Letteratura scientifica selezionata sul tema "Zeta"

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Articoli di riviste sul tema "Zeta"

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Лауринчикас, Антанас, та Antanas Laurinčikas. "О совместной универсальности дзета-функций Римана и Гурвица". Matematicheskie Zametki 111, № 4 (2022): 551–60. http://dx.doi.org/10.4213/mzm13259.

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В 2007 г. Г. Мишу доказал теорему универсальности о совместном приближении пары аналитических функций сдвигами $(\zeta(s+i\tau),\zeta(s+i\tau,\alpha))$ дзета-функции Римана и дзета-функции Гурвица с трансцендентным параметром $\alpha$. В статье получена аналогичная теорема о приближении сдвигами $$ (\zeta_{u_N}(s+ikh_1),\zeta_{u_N}(s+ikh_2,\alpha)),\qquad k\in\mathbb{N}\cup\{0\},\quad h_1,h_2>0, $$ где $\zeta_{u_N}(s)$ и $\zeta_{u_N}(s,\alpha)$ - абсолютно сходящиеся ряды Дирихле и при $N\to\infty$ в среднем стремятся к $\zeta(s)$ и $\zeta(s,\alpha)$ соответственно. Библиография: 11 названи
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Зудилин, Вадим Валентинович, та Wadim Valentinovich Zudilin. "Одно из чисел $\zeta(5), \zeta(7), \zeta(9), \zeta(11)$ иррационально". Uspekhi Matematicheskikh Nauk 56, № 4 (2001): 149–50. http://dx.doi.org/10.4213/rm427.

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Зудилин, Вадим Валентинович, та Wadim Valentinovich Zudilin. "Одно из восьми чисел $\zeta(5),\zeta(7),…,\zeta(17),\zeta(19)$ иррационально". Matematicheskie Zametki 70, № 3 (2001): 472–76. http://dx.doi.org/10.4213/mzm759.

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Balčiūnas, Aidas, Mindaugas Jasas, and Audronė Rimkevičienė. "A DISCRETE VERSION OF THE MISHOU THEOREM RELATED TO PERIODIC ZETA-FUNCTIONS." Mathematical Modelling and Analysis 29, no. 2 (2024): 331–46. http://dx.doi.org/10.3846/mma.2024.19502.

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In the paper, we consider simultaneous approximation of a pair of analytic functions by discrete shifts $\zeta_{u_N}(s+ikh_1; \ga)$ and $\zeta_{u_N}(s+ikh_2, \alpha; \gb)$ of the absolutely convergent Dirichlet series connected to the periodic zeta-function with multiplicative sequence $\ga$, and the periodic Hurwitz zeta-function, respectively. We suppose that $u_N\to\infty$ and $u_N\ll N^2$ as $N\to\infty$, and the set $\{(h_1\log p:\! p\in\! \PP), (h_2\log(m+\alpha): m\in \NN_0), 2\pi\}$ is linearly independent over $\QQ$.
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Lambert, Joseph B., Lourdes A. Salvador, and Charlotte L. Stern. "The .zeta.(Zeta) effect of tin." Journal of Organic Chemistry 58, no. 20 (1993): 5428–33. http://dx.doi.org/10.1021/jo00072a027.

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Hernández-Eliseo, Yessica, Josué Ramírez-Ortega, and Francisco G. Hernández-Zamora. "Toeplitz operators on two poly-Bergman-type spaces of the Siegel domain $ D_2 \subset \mathbb{C}^2 $ with continuous nilpotent symbols." AIMS Mathematics 9, no. 3 (2024): 5269–93. http://dx.doi.org/10.3934/math.2024255.

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<abstract><p>We studied Toeplitz operators acting on certain poly-Bergman-type spaces of the Siegel domain $ D_{2} \subset \mathbb{C}^{2} $. Using continuous nilpotent symbols, we described the $ C^* $-algebras generated by such Toeplitz operators. Bounded measurable functions of the form $ \tilde{c}(\zeta) = c(\text{Im}\, \zeta_{1}, \text{Im}\, \zeta_{2} - |\zeta_1|^{2}) $ are called nilpotent symbols. In this work, we considered symbols of the form $ \tilde{a}(\zeta) = a(\text{Im}\, \zeta_1) $ and $ \tilde{b}(\zeta) = b(\text{Im}\, \zeta_2 -|\zeta_1|^{2}) $, where both limits $ \
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ROTKOVIĆ, Radoslav. "Da dove provengono i nomi dei fiumi Zeta e Cijevna." Lingua Montenegrina 2, no. 2 (2008): 97–101. https://doi.org/10.46584/lm.v2i2.43.

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I nomi del fiume Zeta e della pianura Zeta, che era anche il nome di stato nel medio evo, da tanto tempo sono uguali, ma questo non significa che hanno le stesse radici. Il nome del fiume Zeta era sempre lo stesso, e provviene da balto-slavico e significa l’affluente, così come il genero – zet entra nella famiglia attraverso il contratto del matrimonio. E questo diventa più chiaro se guardiamo nel vocabolario inglese: il genero (zet in slavo) è:sohn-in-law = figlio secondo la legge, per non confon-derlo con il figlio naturale! Dunque, anche lui e un affluente.Il nome della terra Zeta e frutto
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Lagarias, Jeffrey C., and Wen-Ching Winnie Li. "The Lerch zeta function I. Zeta integrals." Forum Mathematicum 24, no. 1 (2012): 1–48. http://dx.doi.org/10.1515/form.2011.047.

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Kurokawa, Nobushige, Masato Wakayama, and Yoshinori Yamasaki. "Milnor–Selberg zeta functions and zeta regularizations." Journal of Geometry and Physics 64 (February 2013): 120–45. http://dx.doi.org/10.1016/j.geomphys.2012.10.015.

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Lai, Li, and Li Zhou. "At least two of $\zeta(5), \zeta(7), \ldots, \zeta(35)$ are irrational." Publicationes Mathematicae Debrecen 101, no. 3-4 (2022): 353–72. http://dx.doi.org/10.5486/pmd.2022.9252.

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Tesi sul tema "Zeta"

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TSUMURA, Hirofumi, Kohji MATSUMOTO, and Yasushi KOMORI. "Multiple zeta values and zeta-functions of root systems." 日本学士院The Japan Academy, 2011. http://hdl.handle.net/2237/20333.

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Mijović, Vuksan. "Multifractal zeta functions." Thesis, University of St Andrews, 2017. http://hdl.handle.net/10023/10637.

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Multifractals have during the past 20 − 25 years been the focus of enormous attention in the mathematical literature. Loosely speaking there are two main ingredients in multifractal analysis: the multifractal spectra and the Renyi dimensions. One of the main goals in multifractal analysis is to understand these two ingredients and their relationship with each other. Motivated by the powerful techniques provided by the use of the Artin-Mazur zeta-functions in number theory and the use of the Ruelle zeta-functions in dynamical systems, Lapidus and collaborators (see books by Lapidus & van Franke
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White, J. V. V. "Zeta functions of groups." Thesis, University of Oxford, 2000. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.365745.

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Reyes, Ernesto Oscar. "The Riemann zeta function." CSUSB ScholarWorks, 2004. https://scholarworks.lib.csusb.edu/etd-project/2648.

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The Riemann Zeta Function has a deep connection with the distribution of primes. This expository thesis will explain the techniques used in proving the properties of the Rieman Zeta Function, its analytic continuation to the complex plane, and the functional equation that the the Riemann Zeta Function satisfies.
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EGAMI, SHIGEKI, and KOHJI MATSUMOTO. "ASYMPTOTIC EXPANSIONS OF MULTIPLE ZETA FUNCTIONS AND POWER MEAN VALUES OF HURWITZ ZETA FUNCTIONS." Cambridge University Press, 2002. http://hdl.handle.net/2237/10284.

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Firouzian, Bandpey Siamak. "Zeta functions of local orders." [S.l.] : [s.n.], 2006. http://deposit.ddb.de/cgi-bin/dokserv?idn=978669827.

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Andersson, Johan. "Summation formulae and zeta functions." Doctoral thesis, Stockholm : Department of Mathematics, Stockholm University, 2006. http://urn.kb.se/resolve?urn=urn:nbn:se:su:diva-1074.

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Berman, Mark Nicholas. "Proisomorphic zeta functions of groups." Thesis, University of Oxford, 2005. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.424860.

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TSUMURA, HIROFUMI, KOHJI MATSUMOTO, and YASUSHI KOMORI. "ZETA-FUNCTIONS OF ROOT SYSTEMS." World Scientific Publishing, 2006. http://hdl.handle.net/2237/20355.

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Juchmes, Franziska. "Zeta Functions and Riemann Hypothesis." Thesis, Linnéuniversitetet, Institutionen för matematik (MA), 2014. http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-32363.

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In this thesis the zeta functions in analytic number theory are stud-ied. The distribution of primes and the connection between primes andzeta functions are discussed. Numerical results for linear combinationsof zeta functions are presented. These functions have a symmetric dis-tribution of zeros around the critical line.
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Libri sul tema "Zeta"

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Ruales, Elizabeth Constaín. Zeta. Apidama Editores, 2003.

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Messingham, Simon. Zeta Major. BBC Books, 1998.

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Voros, André. Zeta Functions over Zeros of Zeta Functions. Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-05203-3.

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McCarthy, Fiona Mary. The zeta waves. Marzipan Books, 2007.

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Choi, Junesang, ed. Zeta and q-Zeta functions and associated series and integrals. Elsevier, 2012.

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Keating, Jonathan P. Resummation and the turning-points of zeta function. Hewlett Packard, 1996.

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Laurinčikas, Antanas, and Ramūnas Garunkštis. The Lerch Zeta-function. Springer Netherlands, 2003. http://dx.doi.org/10.1007/978-94-017-6401-8.

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Ramūnas, Garunkštis, ed. The Lerch zeta-function. Kluwer Academic Publishers, 2002.

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Aligrudić, Milorad. Zeta: Nekad i sad. Sabor Zete, 2012.

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Lilli, Laura. Zeta o le zie. Bompiani, 1989.

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Capitoli di libri sul tema "Zeta"

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Havil, Julian. "Zeta-Funktionen." In GAMMA. Springer Berlin Heidelberg, 2007. http://dx.doi.org/10.1007/978-3-540-48496-7_4.

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Williams, Floyd. "Zeta Regularization." In Topics in Quantum Mechanics. Birkhäuser Boston, 2003. http://dx.doi.org/10.1007/978-1-4612-0009-3_16.

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Williams, Paul Melvyn. "Zeta Potential." In Encyclopedia of Membranes. Springer Berlin Heidelberg, 2015. http://dx.doi.org/10.1007/978-3-642-40872-4_612-1.

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Rosenberg, Eric. "Zeta Dimension." In A Survey of Fractal Dimensions of Networks. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-90047-6_11.

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Doty, David, Xiaoyang Gu, Jack H. Lutz, Elvira Mayordomo, and Philippe Moser. "Zeta-Dimension." In Mathematical Foundations of Computer Science 2005. Springer Berlin Heidelberg, 2005. http://dx.doi.org/10.1007/11549345_25.

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Ohshima, Hiroyuki. "Zeta Potential." In Encyclopedia of Colloid and Interface Science. Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-20665-8_162.

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Williams, Paul Melvyn. "Zeta Potential." In Encyclopedia of Membranes. Springer Berlin Heidelberg, 2016. http://dx.doi.org/10.1007/978-3-662-44324-8_612.

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Lorenzini, Dino. "Zeta-functions." In Graduate Studies in Mathematics. American Mathematical Society, 1996. http://dx.doi.org/10.1090/gsm/009/09.

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Appleton, Kathryn M., Ian Cushman, Yuri K. Peterson, et al. "IkB-zeta." In Encyclopedia of Signaling Molecules. Springer New York, 2012. http://dx.doi.org/10.1007/978-1-4419-0461-4_100643.

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Goldschmidt, David M. "Zeta Functions." In Algebraic Functions and Projective Curves. Springer New York, 2003. http://dx.doi.org/10.1007/0-387-22445-9_5.

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Atti di convegni sul tema "Zeta"

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Zacher, Benjamin H., Kai Franck, and Christian Schumann. "ZETA Based DC-Link Current Source." In 2024 Energy Conversion Congress & Expo Europe (ECCE Europe). IEEE, 2024. http://dx.doi.org/10.1109/ecceeurope62508.2024.10751988.

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Vacheva, Gergana I., Plamen A. Stanchev, and Nikolay L. Hinov. "Harmonic Analysis of ZETA DC-DC Converter." In 2024 59th International Scientific Conference on Information, Communication and Energy Systems and Technologies (ICEST). IEEE, 2024. http://dx.doi.org/10.1109/icest62335.2024.10639704.

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Ghasri, Mohammad, Hossein Gholizadeh, Mohsen Hamzeh, Erfan Sadeghi, and Mehrdad Saif. "An Improved Zeta-Based DC-DC Converter." In IECON 2024 - 50th Annual Conference of the IEEE Industrial Electronics Society. IEEE, 2024. https://doi.org/10.1109/iecon55916.2024.10905301.

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Jayaweera, P., S. Hettiarachchi, and Howard Ocken. "Importance of Zeta Potentials of Oxides for Nuclear Power Plant Deposition Control." In CORROSION 1993. NACE International, 1993. https://doi.org/10.5006/c1993-93608.

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ABSTRACT Corrosion products can deposit on the critical surfaces of feed water flow venturis that are used to measure mass flow rates. Such fouling leads to erroneous values of mass flow rates, thereby causing derating of nuclear power plants. A number of observations suggest that such deposition is a consequence of superficial surface electrical charges that are induced on the surfaces of the corrosion products and flow control venturis. A measure of this surface charge is zeta potential, (i.e. the potential difference between the outer Helmholtz plane of the electrical double layer formed at
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Sharma, Shubh, Vani Bhargava, and Anil Kumar Rai. "Modelling Analysis of SEPIC and ZETA Converter Topologies." In 2024 International Conference on Computer, Electronics, Electrical Engineering & their Applications (IC2E3). IEEE, 2024. https://doi.org/10.1109/ic2e362166.2024.10827705.

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He, Yuxiong, Sameh Elnikety, James Larus, and Chenyu Yan. "Zeta." In the Third ACM Symposium. ACM Press, 2012. http://dx.doi.org/10.1145/2391229.2391241.

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Ghavaminejad, Mahdi, Ebrahim Afjei, and Masoud Meghdadi. "Integrated Buck-Zeta Converter." In 2022 13th Power Electronics, Drive Systems, and Technologies Conference (PEDSTC). IEEE, 2022. http://dx.doi.org/10.1109/pedstc53976.2022.9767504.

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Tang, Wenlong. "Zeta functions with operator values." In Second International Conference on Statistics, Applied Mathematics, and Computing Science (CSAMCS 2022), edited by Shi Jin and Wanyang Dai. SPIE, 2023. http://dx.doi.org/10.1117/12.2672713.

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Zahid, Yousef, Muhammad Amir, Saifullah Khan, and Carlos Alfaro. "Dual-Switch Quadratic Zeta Converter." In 2022 IEEE Texas Power and Energy Conference (TPEC). IEEE, 2022. http://dx.doi.org/10.1109/tpec54980.2022.9750713.

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Ayazi, Philip, Gabriel Monreal, Hassan Bleibel, Frank Zamora, and Larry Watters. "Stability of Chemically Degraded Friction Reducers and Their Relationship to Regain Conductivity." In SPE Annual Technical Conference and Exhibition. SPE, 2021. http://dx.doi.org/10.2118/206308-ms.

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Abstract Previously, it was shown that zeta potential could be used as a metric to determine friction reducer (FR) performance. Specifically, the extent of and how quickly the FR reaches peak friction reduction in source water. A correlation postulated from the previous work is zeta potentials relationship to an FR's stability during mechanical or chemical degradation. In other words, can zeta potential be used as a metric to determine the extent of polymer breaking and can this relationship be translated to regained conductivity? This paper describes a laboratory study of zeta potential measu
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Rapporti di organizzazioni sul tema "Zeta"

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Hasselbrink, Jr, E. R., M. C. Hunter, W. R. Even, Jr, and J. A. Irvin. Microscale Zeta Potential Evaluation Using Streaming Current Measurements. Office of Scientific and Technical Information (OSTI), 2001. http://dx.doi.org/10.2172/784197.

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S. K. Griffiths and R. H. Nilson. Electroosmotic fluid motion and late-time solute transport at non-negligible zeta potentials. Office of Scientific and Technical Information (OSTI), 1999. http://dx.doi.org/10.2172/751022.

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Paruchuri, M. R., D. L. Zhang, and T. B. Massalski. On the formation of {mu}- and {zeta}-phases in Ag-Al system by mechanical alloying. Office of Scientific and Technical Information (OSTI), 1993. http://dx.doi.org/10.2172/10126168.

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Ramaye, Y., V. Kestens, J. Charoud-Got, et al. Certification of Standard Reference Material® 1992 / ERM®-FD305 Zeta Potential – Colloidal Silica (Nominal Mass Fraction 0.15 %). National Institute of Standards and Technology, 2020. http://dx.doi.org/10.6028/nist.sp.260-208.

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Ramaye, Y., V. Kestens, J. Charoud-Got, et al. Certification of Standard Reference Material® 1993 / ERM®-FD306 Zeta Potential – Colloidal Silica (Nominal Mass Fraction 2.2 %). National Institute of Standards and Technology, 2020. http://dx.doi.org/10.6028/nist.sp.260-209.

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Paruchuri, M. R., and T. B. Massalaski. Phase relationships and stability of the {mu}- and {zeta}-phases in the Ag-Al-X (X=Zn, Ga, Ge) systems. Office of Scientific and Technical Information (OSTI), 1993. http://dx.doi.org/10.2172/10139691.

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Rocheford, Torbert, Yaakov Tadmor, Robert Lambert, and Nurit Katzir. Molecular Marker Mapping of Genes Enhancing Tocol and Carotenoid Composition of Maize Grain. United States Department of Agriculture, 1995. http://dx.doi.org/10.32747/1995.7571352.bard.

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The overall objective of this research was to identify chromosomal regions and candidate genes associated with control of concentration and forms of carotenoids (includes pro-Vitamin A) and tocopherols (Vitamin E), which are both antioxidants and are associated with health advantages. Vitamin A and E are included in animal feeding supplements and the eventual goal is to increase levels of these compounds in maize grain so that the cost of these supplements can be reduced or eliminated. Moreover, both compounds are antioxidants that protect unsaturated fatty acids from oxidation and thus mainta
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Anderson, Dane. Functional Markers in Zea mays L. Iowa State University, 2021. http://dx.doi.org/10.31274/cc-20240624-772.

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Eudy, L., and M. Post. Zero Emission Bay Area (ZEBA) Fuel Cell Bus Demonstration Results: Third Report. Office of Scientific and Technical Information (OSTI), 2014. http://dx.doi.org/10.2172/1134120.

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Eudy, Leslie, Matthew B. Post, and Matthew A. Jeffers. Zero Emission Bay Area (ZEBA) Fuel Cell Bus Demonstration Results: Sixth Report. Office of Scientific and Technical Information (OSTI), 2017. http://dx.doi.org/10.2172/1390774.

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