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A. Shortest Path First
B. Routing Information Protocol
C. Distance Vector Protocol
D. Ad hoc On - demand Distance Vector Protocol
A. Only when the network is established
B. In middle of the transmission
C. When there is a need for route by the host
D. When there is no need for route by the host
A. Number of hops
B. Geographical distance
C. Number of neighbors
D. Queue length
A. Broadcast
B. Shortest path
C. Flooding
D. Distance vector routing
A. OSPF
B. RIP
C. ARP
D. APR
A. By exchanging information with the neighbors
B. Automatically
C. Using the backup database
D. By the server
A. Distance Vector
B. Link Vector
C. Shortest path
D. Link State
A. Preferred input line , estimated time
B. Preferred input line, estimated distance
C. Preferred output line, estimated time
D. Preferred output line, router
A. Bellman Ford algorithm
B. DES algorithm
C. Dijkstra's algorithm
D. Leaky bucket algorithm
A. Reverse Path forwarding
B. Spanning tree
C. Multidestination
D. Flooding
A. All packets will suffer
B. Only those packets which are queued in the router at that time will suffer
C. Only those packets which are not queued in the router at that time will suffer
D. No packets will suffer
A. Virtual circuit subnet
B. Short circuit subnet
C. Datagram subnet
D. ATM subnet
A. Routing information protocol
B. Exterior gateway protocol
C. Interior gateway protocol
D. Middle gateway protocol
A. Jitter control
B. Random early detection
C. Choke packets
D. Load shedding
A. Ingestion
B. Congestion
C. Digestion
D. Diffusion
A. Modules
B. Packet
C. Router
D. Gateway