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Journal articles on the topic 'Selenas'

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1

Maher, Megan J., Joanne M. Santini, and Graham N. George. "Structural studies on the selenate reductase from Thauera selenatis." Journal of Inorganic Biochemistry 96, no. 1 (2003): 185. http://dx.doi.org/10.1016/s0162-0134(03)80701-8.

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2

Schröder, Imke, Sabine Rech, Torsten Krafft, and Joan M. Macy. "Purification and Characterization of the Selenate Reductase fromThauera selenatis." Journal of Biological Chemistry 272, no. 38 (1997): 23765–68. http://dx.doi.org/10.1074/jbc.272.38.23765.

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3

Bhaskar Reddy, D., A. Somasekhar Reddy, and V. Padmavathi. "1,4-PENTADIEN-3-ONES. A SOURCE FOR SELENANO 1,2,3- SELENA AND THIADIAZOLES." Synthetic Communications 31, no. 22 (2001): 3429–37. http://dx.doi.org/10.1081/scc-100106201.

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4

Butler, Clive S., Charles M. Debieux, Elizabeth J. Dridge, Peter Splatt, and Matthew Wright. "Biomineralization of selenium by the selenate-respiring bacterium Thauera selenatis." Biochemical Society Transactions 40, no. 6 (2012): 1239–43. http://dx.doi.org/10.1042/bst20120087.

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Bacterial anaerobic respiration using selenium oxyanions as the sole electron acceptor primarily result in the precipitation of selenium biominerals observed as either intracellular or extracellular selenium deposits. Although a better understanding of the enzymology of bacterial selenate reduction is emerging, the processes by which the selenium nanospheres are constructed, and in some cases secreted, has remained poorly studied. Thauera selenatis is a Gram-negative betaproteobacterium that is capable of respiring selenate due to the presence of a periplasmic selenate reductase (SerABC). SerA
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5

Dridge, Elizabeth J., and Clive S. Butler. "Thermostable properties of the periplasmic selenate reductase from Thauera selenatis." Biochimie 92, no. 10 (2010): 1268–73. http://dx.doi.org/10.1016/j.biochi.2010.06.003.

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6

Cruz-Jiménez, Gustavo, Eunice Eunice, Gilberto Gutiérrez-Vázquez, et al. "Investigación de la biotransformación de Se en tejidos de Phaseolus vulgaris L. mediante espectroscopia de absorción de rayos X." Acta Universitaria 21 (September 1, 2011): 48–54. http://dx.doi.org/10.15174/au.2011.29.

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En este trabajo se evaluó la toxicidad del selenato en tres variedades de frijol (Phaseoulus vulgaris L.): Negro, Peruano y Flor de Mayo. La variedad Flor de Mayo se identificó como la más resistente por lo que en ella se cuantificó el selenio y se determinó la biotransformación del selenato mediante espectroscopia de absorción de rayos X (EAX). La raíz y tallo de esta variedad acumularon hasta 1 218 mg Se kg-1 y 101 mg Se kg-1, respectivamente. Los resultados de EAX indicaron que parte del selenato se biotransformó en los tejidos de la planta, en donde se identificaron las formas selenato y s
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7

Lowe, Elisabeth C., Sarah Bydder, Robert S. Hartshorne, et al. "Quinol-cytochromecOxidoreductase and Cytochromec4Mediate Electron Transfer during Selenate Respiration inThauera selenatis." Journal of Biological Chemistry 285, no. 24 (2010): 18433–42. http://dx.doi.org/10.1074/jbc.m110.115873.

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8

Bhaskar Reddy, D., A. Somasekhar Reddy, and V. Padmavathi. "ChemInform Abstract: 1,4-Pentadien-3-ones. A Source for Selenano 1,2,3-Selena and Thiadiazoles." ChemInform 33, no. 3 (2010): no. http://dx.doi.org/10.1002/chin.200203183.

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9

Maher, Megan J., and Joan M. Macy. "Crystallization and preliminary X-ray analysis of the selenate reductase fromThauera selenatis." Acta Crystallographica Section D Biological Crystallography 58, no. 4 (2002): 706–8. http://dx.doi.org/10.1107/s0907444902002640.

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10

Kamburov, Stoyan, Horst Schmidt, Wolfgang Voigt, and Christo Balarew. "Crystal structures of sodium magnesium selenate decahydrate, Na2Mg(SeO4)2·10H2O, a new selenate salt, and sodium magnesium selenate dihydrate, Na2Mg(SeO4)2·2H2O." Acta Crystallographica Section C Structural Chemistry 73, no. 7 (2017): 582–87. http://dx.doi.org/10.1107/s2053229617009330.

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Metal selenates crystallize in many instances in isomorphic structures of the corresponding sulfates. Sodium magnesium selenate decahydrate, Na2Mg(SeO4)2·10H2O, and sodium magnesium selenate dihydrate, Na2Mg(SeO4)2·2H2O, were synthesized by preparing solutions of Na2SeO4 and MgSeO4·6H2O with different molar ratios. The structures contain different Mg octahedra, i.e. [Mg(H2O)6] octahedra in the decahydrate and [MgO4(H2O)2] octahedra in the dihydrate. The sodium polyhedra are also different, i.e. [NaO2(H2O)4] in the decahydrate and [NaO6(H2O)] in the dihydrate. The selenate tetrahedra are connec
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11

Crespi, M. Spirandeli, C. A. Ribeiro, and M. Ionashiro. "Studies on double selenates. Part 12. Thermal decomposition of ammonium selenate and of double selenates of lanthanide, and yttrium, and ammonium." Thermochimica Acta 239 (July 1994): 157–69. http://dx.doi.org/10.1016/0040-6031(94)87064-0.

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12

Macy, J. M., and S. Lawson. "Cell yield (YM) of Thauera selenatis grown anaerobically with acetate plus selenate or nitrate." Archives of Microbiology 160, no. 4 (1993): 295–98. http://dx.doi.org/10.1007/bf00292080.

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13

Butler, Clive S. "Metals, non-metals and minerals: The complexity of bacterial selenate respiration." Biochemist 34, no. 5 (2012): 23–27. http://dx.doi.org/10.1042/bio03405023.

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Metalloproteins and enzymes are an essential part of all respiratory electron-transfer chains and provide a pathway for electron transfer to terminal electron acceptors. Since bacteria can utilize a wide range of respiratory substrates, this variety of potential electron acceptors has facilitated the need for many different respiratory metalloproteins. Bacterial selenate respiration requires the sequential reduction of the selenium oxyanions selenate and selenite resulting in the precipitation of elemental selenium. The initial bioenergetic processes of selenate respiration are driven by metal
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14

Krafft, Torsten, Ashley Bowen, Friedbert Theis, and Joan M. Macy. "Cloning and Sequencing of the Genes Encoding the Periplasmic-CytochromeB-Containing Selenate Reductase ofThauera selenatis." DNA Sequence 10, no. 6 (2000): 365–77. http://dx.doi.org/10.3109/10425170009015604.

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15

Rech, S. A., and J. M. Macy. "The terminal reductases for selenate and nitrate respiration in Thauera selenatis are two distinct enzymes." Journal of Bacteriology 174, no. 22 (1992): 7316–20. http://dx.doi.org/10.1128/jb.174.22.7316-7320.1992.

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16

Dridge, Elizabeth J., Carys A. Watts, Brian J. N. Jepson, et al. "Investigation of the redox centres of periplasmic selenate reductase from Thauera selenatis by EPR spectroscopy." Biochemical Journal 408, no. 1 (2007): 19–28. http://dx.doi.org/10.1042/bj20070669.

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Periplasmic SER (selenate reductase) from Thauera selenatis is classified as a member of the Tat (twin-arginine translocase)-translocated (Type II) molybdoenzymes and comprises three subunits each containing redox cofactors. Variable-temperature X-band EPR spectra of the purified SER complex showed features attributable to centres [3Fe–4S]1+, [4Fe–4S]1+, Mo(V) and haem-b. EPR-monitored redox-potentiometric titration of the SerABC complex (SerA–SerB–SerC, a hetero-trimetric complex of αβγ subunits) revealed that the [3Fe–4S] cluster (FS4, iron-sulfur cluster 4) titrated as n=1 Nernstian compone
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17

Stavans, Ilan. "Santa Selena." Transition, no. 70 (1996): 36. http://dx.doi.org/10.2307/2935346.

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18

Othman, Kamal, Jaharah A. Ghani, Che Hassan Che Haron, Afifah Juri, and Mohd Shahir Kassim. "Microstructural Study of Aluminium Alloy A390 after Milling Process." Jurnal Kejuruteraan 30, no. 2 (2018): 257–64. http://dx.doi.org/10.17576/jkukm-2018-30(2)-16.

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19

Korenev, Vladimir S., Pavel A. Abramov, Cristian Vicent, et al. "Selenate as a novel ligand for keplerate chemistry. New {W72Mo60} keplerates with selenates inside the cavity." Dalton Transactions 44, no. 19 (2015): 8839–45. http://dx.doi.org/10.1039/c5dt00349k.

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20

Fowless, AD, GA Lawrance, DR Stranks, TR Sullivan, and N. Vanderhoek. "The Effect of Pressure on the Anation of Diaquabis(ethane-1,2-diamine)cobalt(III) by Selenate and Sulfate, and on the Isomerization of the trans-Aquabis(ethane-1,2-diamine)(hydrogenselenito)cobalt(III) Ion." Australian Journal of Chemistry 41, no. 9 (1988): 1263. http://dx.doi.org/10.1071/ch9881263.

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The reversible nucleophilic substitution of cis-[Co(en)2(OH2)2]3+ (en = ethane-1,2-diamine) by sulfate and selenate at pH 2.0 was studied at elevated pressure, and activation volumes (ΔV‡) for anation and solvolysis were determined. The ΔV‡ values for anation by sulfate and selenate were +8.3�0.5 and +8.5�0.4 cm3 mol-1 respectively, whereas solvolysis of sulfato and selenato complexes cis -[Co(en)2(OH2)(XO4)]+ gave ΔV‡ values of -2.2�0.4 and -3.3�0.7 cm3 mol-1 respectively. The trans → cis [Co(en)2(OH2)(OSeO2H)]2+ isomerization studied at pH 1.0 and elevated pressure yielded ΔV‡ + 7.2�0.4 cm3
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21

Thompson, M. Daniel, Gary S. Smith, K. Ramalingam, and K. Darrell Berlin. "Selenium-77 NMR spectral analysis of selected substituted selenanes, selenanones and 3-selena-7-azabicyclo[3.3.1]nonanes and derivatives." Magnetic Resonance in Chemistry 24, no. 11 (1986): 947–50. http://dx.doi.org/10.1002/mrc.1260241104.

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22

Mička, Zdeněk, Lucie Prokopová, Ivana Císařová, and David Havlíček. "Crystal Structure, Thermoanalytical Properties and Infrared Spectra of Double Magnesium Selenates." Collection of Czechoslovak Chemical Communications 61, no. 9 (1996): 1295–306. http://dx.doi.org/10.1135/cccc19961295.

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Magnesium selenates double salts K2Mg(SeO4)2.6H2O, Rb2Mg(SeO4)2.6H2O, Cs2Mg(SeO4)2.6H2O, and (NH4)2Mg(SeO4)2.6H2O have been studied by means of X-ray diffraction methods, thermoanalytical methods, and infrared spectroscopy. The basic building units of these compounds are slightly deformed tetrahedra of selenate anions and octahedra of hexaaquamagnesium(II) cations interconnected by a system of hydrogen bonds. The investigation of IR spectra has been used in the discussion of X-ray diffraction results in the field of description of the hydrogen bond system and deformation of the basic polyhedra
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23

Filipović, Nenad, Zoran Stojanović, and Magdalena Stevanović. "The influence of stabilizing agents on physicochemical properties of selenium nanoparticles obtained by chemical reduction." Tehnika 76, no. 2 (2021): 137–43. http://dx.doi.org/10.5937/tehnika2102137f.

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Selenium nanoparticles (SeNPs) are specific form of this element that has recently become the subject of numerous research, especially in the field of biomedicine. Several synthesis procedures for obtaining SeNPs have been developed so far, among those including reduction of selenium salts are the most frequently used. In this work, it is examined the effect of two stabilizing agents on morphology, size, and crystallinity of obtained SeNPs. For this purpose, bovine serum albumin (BSA) and polyglutamic acid (PGA) were used as stabilizing agents while reduction of sodium selenite with ascorbic a
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24

Sharif Adam, Sharifah Darmia, Irma Wani Othman, Jais Abdul Hamid, et al. "THE INFLUENCE OF EDUCATION ON ETHNIC DIVERSITY BEFORE AND AFTER INDEPENDENCE IN MALAYSIA." International Journal of Law, Government and Communication 6, no. 23 (2021): 68–84. http://dx.doi.org/10.35631/ijlgc.623005.

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This article discusses the influence of education on ethnic diversity in Malaysia. Malaysia is known for its unique society that is made up of various ethnic groups such as Malay, Chinese, Indian, Sabah, and Sarawak indigenous ethnic groups and many other ethnic groups. Each ethnic group has its own cultural practices, traditional customs, religious beliefs, and language but everyone can live in a harmony. In other words, ethnic diversity and cultural differences are not an obstacle to the plural society in this country to live together peacefully. Among the efforts made to create such an atmo
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25

Bush, Elizabeth. "Selena by Silvia López." Bulletin of the Center for Children's Books 73, no. 5 (2020): 215. http://dx.doi.org/10.1353/bcc.2020.0027.

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26

Panda, Arunashree. "Chemistry of selena macrocycles." Coordination Chemistry Reviews 253, no. 7-8 (2009): 1056–98. http://dx.doi.org/10.1016/j.ccr.2008.07.006.

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27

PALENCIA, PEDRO, FATIMA MARTINEZ, MARIAN BURDUCEA, JOSE ALBERTO OLIVEIRA, and INMACULADA GIRALDE. "EFECTOS DEL ENRIQUECIMIENTO CON SELENIO EN SPAD, CALIDAD DE LA FRUTA Y PARÁMETROS DE CRECIMIENTO DE PLANTAS DE FRESA EN UN SISTEMA DE CULTIVO SIN SUELO." Revista Brasileira de Fruticultura 38, no. 1 (2016): 202–12. http://dx.doi.org/10.1590/0100-2945-294/14.

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RESUMEN El selenio (Se) es un elemento traza esencial no solo para animales, plantas y microorganismos, sino también para la salud de las personas. Por ello, parece que aumentar las cantidades de selenio en plantas puede tener implicaciones positivas. El objetivo de este trabajo fue determinar en un sistema de cultivo sin suelo con fibra de coco el efecto del selenito (Se IV) y selenato (Se VI) en el peso, calidad de las frutas de fresa, así como en variables de crecimiento y contenido de clorofilas de las hojas jóvenes y adultas de la planta de fresa de la variedad ‘Splendor’. Los tratamiento
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28

Krügermann, Ina, and Mathias S. Wickleder. "Crystal Structure and Thermal Behaviour of Er2(SeO4)3 · 8H2O." Zeitschrift für Naturforschung B 59, no. 9 (2004): 958–62. http://dx.doi.org/10.1515/znb-2004-0902.

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Single crystals of Er2(SeO4)3 ・ 8H2O were obtained by dissolving Er2O3 in selenic acid. The selenate crystallizes in the monoclinic space group C2/c (Z = 4, a = 1372.8(2), b = 687.51(7), c = 1860.2(3) pm, β = 101.85(2)◦, Rall = 0.0518) and contains the Er3+ ions in eightfold coordination of oxygen atoms that belong to two crystallographically different SeO42− ions and to four H2O molecules. According to DTA/TG measurements and temperature dependent powder diffraction data, Er2(SeO4)3 ・8H2O decomposes in several steps yielding finally Er2O3. Er2(SeO4)3 and Er2(SeO3)3 could be identified as inte
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29

Oykova, T., D. Mihov, and P. Pavlova. "Phase Interaction in the Systems Sodium Selenate – Copper Selenate – Water and Sodium Selenate – Zinc Selenate – Water at 25 °C." Crystal Research and Technology 26, no. 8 (1991): 1071–75. http://dx.doi.org/10.1002/crat.2170260820.

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30

Jimenez, Ruben Rodriguez, and Mayra Santos-Febres. "Sirena Selena vestida de Pena." Hispania 85, no. 4 (2002): 868. http://dx.doi.org/10.2307/4141250.

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31

Hoppe, Diana, Franz Rau, Marc Schlosser та Arno Pfitzner. "The Phosphorus Selena Bromideα-P4Se3Br2". Zeitschrift für anorganische und allgemeine Chemie 636, № 2 (2010): 305–8. http://dx.doi.org/10.1002/zaac.200900345.

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32

Paredez, Deborah. "Remembering Selena, Re-membering Latinidad." Theatre Journal 54, no. 1 (2002): 63–83. http://dx.doi.org/10.1353/tj.2002.0024.

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33

Kamat, Prashant V. "Energy Selects." ACS Energy Letters 4, no. 5 (2019): 1204–5. http://dx.doi.org/10.1021/acsenergylett.9b00891.

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34

Ma, Dongling, Liqiang Mai, Michael Saliba, Edward H. Sargent, and Prashant V. Kamat. "Energy Selects." ACS Energy Letters 4, no. 6 (2019): 1455–57. http://dx.doi.org/10.1021/acsenergylett.9b01114.

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35

Sivula, Kevin, Narayan Pradhan, Phillip Christopher, Megan C. Wasson, Omar K. Farha, and Prashant V. Kamat. "Energy Selects." ACS Energy Letters 4, no. 8 (2019): 2021–23. http://dx.doi.org/10.1021/acsenergylett.9b01594.

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36

Kuno, Masaru, Shelley Minteer, Leif Hammarström, Dongling Ma, and Prashant V. Kamat. "Energy Selects." ACS Energy Letters 4, no. 9 (2019): 2351–52. http://dx.doi.org/10.1021/acsenergylett.9b01883.

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37

Li, Xiaolin, Jun Lu, Dongling Ma, and Prashant V. Kamat. "Energy Selects." ACS Energy Letters 4, no. 10 (2019): 2569–70. http://dx.doi.org/10.1021/acsenergylett.9b02117.

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38

Mat Enh, Azlizan, and Norlilawati Samak. "The Roles of Newspaper as a Communication Medium of Government to People After the General Election in 1969." Jurnal Komunikasi: Malaysian Journal of Communication 36, no. 1 (2020): 1–19. http://dx.doi.org/10.17576/jkmjc-2020-3601-01.

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39

Abdul Samat, Nor Hayati, Hasani Mohd. Ali, and Ahmad Shamsul Abd Aziz. "ELECTRONIC SHAREHOLDERS’ MEETING AS A NEW NORM AFTER COVID-19: IS MALAYSIA READY?" International Journal of Law, Government and Communication 5, no. 21 (2020): 248–56. http://dx.doi.org/10.35631/ijlgc.5210020.

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Electronic shareholders’ meeting is a modern method of conducting a shareholders’ meeting. When it was first introduced, the corporate community was less excited to take advantage of it. This situation changed when the world faced the COVID-19 pandemic. When human movement is being controlled to break the chain of infections, companies see electronic meetings as an alternative to hold shareholder meetings. Whether it can survive as the new norm of the corporate world depends on various factors. This paper analyse three things deem fundamental in assessing the issue. First is the law that can b
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40

OJKOVA, T., D. MICHOV, and R. JANKOVA. "ChemInform Abstract: The Triple System Water-Salt with Lithium Selenate, Sodium Selenate, Cobalt Selenate or Magnesium Selenate at 25 °C." ChemInform 24, no. 31 (2010): no. http://dx.doi.org/10.1002/chin.199331019.

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41

Vukšić, Neška. "Effect of selenium on the distribution of heavy metals in tissues of fallow deer (Dama dama L.)." Poljoprivreda 22, no. 1 (2016): 57. http://dx.doi.org/10.18047/poljo.22.1.12.

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42

Oykova, T., and D. Mihov. "Study on the Phase equilibrium in the Systems Sodium Selenate — Cadmium Selenate — Water and Sodium Selenate — Manganese Selenate — Water at 25 °C." Crystal Research and Technology 27, no. 5 (1992): 697–701. http://dx.doi.org/10.1002/crat.2170270522.

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43

Herman, Barbara, Piotr Rychter, and Robert Biczak. "Leaf celery reaction on 1,10-phenanthroline." Chemistry. Environment. Biotechnology 19 (2016): 137–45. http://dx.doi.org/10.16926/cebj.2016.19.19.

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44

Kralik, Zlata, Manuela Grčević, Gordana Kralik, and Danica Hanžek. "Važnost selena u hranidbi kokoši nesilica." Krmiva 61, no. 1 (2020): 17–22. http://dx.doi.org/10.33128/k.61.1.4.

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Selen je esencijalni mikroelement koji ljudi i životinje u organizam unose putem hrane. Uloga selena u organizmu je višestruka zbog njegovog sudjelovanja u nizu biokemijskih procesa. Međutim, vrlo niska razina selena u tlu, a posljedično tome i u krmi, može prouzročiti deficit ovog mikroelementa kod životinja, te kod ljudi. Deficit selena kod životinja može se očitovati kroz mnoge degenerativne promjene, bolest gušterače, slabiju reprodukciju i imunitet te različite mišićne distrofije, a kod ptica uzrokuje pojavu eksudativne dijateze, lošije operjavanje, slabiju proizvodnju, oplođenost i valiv
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45

Kamalov, R. M., G. S. Stepanov, I. A. Litvinov, and M. A. Pudovik. "1,3,4-Thia(selena)azaphospholines and phospholidines." Heteroatom Chemistry 5, no. 5-6 (1994): 469–77. http://dx.doi.org/10.1002/hc.520050509.

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46

Lizama A, Patricio. "Selena Millares. Prosas hispánicas de vanguardia." Acta literaria, no. 51 (December 2015): 171–75. http://dx.doi.org/10.4067/s0717-68482015000200011.

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47

ROVNER, SOPHIE. "UCSD SELECTS FOX." Chemical & Engineering News 82, no. 16 (2004): 9. http://dx.doi.org/10.1021/cen-v082n016.p009.

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48

Fleck, Michel. "Guanidinium hydrogen selenate." Acta Crystallographica Section E Structure Reports Online 62, no. 11 (2006): o4939—o4941. http://dx.doi.org/10.1107/s1600536806040396.

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49

Fábry, J., and T. Breczewski. "Thallium(I) selenate." Acta Crystallographica Section C Crystal Structure Communications 49, no. 10 (1993): 1724–27. http://dx.doi.org/10.1107/s0108270193003373.

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50

Courvoisier, T. "ESA Selects Integral." Europhysics News 24, no. 5 (1993): 111. http://dx.doi.org/10.1051/epn/19932405111.

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