Artículos de revistas sobre el tema "Stability analysi"

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1

Pushparaj, T. Lurthu y V. Alexander. "High rigid Gd (DO3VA) shows remarkable relaxivity: A novel class of MMI agent engineered for MR analysi". Applied Chemical Engineering 5, n.º 1 (26 de abril de 2022): 51. http://dx.doi.org/10.24294/ace.v5i1.447.

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A novel dinuclear gadolinium(III) complex of an amide linked bispolyazatricarboxylate macrocycle (DO3VA) having 2-bromoisovaleric acid pendant arm is reported. The molecular longitudinal relaxivity of the dinuclear complex [Gd2{acamidoet(DO3VA)2}(H2O)2] is 13.23mM–1s–1 which corresponds to a “per Gd” relaxivity of 6.62 mM–1 s–1 (20 MHz, 37 ± 0.1 °C, pH 7). The “per Gd” r1p value is higher than the relaxivity of the clinically approved CAs. The transverse relaxivity (r2p) of [Gd2{acamidoet(DO3VA)2}(H2O)2] is 14.34 mM–1 s–1. The r2p/r1p values of 1.08 indicate that the complex is T1-weighted CAs. The 2-bromoisovaleric acid seems to be an excellent pendant arm for holding Gd(III) metal ion at any pH. The remarkable stability of the complex at various pH and in presence of protein shows that the ligand can be used as functionality in making new CAs for MRI and the amide core is a versatile core molecule for the creation of polynuclear gadolinium(III) chelates and dendrimeric CAs.
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2

Shehata, Adel B., Abdulrahman R. Alaskar, Mohammed A. Alrasheed, Abdullah S. Alosaimi, Fahd A. Alkharraa y Abdulrahman M. Alzahrani. "Certification of sodium benzoate solution reference material by HPLC-UV, LC-MS/MS and UV-VIS-NIR spectrophotometry for food and drug analysi". Journal of Chemical Metrology 14, n.º 2 (28 de noviembre de 2020): 88–105. http://dx.doi.org/10.25135/jcm.48.20.08.1780.

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Sodium benzoate is one of the most widely used food perseverates and has to be used in regulated amounts to avoid its harmful health effects. Reviewing the scientific literature for traceability of the analytical measurement results of sodium benzoate in various food and drug applications to the SI units, it has been found that no scientific details of certification of sodium benzoate CRMs used for the calibration of measuring equipment are published. For this reason, the national metrology institute of Saudi Arabia (SASO/NMCC) certifies a sodium benzoate solution reference material. In this work, sodium benzoate was synthesized, purified and a batch solution reference material was prepared as 1014.47 mg/kg then homogenized and bottled. Homogeneity and stability of the candidate RM were assessed and the results obtained showed that the material is sufficiently homogeneous and stable. Characterization of the reference material was carried out by HPLC-UV, LC-MS/MS and UV-VIS-NIR spectrophotometer as three independent methods. The certified value was derived by combining data from the three methods using the weighted mean approach and was found 1016.13 mg/kg. The certified uncertainty was calculated as weighted uncertainty and was found 10.47 mg/kg (1.03%). Sources of this uncertainty were identified from the characterization, uchar, homogeneity, uhom, and long-term stability, ults, as well as the bias allowance, B.
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3

Pacheco-Martínez, Nancy Jacqueline, Carlos Juárez-Toledo y Irma Martínez-Carrillo. "Análisis dinámico de la estabilidad usando interpolación de alto orden". Ingeniería, investigación y tecnología 13, n.º 4 (1 de octubre de 2012): 451–60. http://dx.doi.org/10.22201/fi.25940732e.2012.13n4.044.

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4

T, Bayisa. "Stability Analysis of Bread Wheat Genotypes Using the AMMI Stability Model at Southeast Oromia". Food Science & Nutrition Technology 7, n.º 1 (2022): 1–6. http://dx.doi.org/10.23880/fsnt-16000277.

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Ethiopia is the largest wheat producer in Sub- Saharan Africa. The productivity of wheat has increased in the last few years in the country, but low as compared to other countries. This low productivity is attributed to a number of factors including biotic, abiotic, shortage of high yielding and stable varieties. The objective of the present study is to identify high yielding and stable genotype. A total of twenty genotypes including Dambal (st. check) and Mada walabu (Local check) were evaluated for two cropping season 2017 and 2018 at four locations: Sinana, Agarfa, Goba and Gololcha. The experiment was laid out in RCBD with three replications. The result of combined analysis of variance showed high significant differences for genotypes, environment and GE interaction. The result of AMMI analysis indicated that 36.3 %, of the total variability was justified by environment, 28.6% by genotypes and 34.9% by GE interaction whereas IPCA 1 and IPCA 2 explained 74.2% from the total GE. Based on GSI a single criteria for stability and high grain yield, genotypes G9, G1, G14,G10, G15 and G12 have the smallest genotype stability index which means they were stable and high yielding genotype. The best genotype with respect to environment Gololcha 2017 and Gololcha 2018 was genotype G10. Genotypes G3 and G17 were better adapted to environments Agarfa 2017. G12 is high yielder stable across tested locations. Therefore this genotype was identified as candidate genotypes to be verified for possible release.
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5

Jánský, Jiří y Petr Kundrát. "The stability analysis of a discretized pantograph equation". Mathematica Bohemica 136, n.º 4 (2011): 385–94. http://dx.doi.org/10.21136/mb.2011.141698.

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6

Ebrahimi, Behnam, Kayvan Sadeghy y Mohammad-Ali Akhavan Bahabadi. "Viscous Fingering of Thixotropic Fluids: a Linear Stability Analysis". Nihon Reoroji Gakkaishi 43, n.º 2 (2015): 31–38. http://dx.doi.org/10.1678/rheology.43.31.

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7

Moreno, Gonzalo, Juan Carlos Serrano y Simón Figueroa-Salgado. "Análisis bidimensional de la estabilidad de vehículos pesados tipo carro-tanque". Revista UIS Ingenierías 19, n.º 3 (27 de marzo de 2020): 31–36. http://dx.doi.org/10.18273/revuin.v19n3-2020003.

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En el presente trabajo se realiza elanálisis de la estabilidad de vehículos pesados tipo carro-tanque. Para dicho propósito se utiliza el factor denominado umbral de vuelco estático (Static Rollover Threshold, por las siglas eninglés SRT), el cual permite evaluar la máxima fuerza inercial aplicada lateralmente que puede soportar el vehículo antes de iniciar el proceso de vuelco. Adicionalmente, este factor permite determinar la máxima velocidad que el vehículo puede desarrollar al recorrer una curva, dando de esta manera mayor seguridad para los usuarios de la vía. Teniendo en cuenta estos aspectos, se estudia la estabilidad de un carro-tanque de sección transversal circular, ya que para vehículos que transportan líquidos la estabilidad es más crítica, debido a que se debe tener en cuenta el movimiento del fluido transportado cuando es sometido a una aceleración lateral, lo cual puede disminuir el factor de estabilidad. Por consiguiente, para determinar el factor de estabilidad se realiza un análisis detallado del movimiento del fluido como función de la aceleración y el llenado del tanque y se utiliza el método de Davies para el análisis cuasi-estático de la estabilidad del vehículo.
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8

Shirvani, Mojtaba, Ahmad Memaripour, Meysam Eghtedari y Hasan Fayazi. "Small signal stability analysis of power system following different outages". International Journal of Academic Research 6, n.º 2 (30 de marzo de 2014): 268–72. http://dx.doi.org/10.7813/2075-4124.2014/6-2/a.38.

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9

Fukuda, Emiko y Shigeo Muto. "DYNAMIC ANALYSIS OF STABILITY OF COALITION GOVERNMENTS IN JAPAN 1993". Journal of the Operations Research Society of Japan 53, n.º 1 (2010): 69–78. http://dx.doi.org/10.15807/jorsj.53.69.

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10

Naruse, Keitaro y Keigo Suenaga. "Stability Analysis of Multiple Mobile Robots by Swarm Leading Control". Abstracts of the international conference on advanced mechatronics : toward evolutionary fusion of IT and mechatronics : ICAM 2010.5 (2010): 1–6. http://dx.doi.org/10.1299/jsmeicam.2010.5.1.

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11

Wang, Fu-Cheng y Min-Ruei Hsieh. "53095 Stability and Performance Analysis of a Full Train Model with Inerters(Multibody System Analysis)". Proceedings of the Asian Conference on Multibody Dynamics 2010.5 (2010): _53095–1_—_53095–8_. http://dx.doi.org/10.1299/jsmeacmd.2010.5._53095-1_.

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12

Bakke, Vernon L. y Zdzisław Jackiewicz. "Stability analysis of reducible quadrature methods for Volterra integro-differential equations". Applications of Mathematics 32, n.º 1 (1987): 37–48. http://dx.doi.org/10.21136/am.1987.104234.

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13

Ibrahim, Abdulkareem Afolabi. "Stability and Sensitivity Analysis of Tumor-induceimmune Suppression with Time Delay". Journal of Advanced Research in Dynamical and Control Systems 12, SP7 (25 de julio de 2020): 1321–31. http://dx.doi.org/10.5373/jardcs/v12sp7/20202232.

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14

Umer, Saher, Yasuo Tan y Azman Osman Lim. "Stability Analysis for Smart Homes Energy Management System with Delay Consideration". Journal of Clean Energy Technologies 2, n.º 4 (2014): 332–38. http://dx.doi.org/10.7763/jocet.2014.v2.150.

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15

Giordano Holanda Battistel, Andrei, Igor Weide Jaskulski y Humberto Pinheiro. "Stability Analysis Of Anti-islanding Protection Based On Positive Feedback Technique". Eletrônica de Potência 16, n.º 4 (1 de noviembre de 2011): 339–47. http://dx.doi.org/10.18618/rep.20114.339347.

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16

González Álvarez, Roxana, Aníbal Barrera García, Ana Beatriz Guerra Morffi y Juan Felipe Medina Mendieta. "Evaluación de la estabilidad y análisis de la capacidad del proceso de producción de una empresa de pastas alimenticias". 26, No1 - 2021, n.º 26, No 1 - 2021 (22 de noviembre de 2021): 206–30. http://dx.doi.org/10.36995/j.visiondefuturo.2021.26.01.006.es.

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El control estadístico de la calidad es un conjunto de herramientas y técnicas que permiten verificar, monitorear y controlar la variabilidad de los procesos, para mejorar la calidad de los productos y la competitividad empresarial. El objetivo de este estudio fue evaluar el proceso de producción de pastas largas de una empresa perteneciente al sector de la industria alimentaria, en cuanto a estabilidad y cumplimiento de especificaciones de calidad. Se utilizó la metodología de mejora seis sigma, la que se enfoca en identificar y eliminar las causas de variación de los procesos. Para la recopilación de información se utilizaron: entrevistas, tormenta de ideas, revisión de documentos, trabajo en equipo y observación directa. Se hace uso de técnicas de documentación de procesos y de herramientas clásicas de la calidad, entre las que se encuentran: diagrama de Pareto, gráficos de control, índices de capacidad de procesos, histograma, diagrama Ishikawa y diseño experimental. También se aplicaron técnicas multivariadas de reducción de datos. Los resultados mostraron que para la característica de calidad humedad, el proceso está fuera de control estadístico y es incapaz de cumplir con las especificaciones requeridas, para la que se investigaron las causas y se propusieron acciones de mejora, lográndose un incremento en el nivel de calidad sigma.
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17

Mirzaev, Ozod Furkatovich. "Accounts Receivable Management in Selected Enterprises of Uzbekistan: Financial Stability Analysis". INTERNATIONAL JOURNAL OF MANAGEMENT SCIENCE AND BUSINESS ADMINISTRATION 4, n.º 5 (2018): 51–55. http://dx.doi.org/10.18775/ijmsba.1849-5664-5419.2014.45.1006.

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18

Mujeebudheen C K, Mujeebudheen C. K. y Dr Manoj P. K. Dr. Manoj P K. "Financial Stability of Old Private Sector Banks in India: An Analysis". International Journal of Scientific Research 2, n.º 4 (1 de junio de 2012): 47–49. http://dx.doi.org/10.15373/22778179/apr2013/18.

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19

Tipsri, Sirachat y Wirawan Chinviriyasit. "Stability Analysis of SEIR Model with Saturated Incidence and Time Delay". International Journal of Applied Physics and Mathematics 4, n.º 1 (2014): 42–45. http://dx.doi.org/10.7763/ijapm.2014.v4.252.

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20

Akcura, M., Y. Kaya, S. Taner y R. Ayranci. "Parametric stability analyses for grain yield of durum wheat". Plant, Soil and Environment 52, No. 6 (17 de noviembre de 2011): 254–61. http://dx.doi.org/10.17221/3438-pse.

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Grain yield of 15 durum wheat (Triticum durum Desf.) genotypes consisting of 13 cultivars and 2 advanced lines, tested in a randomized complete block design with four replications across 8 environments of Central Anatolian Region of Turkey was analyzed using nine parametric stability measures. The objectives were to assess genotype-environment interactions (GEI), determine stable genotypes, and compare mean grain yield with the parametric stability parameters. To quantify yield stability, nine stability statistics were calculated (b<sub>i</sub>, S<sup>2</sup><sub>di</sub>, R<sub>i</sub><sup>2</sup>, W&thinsp;<sub>i</sub><sup>2</sup>, &sigma;<sub>i</sub><sup>2</sup>, S<sup>2</sup><sub>i</sub>, &alpha;<sub>i</sub> and&nbsp;&lambda;<sub>i</sub>). Yilmaz-98, Cakmak-79, Kiziltan-91, Selcuklu-97 and C-1252 were more stable cultivars, which had 9, 8, 6, 6, 6 out of all 9 stability statistics used, respectively. Especially, among these cultivars, Yilmaz-98 and Cakmak-79 were the most stable cultivars. Furthermore, three-dimensional plots of mean response versus each stability statistic were shown to visually evaluate the yield potential and stability estimates of the genotypes. Genotype mean yield (&ndash;x) was significantly positively correlated to the regression coefficient (b<sub>i</sub>), environmental variance and genotype to the environmental effects (&alpha;<sub>i</sub>), indicating that high grain yielding genotypes had larger values b<sub>i</sub>, S<sup>2</sup><sub>i</sub>, and &alpha;<sub>i</sub>, S<sup>2</sup><sub>i</sub>, W&thinsp;<sub>i</sub><sup>2</sup>, CV<sub>i</sub>,&nbsp;&alpha;<sub>i</sub> and b<sub>i</sub>, were significantly correlated, indicating that they measured similar aspects of stability
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21

Xu, Lu, Huai-Xin Cao, Wen-Ting Zheng y Zhen-Xia Gao. "Super-stability and stability of the exponential equations". Journal of Mathematical Inequalities, n.º 1 (2010): 37–44. http://dx.doi.org/10.7153/jmi-04-05.

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22

Kisela, Tomáš. "An analysis of the stability boundary for a linear fractional difference system". Mathematica Bohemica 140, n.º 2 (2015): 195–203. http://dx.doi.org/10.21136/mb.2015.144325.

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23

Bozkurt, F. "Mathematical Modeling and Stability Analysis of the Brain Tumor Glioblastoma Multiforme (GBM)". International Journal of Modeling and Optimization 4, n.º 4 (agosto de 2014): 257–62. http://dx.doi.org/10.7763/ijmo.2014.v4.383.

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24

George, Sara Mohan, Selvi S.S. y Raol J.R. "Aircraft Parameter Estimation Using Gaussian Sum Information Filter with Lyapunov Stability Analysis". Webology 19, n.º 1 (20 de enero de 2022): 3275–90. http://dx.doi.org/10.14704/web/v19i1/web19216.

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Accurate estimation of aerodynamic parameters of an aircraft is a matter of great importance in aviation industry as well in aircraft design and development programs. In this paper, Gaussian sum extended information filter (GSEIF) is studied for aircraft parameter estimation. The convergence condition for the GSEIF has been obtained using the normalized Lyapunov energy functional by proposing a nonlinear observer for the filter and studying its asymptotic behavior, this is a novel approach for deriving stability results for corresponding nonlinear filter. The performance of extended information filter (EIF) and GSEIF is evaluated for aircraft parameter estimation using simulated flight data generated using the MATLAB implementations. The estimation results using GSEIF are better than that obtained using EIF, especially when the initial state is not known (well), which shows that the proposed technique is really feasible for aerodynamic parameter estimation.
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25

Jia Xu, Jia Xu, Jianqiang Zhu Jianqiang Zhu y Fang Liu Fang Liu. "Beam stability analysis of high power laser system based on relay imaging". Chinese Optics Letters 10, n.º 9 (2012): 091401–91404. http://dx.doi.org/10.3788/col201210.091401.

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26

Christian Oliver, Paschereit, Terhaar Steffen, Cosic Bernhard y Oberleithner Kilian. "IL05 Application of Linear Hydrodynamic Stability Analysis to Reacting Swirling Combustor Flows". Proceedings of the International Conference on Jets, Wakes and Separated Flows (ICJWSF) 2013.4 (2013): _IL05–1_—_IL05–11_. http://dx.doi.org/10.1299/jsmeicjwsf.2013.4._il05-1_.

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27

Furuya, Masahiro, Takanori Fukahori, Shinya Mizokami y Jun Yokoya. "ICONE15-10382 STABILITY ESTIMATION OF ABWR ON THE BASIS OF NOISE ANALYSIS". Proceedings of the International Conference on Nuclear Engineering (ICONE) 2007.15 (2007): _ICONE1510. http://dx.doi.org/10.1299/jsmeicone.2007.15._icone1510_196.

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28

TSUJIMOTO, Shota, Atsushi MATSUBARA y Iwao YAMAJI. "0607 Analysis on Stability Limit using Real-time Simulation of Regenerative Chatter". Proceedings of International Conference on Leading Edge Manufacturing in 21st century : LEM21 2015.8 (2015): _0607–1_—_0607–4_. http://dx.doi.org/10.1299/jsmelem.2015.8._0607-1_.

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29

Gibson, T. D. "Biosensors : the stabilité problem". Analusis 27, n.º 7 (septiembre de 1999): 630–38. http://dx.doi.org/10.1051/analusis:1999270630.

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30

Miyanaga, Norifumi y Jun Tomioka. "Stability Analysis of Herringbone-Grooved Aerodynamic Journal Bearings for Ultra High-Speed Rotations". International Journal of Materials, Mechanics and Manufacturing 4, n.º 3 (2015): 156–61. http://dx.doi.org/10.7763/ijmmm.2016.v4.246.

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31

Kolodiziev, Oleh, Iryna Chmutova y Vitaliy Lesik. "Use of causal analysis to improve the monitoring of the banking system stability". Banks and Bank Systems 13, n.º 2 (20 de junio de 2018): 62–76. http://dx.doi.org/10.21511/bbs.13(2).2018.06.

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According to the stages of the banking system stability monitoring, the analysis of caus¬al links is used to identify the causes of the crisis trends spreading and the rationale for the most effective levers of regulatory influence on the banking system parameters by the central bank.The research is based on the use of the canonical correlation method for structuring causal links between the indicators for the assessment of the banking system stability, which are grouped into four sub-indices (assessing the intensity of credit and financial interaction in the interbank market, the effectiveness of the banking system functions, structural changes and financial disproportions in the banking system, activities of systemically important banks); the method of regression analysis and the calculation of elasticity coefficients is also used to assess the sensitivity of the banking system stability to changes in parameters that characterize the banking regulation instruments.The article analyzes the results of quantitative and qualitative assessment of the banking system stability (comparison of actual results of the evaluation with the data for previous years and comparison of values of stability indicators with critical values). The causes of detected deviations are determined taking into account the results of applying the canonical correlations method. Regression models have been constructed to confirm the dependence of the banking system stability index on the change in parameters that characterize banking regulation instruments, and to determine the most effective of them. Practical testing of submitted proposals is realized based on the Ukrainian banking system indicators for 2007–2016.
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32

Hamasalh, Faraidun K. y Amina H. Ali. "Stability Analysis of Some Fractional Differential Equations by Special type of Spline Function". Journal of Zankoy Sulaimani - Part A 19, n.º 1 (16 de octubre de 2016): 191–96. http://dx.doi.org/10.17656/jzs.10596.

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33

Kim. "Sensitivity analysis of tunnel stability with a consideration of an excavation damaged zone". Journal of Korean Tunnelling and Underground Space Associa 16, n.º 1 (2014): 091. http://dx.doi.org/10.9711/ktaj.2014.16.1.091.

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34

Wu, Zhou, Liu Zhijun y Tang Lifang. "Computational Analysis of the Slope Stability of Flood Prevention and Bank Protection Engineering". International Journal of Engineering and Technology 8, n.º 2 (febrero de 2016): 137–40. http://dx.doi.org/10.7763/ijet.2016.v6.873.

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35

Wu, Zhou, Liu Zhijun y Tang Lifang. "Computational Analysis of the Slope Stability of Flood Prevention and Bank Protection Engineering". International Journal of Engineering and Technology 8, n.º 2 (febrero de 2016): 137–40. http://dx.doi.org/10.7763/ijet.2016.v8.873.

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36

Choudhury, B. S., N. Metiya y S. Kundu. "A multivalued fixed point result with associated data dependece and stability study". Issues of Analysis 29, n.º 1 (febrero de 2022): 45–57. http://dx.doi.org/10.15393/j3.art.2022.10370.

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37

Park, Dong-Hun y Seung-O. Park. "Nonlinear Stability Analysis of Boundary Layers by using Nonlinear Parabolized Stabiltiy Equations". Journal of the Korean Society for Aeronautical & Space Sciences 39, n.º 9 (1 de septiembre de 2011): 805–15. http://dx.doi.org/10.5139/jksas.2011.39.9.805.

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38

Moore, Jane C. "A new concept of stability, Mo-stability". Journal of Mathematical Analysis and Applications 112, n.º 1 (noviembre de 1985): 1–13. http://dx.doi.org/10.1016/0022-247x(85)90272-0.

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39

Hjelmborg, Jacob v. B. y Mikael Rørdam. "On Stability ofC*-Algebras". Journal of Functional Analysis 155, n.º 1 (mayo de 1998): 153–70. http://dx.doi.org/10.1006/jfan.1997.3221.

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40

Shin, Chang Eon y Qiyu Sun. "Stability of localized operators". Journal of Functional Analysis 256, n.º 8 (abril de 2009): 2417–39. http://dx.doi.org/10.1016/j.jfa.2008.09.011.

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41

Idczak, Dariusz. "Stability in Semilinear Problems". Journal of Differential Equations 162, n.º 1 (marzo de 2000): 64–90. http://dx.doi.org/10.1006/jdeq.1999.3681.

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42

Kil, Krzysztof y Ewa Miklaszewska. "Analiza czynników wpływających na stabilność banków spółdzielczych w okresie pokryzysowym". Problemy Zarzadzania 55, n.º 3/2 (15 de septiembre de 2015): 97–119. http://dx.doi.org/10.7172/1644-9584.55.7.

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43

Lange, C., D. Hennig, V. Garcia, I. Llorens y G. Verdu. "ICONE15-10568 ADVANCED BWR STABILITY ANALYSIS WITH A REDUCED ORDER MODEL AND SYSTEM CODE". Proceedings of the International Conference on Nuclear Engineering (ICONE) 2007.15 (2007): _ICONE1510. http://dx.doi.org/10.1299/jsmeicone.2007.15._icone1510_305.

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44

Zhao, Jiyun, C. P. Tso y K. J. Tseng. "ICONE19-43038 Response matrix method and its application to SCWR single channel stability analysis". Proceedings of the International Conference on Nuclear Engineering (ICONE) 2011.19 (2011): _ICONE1943. http://dx.doi.org/10.1299/jsmeicone.2011.19._icone1943_14.

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45

YABUKI, Soichi. "Supporting Materials That Improve the Stability of Enzyme Membranes". Analytical Sciences 30, n.º 2 (2014): 213–17. http://dx.doi.org/10.2116/analsci.30.213.

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46

Ershov, Yu L. "Stability preservation theorems". Algebra and Logic 47, n.º 3 (mayo de 2008): 155–65. http://dx.doi.org/10.1007/s10469-008-9013-1.

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Watanabe, R., M. Ando, K. Kato y K. Yoshida. "Manufacturing of Two-Legged Walking Toys and Their Analyses of Stability Conditions". International Conference on Business & Technology Transfer 2012.6 (2012): 126–32. http://dx.doi.org/10.1299/jsmeicbtt.2012.6.0_126.

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Kalitin, B. S. "Lyapunov Stability and Orbital Stability of Dynamical Systems". Differential Equations 40, n.º 8 (agosto de 2004): 1096–105. http://dx.doi.org/10.1023/b:dieq.0000049826.73745.c1.

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Tisseur, Françoise. "Stability of Structured Hamiltonian Eigensolvers". SIAM Journal on Matrix Analysis and Applications 23, n.º 1 (enero de 2001): 103–25. http://dx.doi.org/10.1137/s0895479800368007.

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Bessa, Mário y Jorge Rocha. "Topological stability for conservative systems". Journal of Differential Equations 250, n.º 10 (mayo de 2011): 3960–66. http://dx.doi.org/10.1016/j.jde.2011.01.009.

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