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1

King, Graham. "Radio Ga Ga." New Scientist 209, no. 2804 (March 2011): 33. http://dx.doi.org/10.1016/s0262-4079(11)60625-8.

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2

Gill, Rosalind. "Radio Ga-Ga?" Cultural Studies 5, no. 1 (January 1991): 113–21. http://dx.doi.org/10.1080/09502389100490101.

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3

Gutenstein, Marc. "Radio Ga-Ga." BMJ 320, Suppl S4 (April 1, 2000): 0004124b. http://dx.doi.org/10.1136/sbmj.0004124b.

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4

Marcus, Gary F. "Pabiku and Ga Ti Ga." Current Directions in Psychological Science 9, no. 5 (October 2000): 145–47. http://dx.doi.org/10.1111/1467-8721.00080.

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5

Fedushkin, Igor L., Alexandra A. Skatova, Vladimir A. Dodonov, Xiao-Juan Yang, Valentina A. Chudakova, Alexander V. Piskunov, Serhiy Demeshko, and Evgeny V. Baranov. "Ligand “Brackets” for Ga–Ga Bond." Inorganic Chemistry 55, no. 17 (August 22, 2016): 9047–56. http://dx.doi.org/10.1021/acs.inorgchem.6b01514.

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6

Granok, H., B. A. Leibovitch, C. D. Shaffer, and S. C. R. Elgin. "Chromatin: Ga-ga over GAGA factor." Current Biology 5, no. 3 (March 1995): 238–41. http://dx.doi.org/10.1016/s0960-9822(95)00048-0.

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7

Mayo, Dennis H., Yang Peng, Peter Zavalij, Kit H. Bowen, and Bryan W. Eichhorn. "Tetrabromidobis(dicyclohexylphosphane-κP)digallium(Ga—Ga)." Acta Crystallographica Section E Structure Reports Online 68, no. 10 (September 5, 2012): m1245. http://dx.doi.org/10.1107/s1600536812035982.

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8

Shimizu, Hiroyuki. "Glycoalbumin (GA)." Nihon Naika Gakkai Zasshi 99, no. 11 (2010): 2862–67. http://dx.doi.org/10.2169/naika.99.2862.

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9

Li, Xiao-Wang, Pingrong Wei, Brent C. Beck, Yaoming Xie, Henry F. Schaefer III, Jianrui Su, and Gregory H. Robinson. "Synthesis and molecular structure of an unusual –Ga–Ga–Ga– linked organometallic." Chemical Communications, no. 6 (2000): 453–54. http://dx.doi.org/10.1039/a909451b.

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10

Rickard, C. E. F., M. J. Taylor, and M. Kilner. "Tetrachlorobis(hexamethylphosphoramide-O)digallium(II)(Ga–-Ga)." Acta Crystallographica Section C Crystal Structure Communications 55, no. 8 (August 15, 1999): 1215–16. http://dx.doi.org/10.1107/s0108270199005843.

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11

Deshmane, Chinmay A., Jacek B. Jasinski, Paul Ratnasamy, and Moises A. Carreon. "Epoxidation of cyclooctene over mesoporous Ga, Ga–Nb, and Ga–Mo oxide catalysts." Catalysis Communications 15, no. 1 (November 2011): 46–51. http://dx.doi.org/10.1016/j.catcom.2011.07.027.

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12

Garcia-Arguello, Segundo Francisco, Beatriz Lopez-Lorenzo, and Rafael Ruiz-Cruces. "Automated production of [68 Ga]Ga-DOTANOC and [68 Ga]Ga-PSMA-11 using a TRACERlab FXFN synthesis module." Journal of Labelled Compounds and Radiopharmaceuticals 62, no. 3 (February 5, 2019): 146–53. http://dx.doi.org/10.1002/jlcr.3706.

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13

GREENBAUM, LARRY. "Ga-boing!" Rheumatology News 10, no. 4 (April 2011): 73. http://dx.doi.org/10.1016/s1541-9800(11)70293-9.

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14

Bhattacharyya, Indrajit, Anup Kumar Bandypopadhyay, Bhaskar Gupta, Aloknath Chattopadhyay, Rajeswari Chattopadhyay, and Kiyotoshi Yasumoto. "Vector GA." ACM SIGSOFT Software Engineering Notes 34, no. 6 (December 3, 2009): 1–5. http://dx.doi.org/10.1145/1640162.1640163.

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15

Takahashi, Hiroki. "GA (GeneticAlgorithm)." Journal of The Institute of Image Information and Television Engineers 66, no. 3 (2012): 209–11. http://dx.doi.org/10.3169/itej.66.209.

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16

Hiy, Dimitri. "Ga ervoor!" Maatwerk 17, no. 1 (February 2016): 11–13. http://dx.doi.org/10.1007/s12459-016-0005-2.

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17

Jung, Gwang-Sun, Young-Min Shin, Yang-Hwi Cho, Jae-Ho Yun, and Byung-Tae Ahn. "Ga Distribution in Cu(In,Ga)Se2Thin Film Prepared by Selenization of Co-Sputtered Cu-In-Ga Precursor with Ga2Se3Layer." Korean Journal of Materials Research 20, no. 8 (August 27, 2010): 434–38. http://dx.doi.org/10.3740/mrsk.2010.20.8.434.

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18

Kryshtab, T. G., V. S. Khomchenko, V. P. Papusha, M. O. Mazin, and Yu A. Tzyrkunov. "Thin ZnS:Cu,Ga and ZnO:Cu,Ga film phosphors." Thin Solid Films 403-404 (February 2002): 76–80. http://dx.doi.org/10.1016/s0040-6090(01)01535-8.

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19

Ferchaud, E., F. Christien, V. Barnier, and P. Paillard. "Characterisation of Ga-coated and Ga-brazed aluminium." Materials Characterization 67 (May 2012): 17–26. http://dx.doi.org/10.1016/j.matchar.2012.02.013.

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20

Vahedi, Nafiseh, Majid Mohammadhosseini, and Mehdi Nekoei. "QSAR Study of PARP Inhibitors by GA-MLR, GA-SVM and GA-ANN Approaches." Current Analytical Chemistry 16, no. 8 (October 26, 2020): 1088–105. http://dx.doi.org/10.2174/1573411016999200518083359.

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Background: The poly(ADP-ribose) polymerases (PARP) is a nuclear enzyme superfamily present in eukaryotes. Methods: In the present report, some efficient linear and non-linear methods including multiple linear regression (MLR), support vector machine (SVM) and artificial neural networks (ANN) were successfully used to develop and establish quantitative structure-activity relationship (QSAR) models capable of predicting pEC50 values of tetrahydropyridopyridazinone derivatives as effective PARP inhibitors. Principal component analysis (PCA) was used to a rational division of the whole data set and selection of the training and test sets. A genetic algorithm (GA) variable selection method was employed to select the optimal subset of descriptors that have the most significant contributions to the overall inhibitory activity from the large pool of calculated descriptors. Results: The accuracy and predictability of the proposed models were further confirmed using crossvalidation, validation through an external test set and Y-randomization (chance correlations) approaches. Moreover, an exhaustive statistical comparison was performed on the outputs of the proposed models. The results revealed that non-linear modeling approaches, including SVM and ANN could provide much more prediction capabilities. Conclusion: Among the constructed models and in terms of root mean square error of predictions (RMSEP), cross-validation coefficients (Q2 LOO and Q2 LGO), as well as R2 and F-statistical value for the training set, the predictive power of the GA-SVM approach was better. However, compared with MLR and SVM, the statistical parameters for the test set were more proper using the GA-ANN model.
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21

Chiba, D., N. Akiba, F. Matsukura, Y. Ohno, and H. Ohno. "Properties of (Ga,Mn)As/(Al,Ga)As/(Ga,Mn)As magnetic trilayer structures." Physica E: Low-dimensional Systems and Nanostructures 10, no. 1-3 (May 2001): 278–82. http://dx.doi.org/10.1016/s1386-9477(01)00100-x.

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22

Cokoja, Mirza, Tobias Steinke, Christian Gemel, Thea Welzel, Manuela Winter, Klaus Merz, and Roland A. Fischer. "Ligand properties of Cp*Ga: new examples of Mo–Ga and W–Ga complexes." Journal of Organometallic Chemistry 684, no. 1-2 (November 2003): 277–86. http://dx.doi.org/10.1016/s0022-328x(03)00758-7.

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23

Sanden, Tanja, Michael T. Gamer, Anatoly A. Fagin, Valentina A. Chudakova, Sergey N. Konchenko, Igor L. Fedushkin, and Peter W. Roesky. "Synthesis of Unsupported Ln–Ga Bonds by Salt Metathesis and Ga–Ga Bond Reduction." Organometallics 31, no. 11 (May 25, 2012): 4331–39. http://dx.doi.org/10.1021/om300309b.

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24

Jendrzejczyk-Handzlik, Dominika, Piotr Handzlik, and Krzysztof Fitzner. "Enthalpies of mixing of liquid Ag–Ga, Cu–Ga and Ag–Cu–Ga alloys." Calphad 44 (March 2014): 39–47. http://dx.doi.org/10.1016/j.calphad.2013.07.009.

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25

Jendrzejczyk-Handzlik, Dominika. "Enthalpies of mixing of liquid Ag–Ga, Au–Ga and Ag–Au–Ga alloys." Journal of Chemical Thermodynamics 107 (April 2017): 114–25. http://dx.doi.org/10.1016/j.jct.2016.12.020.

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26

Wehmschulte, Rudolf J, and Philip P Power. "Ga-Ga-Mehrfachbindungscharakter in Na2[Ga(GaTrip2)3] und ein Vergleich mit dem neutralen Ga(GaTrip2)3 (Trip=2,4,6-iPr3C6H2)." Angewandte Chemie 110, no. 22 (November 16, 1998): 3344–46. http://dx.doi.org/10.1002/(sici)1521-3757(19981116)110:22<3344::aid-ange3344>3.0.co;2-a.

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27

Wehmschulte, Rudolf J., and Philip P. Power. "Multiple Ga−Ga Bonding Character in Na2[Ga(GaTrip2)3], and a Comparison with Neutral Ga(GaTrip2)3 (Trip=2,4,6-iPr3C6H2)." Angewandte Chemie International Edition 37, no. 22 (December 4, 1998): 3152–54. http://dx.doi.org/10.1002/(sici)1521-3773(19981204)37:22<3152::aid-anie3152>3.0.co;2-7.

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28

Shirai, T., J. Reader, A. E. Kramida, and J. Sugar. "Spectral Data for Gallium: Ga I through Ga XXXI." Journal of Physical and Chemical Reference Data 36, no. 2 (June 2007): 509–615. http://dx.doi.org/10.1063/1.2207144.

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29

Sang Soo Lee. "Reinforcing Grammatical Consideration through Japanese Education - Focus on the Conclusive Sentence of 「ga+teiru」 「ga+rareteiru」「ga+raretearu」「ga+tearu」「wo+tearu」-." Journal of the society of Japanese Language and Literature, Japanology ll, no. 67 (November 2014): 179–200. http://dx.doi.org/10.21792/trijpn.2014..67.009.

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30

Емец, В. В., and Б. Б. Дамаскин. "Двумерное давление хемосорбированных молекул диметилформамида и N-метилформамида на Ga-, (In–Ga)- и (Tl–Ga)-электродах." Электрохимия 51, no. 8 (2015): 891–97. http://dx.doi.org/10.7868/s0424857015080058.

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31

Kim, Jong Su. "Ga-migration on a Ga-rich and As-stabilized surfaces: Ga-droplet and GaAs- nanostructure formation." Materials Science in Semiconductor Processing 57 (January 2017): 70–76. http://dx.doi.org/10.1016/j.mssp.2016.10.003.

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32

Kotipalli, Ratan, Bart Vermang, Viktor Fjällström, Marika Edoff, Romain Delamare, and Denis Flandre. "Influence of Ga/(Ga + In) grading on deep-defect states of Cu(In,Ga)Se2solar cells." physica status solidi (RRL) - Rapid Research Letters 9, no. 3 (February 14, 2015): 157–60. http://dx.doi.org/10.1002/pssr.201510024.

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33

Nekoei, Mehdi, Nasser Goudarzi, Saeeid Nekoei, and Majid Mohammadhosseini. "QSAR Study of Arylsulfonylpiperazine Inhibitors of 11β-HSD1 by GA-MLR, GA-PLS and GA-ANN." Analytical Chemistry Letters 4, no. 1 (January 2, 2014): 14–28. http://dx.doi.org/10.1080/22297928.2013.856167.

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34

Kushida, Ayako, Teruyuki Ikeda, Hiroshi Numakura, and Masahiro Koiwa. "Thermodynamic Activity of Ga in Ni3Ga." Journal of the Japan Institute of Metals 64, no. 3 (2000): 202–6. http://dx.doi.org/10.2320/jinstmet1952.64.3_202.

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35

Rao, S. S., W. P. Gillin, and K. P. Homewood. "Interdiffusion of the group-III sublattice in In-Ga-As-P/In-Ga-As-P and In-Ga-As/In-Ga-As heterostructures." Physical Review B 50, no. 11 (September 15, 1994): 8071–73. http://dx.doi.org/10.1103/physrevb.50.8071.

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36

Uhl, Werner, and Abdel Hakim El-Hamdan. "Die Reaktion des Digalliumsubiodids R(I)Ga-Ga(I)R [R = C(SiMe3)3] mit Lithium-diphenylphosphanid – radikalische Öffnung der Ga-Ga-Bindung." Zeitschrift für anorganische und allgemeine Chemie 632, no. 5 (April 2006): 793–96. http://dx.doi.org/10.1002/zaac.200500417.

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37

Hyoun-jin, Ju, and Claude Mouchard. "Yi Ga-lim." Po&sie 139-140, no. 1 (2012): 205. http://dx.doi.org/10.3917/poesi.139.0205.

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38

Absaloms, Heywood, and Takehiko Tomikawa. "GA RELAXATION LABELING." IEEJ Transactions on Electronics, Information and Systems 119, no. 12 (1999): 1489–99. http://dx.doi.org/10.1541/ieejeiss1987.119.12_1489.

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39

Nagao, Tomoharu. "What's GA GP ?" Journal of the Institute of Image Information and Television Engineers 55, no. 7 (2001): 982–83. http://dx.doi.org/10.3169/itej.55.982.

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40

Al-Dallal, Ammar, and Rasha S. Abdul-Wahab. "GA on IR." International Journal of Artificial Life Research 3, no. 2 (April 2012): 1–14. http://dx.doi.org/10.4018/jalr.2012040101.

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Increasing the growth rates of websites’ number has led to the challenge of assisting Web customers in finding appropriate details from the Internet using an intelligent search engine. Information retrieval (IR) is an essential and useful strategy for Web users; thus, different strategies and techniques are designed for such purpose. Currently, the focus on the usefulness of Artificial Intelligence (AI) has been improved with IR. One AI area is Evolutionary Computation (EC), which is based on designs of natural selection. A traditional and important strategy in EC is Genetic Algorithm (GA); this paper adopts the GA technique to enhance the retrieval of HTML documents. This improvement is obtained by creating a modern evaluation function and applying a hybrid crossover operator. The proposed evaluation function is based on term proximity, keyword probability within the document, and HTML tag weight query. Experimental results are compared with two well known evaluation function functions applied in IR domain which are Okapi-BM25 and Bayesian interface network model. The results demonstrate a good level of enhancement to the recall and precision. In addition, the documents retrieved by the proposed system were more accurate and relevant to the queries than that retrieved by other models.
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41

Causey, C. "OMFS: GA rights." British Dental Journal 222, no. 8 (April 2017): 565. http://dx.doi.org/10.1038/sj.bdj.2017.342.

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42

Lie Andreassen, Anne, and Siri Thoresen. "Hjelpearbeid ga mening." Sykepleien 96, no. 07 (2008): 42–46. http://dx.doi.org/10.4220/sykepleiens.2008.0026.

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43

Glomsås, Heidi Snoen. "Gründercamp ga mersmak." Sykepleien, no. 4 (April 2014): 82–83. http://dx.doi.org/10.4220/sykepleiens.2014.0039.

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44

DEVENEY, JAMES K., and DAVID R. FINSTON. "SLICED Ga ACTIONS." International Journal of Algebra and Computation 11, no. 01 (February 2001): 19–24. http://dx.doi.org/10.1142/s0218196701000413.

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Let k be a field of characteristic zero. Certain classes of fixed point free actions of the additive group of k on affine n-space over k are known to be conjugate to global translations (i.e. to admit equivariant slices). These classes include actions on complex three space for which the invariant ring contains a variable, and certain generalizations of such actions to affine space of any dimension. Methods to construct an equivariant slice for these classes are presented.
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45

Bjermeland, Monica. "«Angst» ga pillefangst." rus & avhengighet 9, no. 01 (February 13, 2006): 5–8. http://dx.doi.org/10.18261/issn0809-2834-2006-01-13.

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46

Beamish, John C., Alan Boardman, and Ian J. Worrall. "Neutral complexes of gallium di-iodide containing Ga—Ga bonds." Polyhedron 10, no. 1 (January 1991): 95–99. http://dx.doi.org/10.1016/s0277-5387(00)83553-6.

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47

Morfin, Jean-François, and Éva Tóth. "Kinetics of Ga(NOTA) Formation from Weak Ga-Citrate Complexes." Inorganic Chemistry 50, no. 20 (October 17, 2011): 10371–78. http://dx.doi.org/10.1021/ic201445e.

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48

Nissan, Ifat, Vijay Bhooshan Kumar, Ze'ev Porat, Darko Makovec, Orit Shefi, and Aharon Gedanken. "Sonochemically-fabricated Ga@C-dots@Ga nanoparticle-aided neural growth." Journal of Materials Chemistry B 5, no. 7 (2017): 1371–79. http://dx.doi.org/10.1039/c6tb02508k.

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49

Barbier, J., and C. Frampton. "The crystal structure of (Mg,Ga)8(Ga,Ge)2O12." Zeitschrift für Kristallographie 198, no. 1-2 (January 1992): 79–88. http://dx.doi.org/10.1524/zkri.1992.198.1-2.79.

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50

Li, Yaqi, Jingwei Zhang, Fanxing Yin, Yuqing Wang, Haifeng Feng, Si Zhou, and Yi Du. "Ultra-thin Ga nanosheets: analogues of high pressure Ga(iii)." Nanoscale 11, no. 37 (2019): 17201–5. http://dx.doi.org/10.1039/c9nr05597e.

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