrogen activation reaction. Carbon nuclear magnetic resonance. Catalyst. Chemical reaction. Heteronuclear multiple bond correlation. Infrared spectroscopy. Mass spectrometry. One pot synthesis. Proton nuclear magnetic resonance. Reaction analysis. Reaction optimization. Room temperature. |
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| 7 | مقاله | Novel one-pot synthesis of functionalized quinolines from isocyanides, aniline, and acetylene dicarboxylate via cu-catalyzed intramolecular C─H activation reactions | Nematpour, M. | HeteroCorporation, | 2019 |
Acetylene dicarboxylate.
Aniline. Carbon. Copper. Cyanide. Di tert butyl 6 chloro 4 [(4 chlorophenyl)amino]quinoline 2,3 dicarboxylate. Di tert butyl 6 methyl 4 (phenylamino)quinoline 2,3 dicarboxylate. Dicarboxylic acid derivative. Diethyl 4 (tert butylamino)quinoline 2,3 dicarboxylate. Diethyl 4 [(4 bromophenyl)amino] 6 methylquinoline 2,3 dicarboxylate. Diethyl 6 bromo 4 (phenylamino)quinoline 2,3 dicarboxylate. Dimethyl 4 (cyclohexylamino) 6 methylquinoline 2,3 dicarboxylate. Dimethyl 4 (cyclohexylamino) 6 nitroquinoline 2,3 dicarboxylate. Dimethyl 4 (phenylamino)quinoline 2,3 dicarboxylate. Dimethyl 4 (tert butylamino)quinoline 2,3 dicarboxylate. Dimethyl 4 [(4 bromophenyl)amino]quinoline 2,3 dicarboxylate. Dimethyl 4 [(4 nitrophenyl)amino]quinoline 2,3 dicarboxylate. Hydrogen. Isocyanide. Quinoline derivative. Unclassified drug. Carbon nuclear magnetic resonance. Catalysis. Chemical modification. Chemical reaction. Column chromatography. Drug structure. Drug synthesis. Dlectron impact mass spectrometry. Dlemental analysis. Infrared spectroscopy. Intramolecular activation reaction. One pot synthesis. Physical chemistry. Proton nuclear magnetic resonance. Rreaction analysis. Room temperature. |
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| 8 | مقاله | Ultrasound-assisted synthesis of highly functionalized benzo[1,3]thiazine via Cu-catalyzed intramolecular C–H activation reaction from isocyanides, aniline-benzoyl(acetyl) isothiocyanate adduct | Nematpour, M. | Elsevier B.V, | 2019 |
Aniline.
Benzo[1,3]thiazine. Cu-catalyzed. C–H activation. Isocyanides. Isothiocyanate. Ultrasound-assisted. Acetone. Catalysis. Chemical activation. Column chromatography. Cyanides. Ultrasonics. Catalytic reactions. Copper iodide. Functionalized. Isothiocyanates. Multicomponents. Sonochemical. Copper compounds. 1,3 thiazine derivative. 4 chloro n [6 chloro 4 (cyclohexylimino) 1h benzo[d][1,3]thiazin 2(4h) ylidene]benzamide. 4 chloro n [6 methyl 4 (phenylimino) 1h benzo[d][1,3]thiazin 2(4h) ylidene]benzamide. Benzo[1,3]thiazine derivative. Copper. Isothiocyanic acid derivative. N [4 (cyclohexylimino) 6 methyl 1h benzo[d][1,3]thiazin 2(4h) ylidene]acetamide. N [4 (phenylimino) 1h benzo[d][1,3]thiazin 2(4h) ylidene]benzamide. N [4 (tert butylimino) 1h benzo[d][1,3]thiazin 2(4h) ylidene]acetamide. N [4 (tert butylimino) 1h benzo[d][1,3]thiazin 2(4h) ylidene]benzamide. N [4 (tert butylimino) 6 nitro 1h benzo[d][1,3]thiazin 2(4h) ylidene]benzamide. N [6 bromo 4 (tert butylimino) 1h benzo[d][1,3]thiazin 2(4h) ylidene]acetamide. N [6 bromo 4 (tert butylimino) 1h benzo[d][1,3]thiazin 2(4h) ylidene]benzamide. Unclassified drug. Article. Catalyst. Chemical reaction. Drug synthesis. One pot synthesis. Priority journal. Reaction time. Ultrasound. Ultrasound assisted synthesis. |
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| 9 | مقاله | Ultrasound-assisted synthesis of highly functionalized benzo[1,3]thiazine via Cu-catalyzed intramolecular C–H activation reaction from isocyanides, aniline-benzoyl(acetyl) isothiocyanate adduct | Nematpour, M. | Elsevier B.V, | 2019 |
Cu-catalyzed.
C–H activation. Isocyanides. Isothiocyanate. Ultrasound-assisted. Acetone. Aniline. Catalysis. Chemical activation. Column chromatography. Cyanides. Ultrasonics. Benzo[1,3]thiazine. Catalytic reactions. Copper iodide. Functionalized. Isothiocyanates. Multicomponents. Sonochemical. Copper compounds. 1,3 thiazine derivative. 4 chloro n [6 chloro 4 (cyclohexylimino) 1h benzo[d][1,3]thiazin 2(4h) ylidene]benzamide. 4 chloro n [6 methyl 4 (phenylimino) 1h benzo[d][1,3]thiazin 2(4h) ylidene]benzamide. Benzo[1,3]thiazine derivative. Copper. Isothiocyanic acid derivative. n [4 (cyclohexylimino) 6 methyl 1h benzo[d][1,3]thiazin 2(4h) ylidene]acetamide. n [4 (phenylimino) 1h benzo[d][1,3]thiazin 2(4h) ylidene]benzamide. n [4 (tert butylimino) 1h benzo[d][1,3]thiazin 2(4h) ylidene]acetamide. n [4 (tert butylimino) 1h benzo[d][1,3]thiazin 2(4h) ylidene]benzamide. n [4 (tert butylimino) 6 nitro 1h benzo[d][1,3]thiazin 2(4h) ylidene]benzamide. n [6 bromo 4 (tert butylimino) 1h benzo[d][1,3]thiazin 2(4h) ylidene]acetamide. n [6 bromo 4 (tert butylimino) 1h benzo[d][1,3]thiazin 2(4h) ylidene]benzamide. Unclassified drug. Article. Catalyst. Chemical reaction. Drug synthesis. One pot synthesis. Priority journal. Reaction time. Ultrasound. Ultrasound assisted synthesis. |
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| 10 | مقاله | Synthesis of highly functionalized quinazoline-2,4(1H,3H)-diones from isocyanides, aniline and isocyanate via Cu-catalyzed intermolecular C-H activation reactions | Nematpour, M. | Bentham Science Publishers, | 2020 |
4(1H, 3H)-diones.
Aniline. C-H activation. Cu-catalyzed. Isocyanate. Isocyanides. Quinazoline-2. Quinazoline-2,4(1H,3H)-dione. |
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| 11 | مقاله | A review on competitive pricing in supply chain management problems: models, classification, and applications | Ziari, M. | John Wiley and Sons Inc, | 2022 |
Competition.
Costs. Decision making. Supply chain management. Competitive pricing. Future research directions. Management problems. Model application. Model classification. Problem classification. Problem models. Review papers. Strategic level. Tacticals. Game theory. |
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| 12 | مقاله | A new route for the synthesis of functionalized benzothiadiazine 1,1-dioxide derivatives via intramolecular C–H activation reactions of N,N′,N′′-trisubstituted guanidines and benzenesulfonylchloride | Nazari, M. | Taylor and Francis Ltd, | 2018 |
Benzenesulfonylchloride.
Benzothiadiazine 1,1-dioxide. Copper-catalyzed. C–H activation. N. N'-dicyclohexylcarbodiimide. Primary amine. |
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| 13 | مقاله | Synthesis of poly-substituted thiophenes in the realm of sulfonylketenimines chemistry | Saeedi, S. | Taylor and Francis Ltd, | 2020 |
Carbon disulfide.
Copper iodide. Heterocumulene. Nitro-alkanes. Substituted thiophene. Sulfonylketenimine. |
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| 14 | مقاله | A frequency domain proof for the equivalence of the maximally flat FIR fractional delay filter and the Lagrange interpolator | Jahani Yekta, M. M. | 2011 |
Fractional delay filters.
Frequency domains. Lagrange. Lagrange interpolator. Maximally flat. Maximally flat FIR fractional delay filter. System of equations. System of linear equations. Algebra. Lagrange multipliers. Quadrature amplitude modulation. Frequency domain analysis. |
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| 15 | مقاله | Low-order adaptive half-sample interpolators | Jahani Yekta, M. M. | 2010 |
Design method.
Efficient designs. Fractional delay. High order. Implementation techniques. Input signal. Interpolation kernels. Statistical variations. Interpolation. |
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| 16 | مقاله | Wideband maximally flat fractional-delay allpass filters | Jahani Yekta, M. M. | 2010 |
All-pass filter.
Causality constraint. Maximally flat. Non-causal systems. Wide-band. Bandwidth. Finite difference method. IIR filters. |
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| 17 | مقاله | Equivalence of the Lagrange interpolator for uniformly sampled signals and the scaled binomially windowed shifted sinc function | Jahani Yekta, M. M. | 2009 |
Band-limited interpolation.
Binomial window. Frequency domain analysis. Maximally flat FIR fractional delay filter. Sinc function. Uniform Lagrange interpolation. Band-limited interpolation. Binomial window. Maximally flat FIR fractional delay filter. Sinc function. Uniform Lagrange interpolation. Interpolation. Lagrange multipliers. Quadrature amplitude modulation. Windows. Frequency domain analysis. |
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| 18 | مقاله | Equivalence of the Lagrange interpolator for uniformly sampled signals and the scaled binomially windowed shifted sinc function | Jahani Yekta, M. M. | 2009 |
Band-limited interpolation.
Binomial window. Maximally flat FIR fractional delay filter. Sinc function. Uniform Lagrange interpolation. Interpolation. Lagrange multipliers. Quadrature amplitude modulation. Windows. Frequency domain analysis. |
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| 19 | مقاله | Half-band FIR fractional delay filters with closed-form coefficient formulas and modular implementation based on Lagrange interpolators | Jahani Yekta, M. M. | 2008 |
Wave filters.
Band-width broadening. Closed-form coefficient formulas. Fractional delay. Fractional delay filters. Half-band. Lag range. Maximally flat. Maximally flat FIR fractional delay filter. Modular implementation. Taylor series. FIR filters. |
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| 20 | مقاله | Erratum to: "Fast design of relatively wide band fractional delay all-pass filters" [Signal Process. 88 (3) (2008) 612-623] (DOI:10.1016/j.sigpro.2007.09.006) | Jahani Yekta, M. M. | 2008 |
Filter design.
Wide band filter. All-pass filter. Thiran’s filter design method. Fractional group delay. |
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