Computer Network Fragmentation and Routing Protocol (ET: 1.5 Hours)
Fragmentation and Routing Protocol
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  • Explain fragmentation in the Network Layer. Why is IP fragmentation required? Discuss the role of MTU, Fragment Offset, Identification, and the More Fragments (MF) flag in IPv4 fragmentation.
  • Consider an IP packet with a total length of 4500 bytes, including a 20-byte IPv4 header and a 40-byte TCP header. The packet is forwarded to an IPv4 router that supports a maximum transmission unit (MTU) of 600 bytes. Assume that the length of the IP header in all outgoing fragments is 20 bytes and the fragmentation offset value stored in the first fragment is 0. Determine the fragmentation offset value stored in the third fragment.
  • What is the Record Route (RR) option in IPv4? Explain its purpose and determine the maximum number of IPv4 router addresses that can be listed in the Record Route option field of an IPv4 header.
  • An IP datagram of size 1000 bytes arrives at a router. The router has to forward this packet through a link whose MTU is 100 bytes. Assume that the size of the IP header is 20 bytes. Determine the number of fragments into which the IP datagram will be divided for transmission. Also determine the data size carried by each fragment.
  • Explain the Distance Vector Routing algorithm. Discuss how routers exchange distance vectors and explain the Bellman-Ford equation used to calculate the shortest path.
  • What is Link State Routing? Explain the major steps involved in Link State Routing. Discuss Link State Advertisement (LSA), flooding, and the role of Dijkstra’s Shortest Path First algorithm.
  • Compare Distance Vector Routing and Link State Routing.
  • Compare RIP, OSPF, and BGP based on routing algorithm, routing metric, network scope, convergence, scalability, and practical applications.
📘 Fragmentation and Routing Protocol
1. What is IP fragmentation?
2. Which field in an IPv4 header identifies fragments belonging to the same original datagram?
3. What does MTU stand for?
4. Which IPv4 header field specifies the position of a fragment in the original datagram?
5. In IPv4 fragmentation, what is the unit of the Fragment Offset field?
6. Consider an IPv4 packet of total length 4500 bytes with a 20-byte header. If the outgoing MTU is 600 bytes, what is the maximum data size of each full-sized fragment?
7. For the 4500-byte IPv4 packet with a 600-byte MTU, what is the Fragment Offset of the third fragment?
8. What is the purpose of the More Fragments (MF) flag in IPv4?
9. What is the Fragment Offset value of the first fragment?
10. An IPv4 datagram has a total size of 1000 bytes and a 20-byte header. If the outgoing MTU is 100 bytes, what is the maximum data carried by each full-sized fragment?
11. For the 1000-byte datagram with a 100-byte MTU and a 20-byte header, how many fragments are required?
12. What is the maximum number of IPv4 router addresses that can be recorded in the Record Route (RR) option?
13. What is the main purpose of the IPv4 Record Route option?
14. What is Distance Vector Routing?
15. Which algorithm is commonly associated with Distance Vector Routing?
16. In Distance Vector Routing, what information does a router primarily exchange with its neighbors?
17. What does the Bellman-Ford equation help a router determine?
18. In Distance Vector Routing, what is a next hop?
19. What is a major disadvantage of Distance Vector Routing?
20. What is Link State Routing?
21. Which algorithm is commonly used in Link State Routing?
22. What does Dijkstra's algorithm calculate?
23. What does N' represent in the Dijkstra shortest path algorithm?
24. In a Dijkstra table, what does D(v) represent?
25. In a Dijkstra table, what does P(v) represent?
26. What is a major advantage of Link State Routing over Distance Vector Routing?
27. Which routing method provides routers with a more complete view of the network topology?
28. Which routing method generally exchanges routing information primarily with neighboring routers?
29. Which protocol is an example of Distance Vector Routing?
30. Which protocol is an example of Link State Routing?
31. What does RIP stand for?
32. What metric does RIP primarily use to select routes?
33. What is the maximum hop count supported by RIP for a reachable destination?
34. Which statement about RIP is correct?
35. What does OSPF stand for?
36. Which algorithm is used by OSPF to calculate shortest paths?
37. What type of routing protocol is OSPF?
38. What does BGP stand for?
39. What type of routing protocol is BGP?
40. What is the primary purpose of BGP?
41. What is an Autonomous System (AS) in the context of BGP?
42. Which of the following correctly compares RIP, OSPF, and BGP?

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