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1

Abdulghany, A. R., and A. H. Hanafy. "Nuclear surface parameters revisited." Nuclear Physics A 1018 (February 2022): 122376. http://dx.doi.org/10.1016/j.nuclphysa.2021.122376.

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2

NISKANEN, J. A., A. SIBIRTSEV, J. HAIDENBAUER, and C. HANHART. "ETA-NUCLEAR SCATTERING PARAMETERS." International Journal of Modern Physics A 20, no. 02n03 (2005): 634–36. http://dx.doi.org/10.1142/s0217751x05022007.

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The possibility of etamesic nuclei remains an open problem in nuclear physics until now. Various calculations give contradictory predictions even for the case of 3 He . In this paper we reanalyze and review the existing data and investigate possible limits on the binding energies and widths if a bound state exists.
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3

Lattimer, James M. "Constraints on Nuclear Symmetry Energy Parameters." Particles 6, no. 1 (2023): 30–56. http://dx.doi.org/10.3390/particles6010003.

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A review is made of constraints on the nuclear symmetry energy parameters arising from nuclear binding energy measurements, theoretical chiral effective field predictions of neutron matter properties, the unitary gas conjecture, and measurements of neutron skin thicknesses and dipole polarizabilities. While most studies have been confined to the parameters SV and L, the important roles played by, and constraints on Ksym, or, equivalently, the neutron matter incompressibility KN, are discussed. Strong correlations among SV,L, and KN are found from both nuclear binding energies and neutron matte
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4

Bucurescu, Dorel, and Till von Egidy. "Systematics of nuclear level density parameters." Journal of Physics G: Nuclear and Particle Physics 31, no. 10 (2005): S1675—S1680. http://dx.doi.org/10.1088/0954-3899/31/10/052.

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5

Vershovskii, A. K., Yu A. Litmanovich, A. S. Pazgalev, and V. G. Peshekhonov. "Nuclear Magnetic Resonance Gyro: Ultimate Parameters." Gyroscopy and Navigation 9, no. 3 (2018): 162–76. http://dx.doi.org/10.1134/s2075108718030100.

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6

International, Journal of Medical Science and Innovative Research (IJMSIR). "Role of Nuclear Morphometry in The Diagnosis of Various Breast Lesions By Fine Needle Aspiration Cytology- A Study of Diagnostic Accuracy." International Journal of Medical Science and Innovative Research (IJMSIR) 9, no. 6 (2024): 77–84. https://doi.org/10.5281/zenodo.15448923.

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<strong>Abstract</strong> <strong>Introduction </strong> The Nuclear Morphometric Study can improve. During the past several years, it has been well-established that several clinical, cytological and histopathological variables are helpful in predicting the clinical outcome of cancer patients. <strong>Objectives</strong> 1.&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; To study the Nuclear Morphometric parameters of the benign and malignant breast FNA aspirates 2.&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; To determine suitable cutoff values differentiating benign and malignant in case of nuclear parameters with significa
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7

Bang, In Cheol, Jacopo Buongiorno, Lin-Wen Hu, and Hsin Wang. "ICONE15-10030 Measurement of Key Pool Boiling Parameters in Nanofluids for Nuclear Applications." Proceedings of the International Conference on Nuclear Engineering (ICONE) 2007.15 (2007): _ICONE1510. http://dx.doi.org/10.1299/jsmeicone.2007.15._icone1510_11.

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8

Zagrebayev, A. M., and S. V. Ten. "CREATION AND VISUALIZATION OF AN OPERATIONAL PARAMETERS ARCHIVE." Eurasian Journal of Mathematical and Computer Applications 9, no. 2 (2021): 101–10. http://dx.doi.org/10.32523/2306-6172-2021-9-2-101-110.

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The developed methodologies allows visualizing the behavior of limiting param- eters over time and identifying patterns in the dynamics of changes in the parameters of a nuclear power unit, as well as determining if any of the parameters intersects the safe opera- tion settings. The relevance of the work is due to the importance of high-quality processing and visualization of data from the nuclear reactor archive using modern effective methodolo- gies. Also, the development of new approaches to the analysis of archived data can improve the efficiency of power plant operators.
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9

B. dos R. Lino, Jéssica, and Teodorico C. Ramalho. "Quantum Information and Nuclear Magnetic Resonance Parameters." Revista Virtual de Química 10, no. 4 (2018): 940–62. http://dx.doi.org/10.21577/1984-6835.20180067.

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10

Balakrishnan, Sreenath. "Nondimensional mechanical parameters for characterising nuclear morphology." Biophysical Journal 121, no. 3 (2022): 119a. http://dx.doi.org/10.1016/j.bpj.2021.11.2133.

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11

Bayram, T., S. Akkoyun, S. O. Kara, and A. Sinan. "New Parameters for Nuclear Charge Radius Formulas." Acta Physica Polonica B 44, no. 8 (2013): 1791. http://dx.doi.org/10.5506/aphyspolb.44.1791.

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12

Kollatschny, W., and K. J. Fricke. "Correlations between Environmental Parameters and Nuclear Activity." International Astronomical Union Colloquium 124 (1990): 437–40. http://dx.doi.org/10.1017/s0252921100005467.

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The occurrence and quantitative properties of Seyfert 1 and Seyfert 2 galaxies as a function of the galaxy environment have been studied in a systematic way. For this investigation we have selected from the Catalogue of Quasars and Active Nuclei (Veron &amp; Veron, 1989) all Seyfert galaxies with the following properties:(i) mV ≤ 15,(ii) listed classification as Sey 1, Sey 2, or Sey 3,(iii) vrad ≤ 20000 km s-1.This results in a sample size of 242 Seyfert galaxies. For all these objects their galaxy environment has been inspected on POSS and ESO/SRC plates.The vicinity of each sample Seyfert ga
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13

Pennanen, Teemu S., Perttu Lantto, Mikko Hakala, and Juha Vaara. "Nuclear magnetic resonance parameters in water dimer." Theoretical Chemistry Accounts 129, no. 3-5 (2010): 313–24. http://dx.doi.org/10.1007/s00214-010-0782-y.

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14

Genk, Mohamed S. El, and Jean Michel P. Tournier. "Chemical kinetics parameters of nuclear graphite gasification." International Journal of Nuclear Energy Science and Technology 7, no. 3 (2013): 258. http://dx.doi.org/10.1504/ijnest.2013.052169.

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15

Bilalbegović, G. "Nuclear Magnetic Resonance Parameters of Water Hexamers." Journal of Physical Chemistry A 114, no. 2 (2010): 715–20. http://dx.doi.org/10.1021/jp9075614.

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16

Tikhonchev, M. Yu, V. V. Svetukhin, S. G. Novikov, R. G. Bil’danov, and K. I. Il’in. "177Lu Accumulation Parameters in Different Nuclear Reactors." Atomic Energy 125, no. 6 (2019): 376–83. http://dx.doi.org/10.1007/s10512-019-00497-2.

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17

Vandermeersch, Elias, Pierre Tamagno, and Cyrille De Saint Jean. "Assimilation of integral experiments on high-energy nuclear parameters." EPJ Web of Conferences 284 (2023): 14014. http://dx.doi.org/10.1051/epjconf/202328414014.

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Current assimilation of integral experiments often consists in adjusting multi-group cross sections with feedbacks from critical reference benchmarks. In order to maintain the constraints coming from nuclear models, we present here a method to achieve assimilation of integral experiment on nuclear parameters, from which nuclear data are evaluated. This method, based on Bayesian inference, uses continuous energy reactivity sensitivities to nuclear parameters, throughout all the nuclear data types (cross section, angular distribution, energy distribution, fission multiplicity and spectrum). This
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18

Brupbacher-Gatehouse, Bethany, and Patrick Rupper. "Nuclear Spin–Rotation Coupling Constants and Absolute Nuclear Shielding Parameters of ClPO2." Journal of Molecular Spectroscopy 209, no. 1 (2001): 11–13. http://dx.doi.org/10.1006/jmsp.2001.8405.

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19

TAMAGNO, Pierre, and Elias VANDERMEERSCH. "Comprehensive stochastic sensitivities to resonance parameters." EPJ Web of Conferences 239 (2020): 13008. http://dx.doi.org/10.1051/epjconf/202023913008.

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Integral experiments in reactors or critical configurations claim to have very small experimental and technological uncertainties. Therefore these latter can be considered valuable experimental information in nuclear data evaluation. Because in the evaluation process the information is carried by model parameters, to perform a rigorous feedback on a nuclear model parameters p - for instance using a measured reactivity ρ-sensitivities S =∂ρ/ρ⁄∂p/p are needed. In usual integral feedbacks, sensitivity to multi-group cross sections are first obtained with deterministic code using perturbation theo
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20

V.S., Volodin, and Tolokonskij A.O. "Parameters Settings of NPP Automatic Regulators via Analytical Simulators." KnE Engineering 3, no. 3 (2018): 317. http://dx.doi.org/10.18502/keg.v3i3.1631.

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Purpose of I&amp;C system is monitor and control of processing procedure and equipment for reaching main goal of NPP – electric energy generation providing nuclear and radiological safety and economic efficiency of processing procedure. One of the main functions of NPP I&amp;C system is control of technological processes in nuclear unit equipment via automatic regulators providing optimality of electric energy generation process. Algorithms of I&amp;C systems, especially laws of control, are realized on hardware and software complex (HSC) TPTS (technological hardware-software instrumentality).
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21

Hassan, Israa M., and Freed M. Mohammed. "Employing Some of Nuclear Models to Study the Energy Levels of Odd Atomic Mass Nuclei." NeuroQuantology 20, no. 3 (2022): 182–86. http://dx.doi.org/10.14704/nq.2022.20.3.nq22058.

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The energy levels and their Gamma Transitions for the nuclei are important characteristics for identify its properties, and the moment of inertia is one of the important parameters in determining energy levels. accordingly many nuclear models have been developed in successive periods of time for this study, according to the movement of the nuclei. The energy levels were calculated for all values of the total nuclear momentum and parity by applying the nuclear shell model and the Generalized Variable Moment of Inertia with the addition of some limits in order to obtain accurate and inclusive re
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22

Chebboubi, Abdelaziz, Olivier Litaize, and Olivier Serot. "Impact of FIFRELIN input parameters on fission observables." EPJ Web of Conferences 193 (2018): 01003. http://dx.doi.org/10.1051/epjconf/201819301003.

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Evaluated nuclear data are essential for nuclear reactor studies. In order to significantly improve the precision of nuclear data, more and more fundamental fission models are used in the evaluation processing. Therefore, tests of fission models become a central issue. In this framework, FIFRELIN (FIssion Fragments Evaporation Leading to an Investigation of Nuclear data) is a Monte Carlo code developed in order to modelize fission fragments de-excitation through the emission of neutrons, γ and conversion e-. To be performed, a FIFRELIN calculation relies on several models such as gamma strengt
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23

Соколов, И. П., А. В. Понизов, В. А. Попков, and Р. Б. Шарафутдинов. "GRAPHIC APPROACH TO JUSTIFICATION OF SAFE NUCLEAR SAFETY PARAMETERS FOR NUCLEAR FUEL CYCLE FACILITIES." ЯДЕРНАЯ И РАДИАЦИОННАЯ БЕЗОПАСНОСТЬ, no. 4(110) (December 26, 2023): 37–46. http://dx.doi.org/10.26277/secnrs.2023.110.4.003.

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Обоснование ядерной безопасности является приоритетным направлением в обеспечении безопасности объектов ядерного топливного цикла. Для предотвращения возникновения на объектах ядерного топливного цикла самоподдерживающейся цепной реакции разработана специальная система требований по установлению уровней значений параметров ядерной безопасности. Выполнение этих требований связано с анализом совокупности критических зависимостей между параметрами ядерной безопасности. Цель статьи – представление результатов по использованию графического подхода для обоснования безопасных значений параметров ядер
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24

Balakrishnan, Sreenath, Shilpa R. Raju, Anwesha Barua, Reshma P. Pradeep, and Gondi Kondaiah Ananthasuresh. "Two nondimensional parameters for characterizing the nuclear morphology." Biophysical Journal 120, no. 21 (2021): 4698–709. http://dx.doi.org/10.1016/j.bpj.2021.09.035.

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25

Pollock, S. J., E. N. Fortson, and L. Wilets. "Atomic parity nonconservation: Electroweak parameters and nuclear structure." Physical Review C 46, no. 6 (1992): 2587–600. http://dx.doi.org/10.1103/physrevc.46.2587.

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26

Vaara, Juha. "Theory and computation of nuclear magnetic resonance parameters." Physical Chemistry Chemical Physics 9, no. 40 (2007): 5399. http://dx.doi.org/10.1039/b706135h.

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27

Lattimer, James M., and Yeunhwan Lim. "CONSTRAINING THE SYMMETRY PARAMETERS OF THE NUCLEAR INTERACTION." Astrophysical Journal 771, no. 1 (2013): 51. http://dx.doi.org/10.1088/0004-637x/771/1/51.

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28

Cresswell, A. J., J. Carter, and D. C. W. Sanderson. "Dose rate conversion parameters: Assessment of nuclear data." Radiation Measurements 120 (December 2018): 195–201. http://dx.doi.org/10.1016/j.radmeas.2018.02.007.

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29

Sun, Wu-Ji, and Jian Li. "Energy staggering parameters in nuclear magnetic rotational bands." Chinese Physics C 43, no. 9 (2019): 094104. http://dx.doi.org/10.1088/1674-1137/43/9/094104.

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30

McKeever, Paul E., John A. Feldenzer, J. Philip McCoy, et al. "Nuclear Parameters as Prognostic Indicators in Glioblastoma Patients." Journal of Neuropathology & Experimental Neurology 49, no. 1 (1990): 71–78. http://dx.doi.org/10.1097/00005072-199001000-00008.

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31

Egido, J. L., C. Dorso, J. O. Rasmussen, and P. Ring. "The nuclear deformation parameters at high excitation energies." Physics Letters B 178, no. 2-3 (1986): 139–44. http://dx.doi.org/10.1016/0370-2693(86)91484-x.

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32

Osman, A., and A. M. Abdel-Latif. "Collective mass parameters in the nuclear fission process." Czechoslovak Journal of Physics 38, no. 8 (1988): 837–43. http://dx.doi.org/10.1007/bf01601831.

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33

Mayer, Klaus, Maria Wallenius, and Zsolt Varga. "Nuclear Forensic Science: Correlating Measurable Material Parameters to the History of Nuclear Material." Chemical Reviews 113, no. 2 (2012): 884–900. http://dx.doi.org/10.1021/cr300273f.

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34

Razavi, Rohallah, Azam Rahmatinejad, Tayeb Kakavand, Fariba Taheri, Maghsood Aghajani, and Asghar Khooy. "Studying Nuclear Level Densities of 238U in the Nuclear Reactions within the Macroscopic Nuclear Models." Zeitschrift für Naturforschung A 71, no. 2 (2016): 157–60. http://dx.doi.org/10.1515/zna-2015-0339.

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AbstractIn this work the nuclear level density parameters of 238U have been extracted in the back-shifted Fermi gas model (BSFGM), as well as the constant temperature model (CTM), through fitting with the recent experimental data on nuclear level densities measured by the Oslo group. The excitation functions for 238U(p,2nα)233Pa, and 238U(p,4n)235Np reactions and the fragment yields for the fragments of the 238U(p,f) reaction have been calculated using obtained level density parameters. The results are compared to their corresponding experimental values. It was found that the extracted excitat
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35

Lalazissis, G. A., and C. P. Panos. "Phenomenological nuclear density distributions." HNPS Proceedings 4 (February 19, 2020): 85. http://dx.doi.org/10.12681/hnps.2877.

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A recently proposed semiphenomenological density distribution for neutrons and protons in nuclei is discussed. This density was derived using the separation energies of the last neutron or proton. A com­parison is made with the symmetrised Fermi density distribution with parameters determined by fitting electron scattering experimental data and with a Fermi density with parameters coming from a recent anal­ysis of pionic atoms. Theoretical expressions for rms radii for neutron, proton and matter distributions are proposed, which give the average trend of the variation of these quantities as fu
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36

Tavares, O. A. P., and E. L. Medeiros. "Nuclear radii from nuclear masses." International Journal of Modern Physics E 28, no. 04 (2019): 1950021. http://dx.doi.org/10.1142/s0218301319500216.

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Single uncharged pion production in neutron- and proton-induced reactions on complex nuclei, combined with the nuclear Fermi Gas Model, has been used to evaluate the average equivalent radius of a [Formula: see text] nucleus directly from the experimental nuclear mass-values of [Formula: see text] and its neighbors [Formula: see text] and [Formula: see text] isobars. A simple formula without adjustable parameters has been derived which gives nuclear radius-values that are in good agreement with updated, equivalent root-mean-square (rms) radius-values derived from experiments for a set of 540 n
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37

D, Parmar, K. Sawke G, and Sawke Nilima. "A cytomorphometric Evaluation of Oral Mucosal Cells in Type II Diabetics." PJSR 7, no. 2 (2014): 22–27. https://doi.org/10.5281/zenodo.8251708.

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The objective of the present study was to assess the effect of diabetes on buccal mucosa by using cytomorphometry and to emphasize its relevance as an additional tool to aid in the evaluation of oral mucosal changes in diabetes mellitus. The study Group consisted of 100 subjects divided into 50 control subjects (Group C) and 50 Type II diabetic subjects (Group D). We analyzed and compared between the groups the nuclear and cell morphometric features i.e. mean nuclear area (MNA), mean nuclear perimeter (MNP), mean of maximum nuclear diameter (Max-ND), mean of minimum nuclear diameter (Min-ND),
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38

Yu, Zhong Hai, Tian Chen, Di Shi Liu, and Jing Wang. "Study on the Optimized Cutting Parameters for the Nuclear Channel Head." Applied Mechanics and Materials 121-126 (October 2011): 3534–40. http://dx.doi.org/10.4028/www.scientific.net/amm.121-126.3534.

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As one of the key components of the nuclear power equipments, the nuclear channel head has a complicated shape and is difficult to be machined. In this paper, the optimal combination of cutting parameters of large-scale nuclear channel head is researched. Considering the machining requirements and machining conditions, the cutting parameters optimized mathematical model is established to achieve the goal of maximum production efficiency. Meanwhile, the target functions and the corresponding constraint functions are analyzed. Finally, by using genetic algorithm of simulating biological evolutio
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39

Chisoi, Anca, Mariana Aşchie, and Manuela Enciu. "Morphometric Characterization of Marginal Zone Lymphoma." ARS Medica Tomitana 21, no. 1 (2015): 17–21. http://dx.doi.org/10.1515/arsm-2015-0014.

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Abstract The morphometry in histopathology is used to characterize cell populations belonging to different tissues and to identify differences in their parameters with prognostic implications. To achieve morphometric examination were selected 6 of 8 cases identified as marginal zone lymphoma. For each case analysis was done on five fields, for each field measuring the parameters of 20 cells. The studied parameters were for cytoplasm: cytoplasmic area, maximum and minimum cytoplasmic diameter, cytoplasmic perimeter; for nucleus were measured: nuclear area, minimum and maximum nuclear diameter,
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40

Harikumar, C., C. Sivathanu Pillai, and S. C. Chetal. "Deformation parameters of bedrock at a nuclear reactor site." Proceedings of the Institution of Civil Engineers - Geotechnical Engineering 166, no. 1 (2013): 49–55. http://dx.doi.org/10.1680/geng.10.00038.

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41

Wang, Yawen, Liyan Xu, Shaopei Wang, et al. "Heritability of Corneal Parameters in Nuclear Families With Keratoconus." Translational Vision Science & Technology 11, no. 7 (2022): 13. http://dx.doi.org/10.1167/tvst.11.7.13.

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42

Li, Kexin, Hongwei Li, Raymond H. Chan, and Youwei Wen. "Selecting Regularization Parameters for Nuclear Norm--Type Minimization Problems." SIAM Journal on Scientific Computing 44, no. 4 (2022): A2204—A2225. http://dx.doi.org/10.1137/21m143786x.

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43

Günay, Mehtap, and Gökmen Şeker. "Three-dimensional Monte Carlo calculation of some nuclear parameters." EPJ Web of Conferences 154 (2017): 01026. http://dx.doi.org/10.1051/epjconf/201715401026.

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44

Karpeeva, A., I. Timoshin, and E. Mikheev. "Parameters Influencing Thermal Stability of U-Gd Nuclear Fuel." KnE Materials Science 4, no. 1 (2018): 85. http://dx.doi.org/10.18502/kms.v4i1.2130.

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45

Maldonado, Alejandro F., Carlos A. Giménez, and Gustavo A. Aucar. "Nuclear charge-distribution effects on the NMR spectroscopy parameters." Journal of Chemical Physics 136, no. 22 (2012): 224110. http://dx.doi.org/10.1063/1.4729253.

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46

De Vries, H., C. W. De Jager, and C. De Vries. "Nuclear charge-density-distribution parameters from elastic electron scattering." Atomic Data and Nuclear Data Tables 36, no. 3 (1987): 495–536. http://dx.doi.org/10.1016/0092-640x(87)90013-1.

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47

Le Loirec, C., C. Riffard, F. Barran, et al. "Parameters influencing the activation of dismantling nuclear facility structures." Annals of Nuclear Energy 134 (December 2019): 158–69. http://dx.doi.org/10.1016/j.anucene.2019.05.054.

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48

Santra, A. B., та U. Lombardo. "Nuclear matter equation of state and σ-meson parameters". Pramana 64, № 1 (2005): 31–37. http://dx.doi.org/10.1007/bf02704527.

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49

Biradar, D. P., D. G. Bullock, and A. Lane Rayburn. "Nuclear DNA amount, growth, and yield parameters in maize." Theoretical and Applied Genetics 88, no. 5 (1994): 557–60. http://dx.doi.org/10.1007/bf01240918.

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50

Chen, LieWen. "Higher order bulk characteristic parameters of asymmetric nuclear matter." Science China Physics, Mechanics and Astronomy 54, S1 (2011): 124–29. http://dx.doi.org/10.1007/s11433-011-4415-9.

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