Get Computer Applications for Graphics, Grid Computing, and PDF

By Sang-Youn Kim, Dong-Soo Choi, Won-Hyung Park (auth.), Tai-hoon Kim, Hyun-seob Cho, Osvaldo Gervasi, Stephen S. Yau (eds.)

ISBN-10: 3642355994

ISBN-13: 9783642355998

ISBN-10: 3642356001

ISBN-13: 9783642356001

This quantity constitutes the refereed court cases of the foreign meetings, FGCN and DCA 2012, held as a part of the longer term new release details know-how convention, FGIT 2012, Kangwondo, Korea, in December 2012. The papers awarded have been conscientiously reviewed and chosen from quite a few submissions and concentrate on some of the elements of grid and disbursed computing, commercial surroundings, protection and healthiness, and special effects, animation and game.

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Additional resources for Computer Applications for Graphics, Grid Computing, and Industrial Environment: International Conferences, GDC, IESH and CGAG 2012, Held as Part of the Future Generation Information Technology Conference, FGIT 2012, Gangneug, Korea, December 16-19, 2012.

Sample text

Before presenting the patterns for class responsibility assignment, we introduce a domain model which provides idioms for the composition of each pattern. The participating roles in the domain model are explained. We pick up a pattern specification and explain the way of composing the pattern. Keywords: class responsibility assignment, pattern language, information system. 1 Introduction Design is the first phase in software development where an abstract solution is contrived after the problem analysis of requirements.

2. 2 Experimental Testbed For analyzing the performance of the proposed Fast Auto Discovery algorithm, we configured the network which contains 5~100 participants with 10kbps link. This configuration is actually equivalent to the network which contains 100,000 participants with a 10Mbps link. The number of rounds for registering the entire participants depends on the number of participants. The difference between the testbed and the actual situation is calculated by Equation 12.  1   1  R1 = log P ( N )   , R2 = log P ( N )   , K  1  K2    K  R1 = R2 1 + log  1   K2  K2    (12) Figure 5 is the simulated result using the Equation 12.

In general, assigning class responsibility heavily relies on the developer's experience and knowledge about the application domain and hard to be acquired through training [2]. There has been some work on addressing CRA [1, 3, 4, 5, 6]. Larman [1] presents General Responsibility Assignment Software Patterns (GRASP) in the effort of addressing the above, which provides general guidelines for CRA. However, GRASP leaves much of concrete details on the developer's experience and judgement. Other approaches address optimization of CRA.

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Computer Applications for Graphics, Grid Computing, and Industrial Environment: International Conferences, GDC, IESH and CGAG 2012, Held as Part of the Future Generation Information Technology Conference, FGIT 2012, Gangneug, Korea, December 16-19, 2012. by Sang-Youn Kim, Dong-Soo Choi, Won-Hyung Park (auth.), Tai-hoon Kim, Hyun-seob Cho, Osvaldo Gervasi, Stephen S. Yau (eds.)


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