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Note, 9 p. 5. Ping. L., Leung, W.K., Phamdo, N. (1999) Low-density parity-check codes with semi-random paritycheck matrix. IEE Electronics Letters, 35, 38-39. 6. Honary, B., Kou, Y., Xu, J., Lin, S. (2004) Construction of low-density parity-check codes based on balanced incomplete block designs. IEEE Trans. Inf. Theory, 50(6), 1257-1269. 7. Ohtsuki, T. (2007) LDPC codes in communications and broadcasting. IEIC Trans. Commun., 90-B(3), 440-453. 8. Osypchuk, S. (2014) The analytical description of regular LDPC codes error-correcting ability.In Proceedings of the 12th

References Amir, E. and Maynard-Zhang, P. (2004). Logic-based subsumption architecture, Artificial Intelligence   153 (1-2): 167-237. Aslani, M.and Haarslev, V. (2008). Towards parallel classifcation of TBoxes, in F. Baader, C. Lutz, and B. Motik (Eds.), Proceedings of the 21st International Workshop on Description Logics (DL2008) , CEUR Workshop Proceedings, Vol. 353. Baader, F., McGuinness, D., Nardi, D. and Patel-Schneider, P. (Eds.) (2003). The Description Logic Handbook: Theory, Implementation, and Applications , Cambridge University Press, Cambridge

Switzerland (Acari: Mesostigmata) with the description of Discourella helvetica n. sp. Revue Suisse de Zoologie, 118, 99-106. Kontschan, J. 2013. Uropodina mites of the Balkan Peninsula (Acari: Mesostigmata). Opuscula Zoology, 44, 97-131. Kontschan, J. 2014. Uropodina (Acari: Mesostigmata) of Transylvania (Romania). Acarological studies 3. AdLibrum, Budapest, 140 Lindquist, E. E., Krantz, G. W., Walter, D. E. 2009. Order Mesostigmata. In: Krantz, G. W., Walter, D. E., eds. A Manual of Acarology. 3rd ed. Texas Tech University Press, Lubbock, 124-232. Mašan, P. 2001. Roztoee

References VAISHAMPAYAN, V. A.: Design of Multiple Description Scalar Quantizers, IEEE Trans. on Information Theory 39 (May 1993), 821-834. VAISHAMPAYAN, V. A.—BATLLO, J. C.: Asymptotic analysis of multiple description quantizers, IEEE Trans. On Information Theory, vol. 44, pp. 278-284, Jan. 1998. SERVETTO, S. D.—RAMCHANDRAN, K.—VAISHAMPAYAN, V.—NAHRSTEDT, K.: Multiple description wavelet based image coding, in ICIP 98, 1998. WANG, Y.—ORCHARD, M.—REIBMAN, A. R.: Multiple Description Image Coding for Noisy Channels by Pairing Transform Coefficients, Proc. IEEE

this genus and present revised description of Synodontella zambezensis . Material and Methods In total, 107 specimens of Synodontis zambezensis were collected from February 2012 to January 2013, from Flag Boshielo Dam (24° 49’ 05.7”S; 029° 24’ 50.9” E) using a combination of conventional angling gear and gill nets. The fish were weighed (g) and measured for total length (cm). All details on the sample sizes and parasitic infection are given in Table 1 . Specimens were kept in aerated holding tanks to ensure the well-being of the specimens, until each individual

from nuclear DNA sequences with a review of morphological evidence for relationship. Systematic Entomology 37 : 603–616. DUCKHOUSE D. A. 1978: Non-phlebotomine Psychodidae (Diptera, Nematocera) of southern Africa. II. Subfamily Psychodinae: Neoarisemus and the brunettoid and telmatoscopoid genera. Annals of the Natal Museum 23 : 305–359. DUCKHOUSE D. A. 1987: A revision of Afrotropical Setomima, elucidation of their genealogical relationships and descriptions of other Afrotropical Psychodinae (Diptera: Psychodidae). Annals of the Natal Museum 28 : 231

Implementation of the Scheduling Domain Description Model

This paper presents the problem of auniform scheduling domain description. It was established that the algorithm used for scheduling is general, disregarding the type of scheduling domain. On the basis of five different scheduling domains, a general description model was developed. The research is focused on the programming application of the resource scheduling model, presented as a UML class diagram. Diverse meta-languages for the model description were considered. Of these XML, an EAV model and object oriented languages have shown to be the most effective. Even though Java is not widely used as a description language, it has proved effective as a meta-language for the description of the extensible scheduling model.

been raised on fairly robust and conspicuous characters ( Sudhaus & Fürst von Lieven 2003 ). The species list of the genus was revised by Sudhaus and Fürst von Lieven (2003) who considered 28 valid species. Till now, three more species have been added by Kanzaki et al . (2009 , 2010a 2010b ). It is a fact that due to insufficient or poor descriptions and illustrations, certain species cannot be clearly distinguished or differentiated. However, few high weight characters that have the diagnostic value, can be aptly used in species differentiation e.g., the

test systems, Journal of Microscopy 125 : 51-66. Kurzydłowski K.J. and Ralph B. (1995): The Quantitative Description of the Microstructure of Materials , CRC Press, London. Spychalski W.L., Kurzydłowski K.J. and Ralph B. (2002). Computer study of inter- and intragranular surface cracks in brittle polycrystals, Materials Characterization 49 (9): 45-53. Kril C.E. and Birringer R. (1998). Estimating Grain-Size Distributions in Nanocrystalline Materials form X-Ray Diffraction Profile Analysis, Philosophical Magazine A 77 (3): 621-640. Petch N.J. (1953). The cleavage

. 2010: Systematic notes on the genus Claassenia Wu (Plecoptera: Perlidae), with description of a new species. Illiesia 6(24) : 303–314. TESLENKO V. A. & ZHILTZOVA L. A. 2009: Key to the stoneflies (Insecta, Plecoptera) of Russia and adjacent countries: imagines and nymphs. Russian Academy of Sciences, Vladivostok, 381 pp (in Russian). WU C. F. 1934: A homonym of a plecopterous genus. Annals of the Entomological Society of America 27 : 256. WU C. F. 1935: New species of stoneflies from east and south China. Bulletin of the Peking Society of Natural History 9