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Journal articles on the topic 'Negative parameters'

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1

Brkić, Dragoljub. "Determination of point estimates of negative binomial distribution parameters." Vojnotehnicki glasnik 47, no. 6 (1999): 24–29. http://dx.doi.org/10.5937/vojtehg9905024b.

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2

Grevstad, Nels. "Simultaneous estimation of negative binomial dispersion parameters." Statistics & Probability Letters 81, no. 12 (2011): 1751–55. http://dx.doi.org/10.1016/j.spl.2011.07.020.

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3

Park, S.-T., and T.-T. Luu. "Techniques for optimizing parameters of negative stiffness." Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 221, no. 5 (2007): 505–10. http://dx.doi.org/10.1243/0954406jmes390.

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Passive isolation systems based on springs are often used to resist vibration due to their low cost and reliability. The basic principle of these systems is that they try to decrease the natural frequency as low as possible. Stiffness of the overall spring system must be low to make the isolator achieve the low natural frequency. An approach to obtain the low dynamic stiffness is the combination of a negative stiffness system and a common isolator. There are, however, a lot of negative stiffness systems, and selecting the best one is difficult. In this paper, mathematical analyses are used to
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4

Chen, Huaijun, Hui Li, Shilong Zhai, et al. "Ultrasound acoustic metamaterials with double-negative parameters." Journal of Applied Physics 119, no. 20 (2016): 204902. http://dx.doi.org/10.1063/1.4951008.

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5

Furuichi, S., and H. R. Moradi. "New Kantorovich type inequalities for negative parameters." Analysis Mathematica 46, no. 4 (2020): 747–60. http://dx.doi.org/10.1007/s10476-020-0055-5.

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6

Zanuy, Carlos, Pablo de la Fuente, and Luis Albajar. "Estimation of parameters defining negative tension stiffening." Engineering Structures 32, no. 10 (2010): 3355–62. http://dx.doi.org/10.1016/j.engstruct.2010.07.009.

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7

Pisarchik, A. N., B. F. Kuntsevich, R. Meucci, and E. Allaria. "Negative hysteresis in a laser with modulated parameters." Optics Communications 189, no. 4-6 (2001): 313–19. http://dx.doi.org/10.1016/s0030-4018(01)01011-2.

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8

Xie, Chaodong, and Yongkuan Cheng. "Singularly perturbed quasilinear Schrödinger equations with negative parameters." Applicable Analysis 98, no. 12 (2018): 2239–51. http://dx.doi.org/10.1080/00036811.2018.1457787.

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9

García-Pérez, Miguel A., and Vicente Núñez-Antón. "Statistical Inference Involving Binomial and Negative Binomial Parameters." Spanish journal of psychology 12, no. 1 (2009): 288–307. http://dx.doi.org/10.1017/s1138741600001694.

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Statistical inference about two binomial parameters implies that they are both estimated by binomial sampling. There are occasions in which one aims at testing the equality of two binomial parameters before and after the occurrence of the first success along a sequence of Bernoulli trials. In these cases, the binomial parameter before the first success is estimated by negative binomial sampling whereas that after the first success is estimated by binomial sampling, and both estimates are related. This paper derives statistical tools to test two hypotheses, namely, that both binomial parameters
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10

Bobrovnitskii, Yuri I. "Vibration energy of metamaterials with negative effective parameters." Journal of the Acoustical Society of America 131, no. 4 (2012): 3291. http://dx.doi.org/10.1121/1.4708304.

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11

Adamidis, Konstantinos. "An EM algorithm for estimating negative binomial parameters." Australian New Zealand Journal of Statistics 41, no. 2 (1999): 213–21. http://dx.doi.org/10.1111/1467-842x.00075.

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12

Golyak, Isay, and Suzanne Galayda. "Negative binomial parameters and the two-mechanism model." Zeitschrift f�r Physik C Particles and Fields 70, no. 2 (1996): 227–31. http://dx.doi.org/10.1007/s002880050099.

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13

Astuti, Cindy Cahyaning, and Angga Dwi Mulyanto. "Estimation Parameters And Modelling Zero Inflated Negative Binomial." CAUCHY 4, no. 3 (2016): 115. http://dx.doi.org/10.18860/ca.v4i3.3656.

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Regression analysis is used to determine relationship between one or several response variable (Y) with one or several predictor variables (X). Regression model between predictor variables and the Poisson distributed response variable is called Poisson Regression Model. Since, Poisson Regression requires an equality between mean and variance, it is not appropriate to apply this model on overdispersion (variance is higher than mean). Poisson regression model is commonly used to analyze the count data. On the count data type, it is often to encounteredd some observations that have zero value wit
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14

Khan, A., and H. Kapoor. "An Investigation of EEG Parameters in Negative Creativity." International Journal of Psychophysiology 131 (October 2018): S182—S183. http://dx.doi.org/10.1016/j.ijpsycho.2018.07.486.

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15

Buchacz, Andrzej, and Damian Gałęziowski. "Formalization of Discrete Mechatronic Systems with Negative Value Parameters." Applied Mechanics and Materials 809-810 (November 2015): 105–10. http://dx.doi.org/10.4028/www.scientific.net/amm.809-810.105.

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In the paper, the problem of designing of mechatronic discrete systems for vibration control has been investigated and generalized. As the design method, the synthesis has been used. Main focus of the paper is given to formalization of the mechatronic structures that contains elements with negative values on different stages of the synthesis process. The study is done based on different distributions methods of dynamical characteristics, dimensionless transformation and retransformation algorithm, simultaneously with verification of possible configurations of connections of piezostack actuator
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16

Alfaro, Manuel, Marı́a Álvarez de Morales, and M. Luisa Rezola. "Orthogonality of the Jacobi polynomials with negative integer parameters." Journal of Computational and Applied Mathematics 145, no. 2 (2002): 379–86. http://dx.doi.org/10.1016/s0377-0427(01)00589-1.

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17

Lu, Binxian, Hongyu Sun, and Qiukun Wu. "Characteristics of Trichel Pulse Parameters in Negative Corona Discharge." IEEE Transactions on Plasma Science 45, no. 8 (2017): 2191–201. http://dx.doi.org/10.1109/tps.2017.2713831.

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18

Savani, V., and A. A. Zhigljavsky. "Efficient Estimation of Parameters of the Negative Binomial Distribution." Communications in Statistics - Theory and Methods 35, no. 5 (2006): 767–83. http://dx.doi.org/10.1080/03610920500501346.

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19

Quintela, JoséCarlos, Marta Caparrós, and Miguel A. Pedro. "Variability of peptidoglycan structural parameters in Gram-negative bacteria." FEMS Microbiology Letters 125, no. 1 (1995): 95–100. http://dx.doi.org/10.1111/j.1574-6968.1995.tb07341.x.

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20

Demchuk, M. I., V. P. Mikhaĭlov, G. A. Pribytok, and K. V. Yumashev. "Negative-feedback laser emitting ultrashort pulses with controlled parameters." Soviet Journal of Quantum Electronics 21, no. 8 (1991): 821–25. http://dx.doi.org/10.1070/qe1991v021n08abeh003962.

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21

Chaudhuri, A. K. "Energy dependence of parameters of negative-binomial distributions inNNcollisions." Physical Review D 45, no. 11 (1992): 4057–63. http://dx.doi.org/10.1103/physrevd.45.4057.

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22

Maes, Michael, Eugène Bosmans, Eduard Suy, Bob Minner, and Jef Raus. "Immune cell parameters in severely depressed patients: negative findings." Journal of Affective Disorders 17, no. 2 (1989): 121–28. http://dx.doi.org/10.1016/0165-0327(89)90034-7.

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23

Munazza Zulfiqar Ali, Munazza Zulfiqar Ali. "Effective medium parameters for 1D photonic crystal containing single-negative material layers using the envelope function approach." Chinese Optics Letters 11, no. 4 (2013): 040501–40503. http://dx.doi.org/10.3788/col201311.040501.

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24

Mahmood, Ahmed, Golge Ogucu Yetkin, and Cumali Sabah. "Wideband Negative Permittivity and Double Negative Fishnet-Mushroom-Like Metamaterial in X-Band Waveguide." Advances in Condensed Matter Physics 2017 (2017): 1–7. http://dx.doi.org/10.1155/2017/2439518.

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A Fishnet-Mushroom-like metamaterial electromagnetic behaviour is represented in S-parameters numerically and experimentally for X-band frequencies arena. The design has introduced a dielectric substrate as a host with metallic parts. The proposed design is predicted to provide the electromagnetic band gap characterization with desired reiterative characteristic parameters, negative permittivity, and negative permeability exhibiting a double negative left-handed region, which is identified with the X-band regime with good agreement between the simulated and the measured results.
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25

Fukumasa, Osamu, and Shigefumi Mori. "Volume production of D−negative ions in low-pressure D2plasmas—negative ion densities versus plasma parameters." Nuclear Fusion 46, no. 6 (2006): S287—S296. http://dx.doi.org/10.1088/0029-5515/46/6/s09.

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26

Mori, Shigefumi, and Osamu Fukumasa. "D[sup −]∕H[sup −] negative ion production versus plasma parameters in a volume negative ion source." Review of Scientific Instruments 79, no. 2 (2008): 02A507. http://dx.doi.org/10.1063/1.2802594.

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27

McCawley, James D. "“Negative evidence” and the gratuitous leap from principles to parameters." Behavioral and Brain Sciences 14, no. 4 (1991): 627–28. http://dx.doi.org/10.1017/s0140525x0007165x.

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28

Shen, Yongjun, Haibo Peng, Xianghong Li, and Shaopu Yang. "Analytically optimal parameters of dynamic vibration absorber with negative stiffness." Mechanical Systems and Signal Processing 85 (February 2017): 193–203. http://dx.doi.org/10.1016/j.ymssp.2016.08.018.

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29

Buchacz, Andrzej, and Damian Gałęziowski. "Designing of discrete mechatronic vibrating systems with negative value parameters." Mechanical Systems and Signal Processing 78 (October 2016): 134–42. http://dx.doi.org/10.1016/j.ymssp.2015.02.003.

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30

Díaz Mendoza, C., and R. Orive. "The Szegő curve and Laguerre polynomials with large negative parameters." Journal of Mathematical Analysis and Applications 379, no. 1 (2011): 305–15. http://dx.doi.org/10.1016/j.jmaa.2010.12.053.

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31

Mauri, M. C., P. Leva, A. Forgione, and A. C. Altamura. "L-SULPIRIDE IN NEGATIVE SCHIZOPHRENIA: CLINICAL, BIOLOGICAL AND PHARMACOKINETIC PARAMETERS." Clinical Neuropharmacology 15 (1992): 367B. http://dx.doi.org/10.1097/00002826-199202001-00713.

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32

Markos, Peter, and Costas Soukoulis. "Transmission properties and effective electromagnetic parameters of double negative metamaterials." Optics Express 11, no. 7 (2003): 649. http://dx.doi.org/10.1364/oe.11.000649.

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33

Kildishev, Alexander V., Joshua D. Borneman, Xingjie Ni, Vladimir M. Shalaev, and Vladimir P. Drachev. "Bianisotropic Effective Parameters of Optical Metamagnetics and Negative-Index Materials." Proceedings of the IEEE 99, no. 10 (2011): 1691–700. http://dx.doi.org/10.1109/jproc.2011.2160991.

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34

Hwang, Wen-Han, Richard Huggins, and Jakub Stoklosa. "Estimating negative binomial parameters from occurrence data with detection times." Biometrical Journal 58, no. 6 (2016): 1409–27. http://dx.doi.org/10.1002/bimj.201500239.

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35

Cetnarowicz, Krzysztof, and Gabriel Rojek. "PARAMETERS OF BEHAVIOR EVALUATION MECHANISMS WITH USE OF NEGATIVE SELECTION." IFAC Proceedings Volumes 40, no. 18 (2007): 157–62. http://dx.doi.org/10.3182/20070927-4-ro-3905.00028.

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36

Dhavale, Dileep G. "Computational Approaches to Estimating Negative Binomial Parameters from Count Data." Journal of Quality Technology 21, no. 1 (1989): 51–64. http://dx.doi.org/10.1080/00224065.1989.11979139.

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37

Zhang, Zi-dong, Chuan-bing Cheng, and Xu Han. "Percolative cobalt/silicon nitride composites with tunable negative electromagnetic parameters." RSC Advances 6, no. 86 (2016): 82478–83. http://dx.doi.org/10.1039/c6ra15529d.

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A 3D fishnet structure is formed in the Co/Si<sub>3</sub>N<sub>4</sub> composites to obtain tunable negative electromagnetic parameters from 550 MHz to 1 GHz, which have potential applications in antennas, electromagnetic shielding and band-pass filter.
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38

Nasser, Mahmood, and Hiroharu Fujita. "Downstream Control of Negative-Ion Plasma Parameters in Helicon Discharge." Japanese Journal of Applied Physics 38, Part 1, No. 7B (1999): 4346–50. http://dx.doi.org/10.1143/jjap.38.4346.

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39

Macías, R., C. Segovia, and J. L. Torrea. "Heat-diffusion maximal operators for Laguerre semigroups with negative parameters." Journal of Functional Analysis 229, no. 2 (2005): 300–316. http://dx.doi.org/10.1016/j.jfa.2005.02.005.

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40

Chalise, Sanat, Nishant Acharya, and Sailesh B. Pradhan. "Correlation between Iron Parameters and Platelet Parameters in Iron Deficiency Anemia." Journal of Institute of Medicine Nepal 41, no. 3 (2019): 35–38. http://dx.doi.org/10.3126/jiom.v41i3.37362.

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Introduction Iron deficiency anemia is the most common type of anemia and is diagnosed by iron studies. Reactive thrombocytosis is usually seen in iron deficiency anemia. The objectives of the study is to correlate between iron parameters and platelet parameters in patient with iron deficiency anemia.&#x0D; MethodsThis was a cross-sectional study done in Department of Pathology at Kathmandu Medical College, Sinamangal between December 2018 to May 2019. Blood samples of 81 iron deficiency anemia patients were analysed to determine iron parameters and platelet parameters. SPSS version 20 was use
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41

Park, Minho, Dongmin Lee, and Jinwoo Jeon. "Random Parameter Negative Binomial Model of Signalized Intersections." Mathematical Problems in Engineering 2016 (2016): 1–8. http://dx.doi.org/10.1155/2016/1436364.

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Factors affecting accident frequencies at 72 signalized intersections in the Gyeonggi-Do (province) over a four-year period (2007~2010) were explored using the random parameters negative binomial model. The empirical results from the comparison with fixed parameters binomial model show that the random parameters model outperforms its fixed parameters counterpart and provides a fuller understanding of the factors which determine accident frequencies at signalized intersections. In addition, elasticity and marginal effect were estimated to gain more insight into the effects of one-percent and on
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42

Henderson, W. "Queueing networks by negative customers and negative queue lengths." Journal of Applied Probability 30, no. 4 (1993): 931–42. http://dx.doi.org/10.2307/3214523.

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A number of papers have recently appeared in the literature in which customers, in moving from node to node in the network arrive as either a positive customer or as a batch of negative customers. A positive customer joining its queue increases the number of customers at the queue by 1 and each negative customer decreases the queue length by 1, if possible. It has been shown that the equilibrium distribution for these networks assumes a geometric product form, that certain partial balance equations prevail and that the parameters of the geometric distributions are, as in Jackson networks, the
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43

Henderson, W. "Queueing networks by negative customers and negative queue lengths." Journal of Applied Probability 30, no. 04 (1993): 931–42. http://dx.doi.org/10.1017/s0021900200044673.

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A number of papers have recently appeared in the literature in which customers, in moving from node to node in the network arrive as either a positive customer or as a batch of negative customers. A positive customer joining its queue increases the number of customers at the queue by 1 and each negative customer decreases the queue length by 1, if possible. It has been shown that the equilibrium distribution for these networks assumes a geometric product form, that certain partial balance equations prevail and that the parameters of the geometric distributions are, as in Jackson networks, the
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44

Fălăuș, Anamaria, and Andreea Nicolae. "Fragment answers and double negation in strict negative concord languages." Semantics and Linguistic Theory 26 (October 15, 2016): 584. http://dx.doi.org/10.3765/salt.v26i0.3813.

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This paper revisits the phenomenon of negative concord (NC) as an instance of polarity sensitivity. We shed light on a new set of data regarding n-words as fragment answers to negative questions and show that we find unexpected double negation (DN) readings for fragment n-words in view of their behavior in non-elliptical constructions. To account for this pattern, we offer an updated version of the hypothesis that n-words are strong NPIs, making use of an alternative and exhaustification approach. We argue that the difference between n-words and other NPIs should be seen as the result of two p
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45

Zrubec, V., and J. Maňka. "Optimization of noise parameters of SQUID magnetometers with external negative feedback." Cryogenics 35, no. 7 (1995): 451–54. http://dx.doi.org/10.1016/0011-2275(95)93579-o.

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46

Seetharamdoo, Divitha, Ronan Sauleau, Kouroch Mahdjoubi, and Anne-Claude Tarot. "Effective parameters of resonant negative refractive index metamaterials: Interpretation and validity." Journal of Applied Physics 98, no. 6 (2005): 063505. http://dx.doi.org/10.1063/1.2041841.

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47

Luty, Markus A., and Raman Sundrum. "Technicolor theories with negative values of the Peskin-Takeuchi electroweak parameterS." Physical Review Letters 70, no. 5 (1993): 529–32. http://dx.doi.org/10.1103/physrevlett.70.529.

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48

Tserkezis, C., and N. Stefanou. "Uniaxial crystals of metallodielectric nanosandwiches: effective optical parameters and negative refraction." Journal of Optics 12, no. 11 (2010): 115103. http://dx.doi.org/10.1088/2040-8978/12/11/115103.

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49

Sánchez-Dehesa, José, Victor M. García-Chocano, Rogelio Gracià-Salgado, Francisco Cervera, and Daniel Torrent. "Acoustic metamaterials with negative parameters: a multiple scattering approach with examples." Journal of the Acoustical Society of America 131, no. 4 (2012): 3290. http://dx.doi.org/10.1121/1.4708302.

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50

Oohara, W., H. Yokoyama, Toshiaki Takeda, Y. Maetani, Takashi Takeda, and K. Kawata. "Effect of nickel grid parameters on production of negative hydrogen ions." Physics of Plasmas 21, no. 6 (2014): 063514. http://dx.doi.org/10.1063/1.4886149.

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