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Figures – Chapter 18

Figures – Chapter 18. Figure 18.1 Procedural interaction between a diner and a waiter. Figure 18.2 Message-based interaction between a waiter and the kitchen. <starter> <dish name = “soup” type = “tomato” /> <dish name = “soup” type = “fish” /> <dish name = “pigeon salad” /> </starter>

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Figures – Chapter 18

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  1. Figures – Chapter 18

  2. Figure 18.1 Procedural interaction between a diner and a waiter

  3. Figure 18.2 Message-based interaction between a waiter and the kitchen <starter> <dish name = “soup” type = “tomato” /> <dish name = “soup” type = “fish” /> <dish name = “pigeon salad” /> </starter> <main course> <dish name = “steak” type = “sirloin” cooking = “medium” /> <dish name = “steak” type = “fillet” cooking = “rare” /> <dish name = “sea bass”> </main> <accompaniment> <dish name = “french fries” portions = “2” /> <dish name = “salad” portions = “1” /> </accompaniment>

  4. Figure 18.3 Middleware in a distributed system

  5. Figure 18.4 Client–server interaction

  6. Figure 18.5 Mapping of clients and servers to networked computers

  7. Figure 18.6 Layered architectural model for client–server application

  8. Figure 18.7 A traffic management system with a master-slave architecture

  9. Figure 18.8 Thin- and fat-client architectural models

  10. Figure 18.9 A fat-client architecture for an ATM system

  11. Figure 18.10 Three-tier architecture for an Internet banking system

  12. Figure 18.11 Use of client–server architectural patterns

  13. Figure 18.12 A distributed component architecture

  14. Figure 18.13 A distributed component architecture for a data mining system

  15. Figure 18.14 A decentralized p2p architecture

  16. Figure 18.15 A semicentralized p2p architecture

  17. Figure 18.16 Configuration of a software system offered as a service

  18. Figure 18.17 A multitenant database

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