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1

Graça, António JP, Antonio T. Amaral Júnior, Rosana Rodrigues, Leandro SA Gonçalves, Cláudia P. Sudré, Marcelo Vivas, and Paulo CT Melo. "Heterosis and combining ability of dual-purpose tomato hybrids developed to meet family farmers' needs in Brazil and Mozambique." Horticultura Brasileira 33, no. 3 (September 2015): 339–44. http://dx.doi.org/10.1590/s0102-053620150000200010.

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Brazil is the world eighth largest tomato producer and, within the country, the tomato production chain is segmented according to fruit destination: fresh consumption and processing (industrial supply). In contrast, Mozambique does not have a differentiated chain and cultivars are expected to serve both purposes. As there are no tomato breeding programs in Mozambique, cultivars used in the country come from other regions of the world, including Brazil. This paper describes the development and assessment of tomato hybrids with dual-purpose: fresh use and processing. Five tomato genotypes (B13LD, Castone, Massag-72, "Viradoro", and "Rio Grande") were crossed in complete diallel design without reciprocal, and the general and specific combining ability (GCA and SCA) and heterosis were estimated to ten agronomic and fruit quality traits. The offspring of cross B13LD x "Rio Grande" showed potential for use in dual purpose, considering SCA and heterosis estimates for fruit firmness (FF), total content of soluble solids (TSS), number of fruits per plant (NFP) and yield (YLD). Combinations B13LD x Castone, Massag-72 x "Viradoro", and Massag-72 x "Rio Grande", although having no strength to increase YLD, had positive heterosis for FF, TSS, and NFP. The development of high-yielding genotypes, with agronomic traits that meet the expectations of both markets are a breakthrough for Mozambican tomato producers and may also be very convenient to family farmers in Brazil. In both countries, these dual-purpose cultivars represent the freedom of choice to farmers, who will be then in position to allocate their production to the most profitable market segment.
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2

Amaral Júnior, Antonio T., António JP Graça, Marcelo Vivas, Alexandre P. Viana, and Rosana Rodrigues. "Prospecting of tomato hybrids for table and industry via mixed modeling and multivariate analysis." Horticultura Brasileira 35, no. 1 (March 2017): 20–25. http://dx.doi.org/10.1590/s0102-053620170104.

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ABSTRACT Dual-purpose tomato breeding, for table and industry, has great importance for tomato production and strong impact on Brazilian socioeconomic development. In the present study, we used the methodology of mixed models to estimate the combinatorial ability of five tomato lines evaluated in complete diallel scheme without reciprocal, and cluster analysis to prospect new double and triple hybrids constitutions. Thus, we observed that positive values of general combining ability occur in ‘B13LD’, ‘Viradoro’ and ‘Rio Grande’ (for fruit firmness), ‘B13LD’, ‘Castone’ and ‘Massag-72’ (for soluble solids content); and ‘Viradoro’ and ‘Rio Grande’ (for productivity). The crosses ‘B13LD x Rio Grande’ and ‘Massag-72 x Viradoro’ showed positive estimates of specific combination ability for soluble solids content, fruit firmness and productivity. The hybrid ‘B13LD x Rio Grande’ showed itself promising to be among those with the highest estimates of the genetic value of the cross for the three aforementioned traits. For the analysis of genetic divergence and estimate of combining ability it was possible to indicate two double and three triple hybrids.
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3

Mastandrea, Paolo. "SIDONIUS APOLLINARIS’ POETRY - (M.) Onorato Il castone e la gemma. Sulla tecnica poetica di Sidonio Apollinare. (Studi Latini 89.) Pp. 530. Naples: Paolo Loffredo Iniziative Editoriali, 2016. Paper, €36.80. ISBN: 978-88-99306-43-4." Classical Review 68, no. 1 (January 24, 2018): 114–17. http://dx.doi.org/10.1017/s0009840x17002475.

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4

Ringer, István, Péter Barkóczy, Árpád Kovács, and Lilla Pásztor. "Examination of the Microstructure of the Findings from Cannon Foundry Sárospatak." Materials Science Forum 729 (November 2012): 7–12. http://dx.doi.org/10.4028/www.scientific.net/msf.729.7.

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The Rákóczi Museum of the Hungarian National Museum revealed a cannon casting foundry in the territory of the castle of Sárospatak. The excavation started in the summer of 2006. A great amount of findings were revealed from the metallurgical, alloying and casting processes of the foundry. The Archeometallurgical Research Group of the University of Miskolc examines the microstructure and the chemical composition of these findings. The aim of this research work is to complete the knowledge of the contemporary literature and reconstruct the technological processes of the foundry. In this article the current status of the examination is introduced.
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5

Dar, MA. "Occurrence of Cytospora castanae sp. nov., associated with perennial cankers of Castanea sativa." Mycosphere 5, no. 6 (2014): 747–57. http://dx.doi.org/10.5943/mycosphere/5/6/5.

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6

Rengsomboon, A., S. Luankosolchai, N. Moonrin, W. Samit, S. Petcrie, R. Sirichaivetkul, and J. Kajornchaiyakul. "I-4 INVESTIGATION OF ALTERNATIVE DESIGN OF INVESTMENT CASTING SYSTEM(Session: Casting/Molding)." Proceedings of the Asian Symposium on Materials and Processing 2006 (2006): 150. http://dx.doi.org/10.1299/jsmeasmp.2006.150.

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7

Žmegač, Andrej, and Marijana Vojtić. "Dvorac Gornje Oroslavje." Peristil 56 (2014): 247–54. http://dx.doi.org/10.17685/peristil.56.22.

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8

Waghmare, S. N., C. N. Sakhale, M. S. Giripunje, and V. M. Sonde. "Design of Pig Casting Machine." International Journal of Engineering and Technology 2, no. 6 (2010): 586–71. http://dx.doi.org/10.7763/ijet.2010.v2.186.

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9

Sirichaivetkul, R., A. Rengsomboon, W. Samit, N. Moonrin, S. Petcrie, and J. Kajornchaiyakul. "I-3 ASSESSMENT OF REDUCED PRESSURE TEST FOR HYDORGEN MEASUREMENT OF ALUMINUM CASTING(Session: Casting/Molding)." Proceedings of the Asian Symposium on Materials and Processing 2006 (2006): 149. http://dx.doi.org/10.1299/jsmeasmp.2006.149.

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10

Howell, B., S. Kenaley, and R. Mathiasen. "First Report of Psittacanthus macrantherus on Pinus devoniana and Quercus castanea in Mexico." Plant Disease 90, no. 11 (November 2006): 1461. http://dx.doi.org/10.1094/pd-90-1461c.

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The mistletoe Psittacanthus macrantherus Eichl. (Loranthaceae) is an important parasite of pines (Pinus spp., Pinaceae) in Mexico (1). It has been reported to parasitize Pinus engelmannii Carr., P. herrerai Mart., P. lawsonii Roezl ex Gord. & Glend., P. lumholtzii Robins & Fern., P. oocarpa Schiede, and P. pseudostrobus Lindl. (1). During July 2005, we found this mistletoe parasitizing P. devoniana Lindl. and Quercus castanea Nee near Route 40 in Sinaloa, Mexico approximately 12 km west of El Palmito (23°30′N, 105°07′W, elevation 1,900 m). The mistletoe was common in P. devoniana, and some trees were severely infected (>10 plants per tree). However, no mortality associated with mistletoe infection in P. devoniana was observed. Only one infected tree of Q. castanea was observed in this area and it was not severely infected. We also observed this mistletoe on P. douglasiana Mart. along Route 40 west and east of El Palmito, but no specimens were collected because plants were very high in the crowns of the infected trees. To our knowledge, this is the first report of this mistletoe parasitizing P. devoniana, P. douglasiana, and Q. castanea (1). Specimens of Psittacanthus macrantherus from P. devoniana and Q. castenea have been deposited at the Deaver Herbarium (ASC), Northern Arizona University, Flagstaff (Accession Nos. 79534 and 79535). References: (1) B. Geils et al. Mistletoes of North American conifers. USDA For. Serv. Gen. Tech. Rep. RMRS-GTR-98, 2002.
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11

P ARCHANA, P. ARCHANA, M. JAGAN MOHAN REDDY, I. SREENIVASA RAO, and G. D. S. KUMAR G.D.S KUMAR. "Strategy to Enhance the Adaptability of Castor Growers Towards Climate Variability in Castor." International Journal of Scientific Research 2, no. 3 (June 1, 2012): 1–2. http://dx.doi.org/10.15373/22778179/mar2013/1.

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12

JAMROONRAT, S., and S. PITAKTHAPANAPHONG. "CAS-10: Optimisation of Runner System to Minimise Defects in Aluminium Casting Process(CAS-II: ADVANCED CASTING)." Proceedings of the JSME Materials and Processing Conference (M&P) 2005 (2005): 7. http://dx.doi.org/10.1299/jsmeintmp.2005.7_2.

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13

Thareja, Priyavrat. "Casting Lean ‘Make in India’ Products." Journal of Advanced Research in Quality Control & Management 4, no. 1 (August 17, 2019): 4–17. http://dx.doi.org/10.24321/2582.3280.201902.

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14

Kabdullinov, A. M., B. R. Nussupbekov, A. K. Khassennov, M. Stoev, and M. B. Karagaeva. "Automated control system for casting process." Bulletin of the Karaganda University. "Physics" Series 87, no. 3 (September 29, 2017): 65–70. http://dx.doi.org/10.31489/2017phys3/65-70.

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15

Wojtkiewicz, Sławomir. "STARY ZAMEK W GRODNIE. KONCEPCJA KSZTAŁTOWANIA ARCHITEKTURY KONTEKSTUALNEJ NA PRZYKŁADZIE ZAMKU W GRODNIE." space&FORM 2016, no. 26 (July 28, 2016): 63–74. http://dx.doi.org/10.21005/pif.2016.26.b-04.

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16

Lee, Soo-Ho, Ki-Hyoung Han, Jae-Ryu Bae, Tae-Won Kim, Sang-Sik Park, and Chung-Gil Kang. "A Study on the Low Temperature & High-strength Low-alloy Material for Casting Steel of the Offshore Structures." Journal of the Society of Naval Architects of Korea 45, no. 4 (August 31, 2008): 426–31. http://dx.doi.org/10.3744/snak.2008.45.4.426.

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17

Lee, Eun Ho, Shin Hyub Hong, and Young Je Cho. "Biological Activities of Extracts from Okkwang (Castanea crenata) Chestnut Bur." Journal of the Korean Society of Food Science and Nutrition 46, no. 5 (May 31, 2017): 572–80. http://dx.doi.org/10.3746/jkfn.2017.46.5.572.

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18

Molina, Jesús. "El hormigón como materia moldeable en la construcción de esculturas." Informes de la Construcción 48, no. 443 (June 30, 1996): 35–41. http://dx.doi.org/10.3989/ic.1996.v48.i443.1005.

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19

Young, Kevin. "Casting." Callaloo 16, no. 3 (1993): 542. http://dx.doi.org/10.2307/2932250.

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20

Glück, Louise. "Castile." Éire-Ireland 33, no. 1-2 (1997): 66–67. http://dx.doi.org/10.1353/eir.1997.0030.

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21

Colaianni, C. Alessandra. "Casting." JAMA 321, no. 15 (April 16, 2019): 1455. http://dx.doi.org/10.1001/jama.2019.3954.

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22

Satryb, Stefanie A., Tommie J. Wilson, and M. Miki Patterson. "Casting." Orthopaedic Nursing 30, no. 1 (2011): 37–41. http://dx.doi.org/10.1097/nor.0b013e31820574f9.

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23

&NA;. "Casting." Orthopaedic Nursing 30, no. 1 (2011): 42–43. http://dx.doi.org/10.1097/nor.0b013e31820a0a16.

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24

Boylan, Anne M., and Miriam Anne Bourne. "The Ladies of Castine: From the Minutes of the Castine, Maine, Woman's Club." New England Quarterly 59, no. 3 (September 1986): 439. http://dx.doi.org/10.2307/365345.

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25

CG, JC. "John Charles Caston Gill." British Dental Journal 213, no. 1 (July 2012): 43. http://dx.doi.org/10.1038/sj.bdj.2012.611.

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26

Shalomeev, V. A., E. I. Tsyvirko, V. V. Klochyhin, and I. O. Chetvertak. "Heat-resistant magnesium-based alloys for aircraft casting." Metaloznavstvo ta obrobka metalìv 95, no. 3 (September 15, 2020): 16–24. http://dx.doi.org/10.15407/mom2020.03.016.

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27

Rubio-Marcos, F., M. Chicharro, E. Bermejo, M. Moreno, A. Zapardiel, and M. Villegas. "Electrodos de carbono autosoportados obtenidos por colado en cinta." Boletín de la Sociedad Española de Cerámica y Vidrio 45, no. 3 (June 30, 2006): 207–11. http://dx.doi.org/10.3989/cyv.2006.v45.i3.307.

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28

Khare, Manu, and Deepak Kumar Deepak Kumar. "Optimization of Sand Casting Parameters using Factorial Design." International Journal of Scientific Research 3, no. 1 (June 1, 2012): 151–53. http://dx.doi.org/10.15373/22778179/jan2014/49.

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29

Villarroel González, Óscar. "Eclesiásticos en la diplomacia castellana en el siglo XV." Anuario de Estudios Medievales 40, no. 2 (December 7, 2010): 791–819. http://dx.doi.org/10.3989/aem.2010.v40.i2.324.

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30

N, Rajiv Kumar, Umar Ahamed P, and Mohamed Anwar A. U. "CFD Analysis of Fluid Flow in Sand Casting." International Journal of Trend in Scientific Research and Development Volume-3, Issue-2 (February 28, 2019): 905–13. http://dx.doi.org/10.31142/ijtsrd21553.

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31

Bharadwaj, Akash. "Casting of Hypoid Gear & Process Cost Reduction." International Journal Of Mechanical Engineering And Information Technology 05, no. 04 (April 25, 2017): 1560–83. http://dx.doi.org/10.18535/ijmeit/v5i4.04.

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32

FUJITA, Masato. "Casting and die casting of aluminum alloys." Journal of Japan Institute of Light Metals 44, no. 10 (1994): 574–90. http://dx.doi.org/10.2464/jilm.44.574.

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33

Tani, M., K. Tanaka, S. Fukunaga, T. Toh, K. Tunenari, K. Umetsu, K. Hayashi, and M. Zeze. "Pulsating electromagnetic casting technique for slab casting." International Journal of Cast Metals Research 22, no. 1-4 (August 2009): 298–301. http://dx.doi.org/10.1179/136404609x368019.

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34

Hebsur, Naveen, and Sunil Mangshetty. "Casting Simulation for Sand Casting of Flywheel." IOSR Journal of Mechanical and Civil Engineering 11, no. 4 (2014): 37–41. http://dx.doi.org/10.9790/1684-11473741.

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35

Fernandes, Tanya. "Plaster casting." Nursing Standard 23, no. 51 (August 26, 2009): 57. http://dx.doi.org/10.7748/ns2009.08.23.51.57.c7225.

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Winifred, Sargerson. "Plaster casting." Nursing Standard 25, no. 34 (April 27, 2011): 55. http://dx.doi.org/10.7748/ns2011.04.25.34.55.c8471.

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37

Miles, Sue. "Excellent casting." Nursing Standard 2, no. 41 (July 16, 1988): 22. http://dx.doi.org/10.7748/ns.2.41.22.s61.

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38

Gallacher, Rose. "Plaster casting." Nursing Standard 24, no. 44 (July 7, 2010): 59–60. http://dx.doi.org/10.7748/ns.24.44.59.s53.

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39

Rutter, Philip A., G. Miller, and Jerry A. Payne. "CHESTNUTS (CASTANEA)." Acta Horticulturae, no. 290 (May 1991): 761–90. http://dx.doi.org/10.17660/actahortic.1991.290.17.

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40

Anonymous. "Casting Copy." Physical Review Letters 54, no. 1 (January 7, 1985): 3–4. http://dx.doi.org/10.1103/physrevlett.54.3.

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41

Phillips, Maha Khan. "Shadow Casting." CFA Institute Magazine 26, no. 4 (July 2015): 24–28. http://dx.doi.org/10.2469/cfm.v26.n4.8.

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42

Vynnycky, Michael. "Continuous Casting." Metals 9, no. 6 (June 3, 2019): 643. http://dx.doi.org/10.3390/met9060643.

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Continuous casting is a process whereby molten metal is solidified into a semi-finished billet, bloom, or slab for subsequent rolling in finishing mills; it is the most frequently used process to cast not only steel, but also aluminum and copper alloys [...]
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43

Yarnal, Careen Mackay, and Deborah Kerstetter. "Casting Off." Journal of Travel Research 43, no. 4 (May 2005): 368–79. http://dx.doi.org/10.1177/0047287505274650.

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44

Rapp, Bob. "Casting aluminum." Materials Today 8, no. 7 (July 2005): 6. http://dx.doi.org/10.1016/s1369-7021(05)70961-5.

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45

Häfner, Sophia. "Model casting." Microbes and Infection 15, no. 8-9 (July 2013): 535–39. http://dx.doi.org/10.1016/j.micinf.2013.06.005.

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46

Ragsdale, Lyn, and Jerrold G. Rusk. "Casting Votes." Political Research Quarterly 64, no. 4 (September 8, 2010): 840–57. http://dx.doi.org/10.1177/1065912910379230.

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47

Bubnova, Olga. "Crystal casting." Nature Nanotechnology 13, no. 3 (March 2018): 178. http://dx.doi.org/10.1038/s41565-018-0098-y.

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48

Newman, Lee S. "CASTING ALLOYS." Journal of the American Dental Association 128, no. 5 (May 1997): 550. http://dx.doi.org/10.14219/jada.archive.1997.0250.

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49

Reinsmith, William A. "Casting Off." Educational Forum 67, no. 4 (December 31, 2003): 390–92. http://dx.doi.org/10.1080/00131720308984588.

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50

Robertson, Heather-Jane. "Casting Call." Phi Delta Kappan 88, no. 3 (November 2006): 251–52. http://dx.doi.org/10.1177/003172170608800327.

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