Fictional Network Topology 3 Network Stack 1: zerpflumheit' OSI Layer # 7 6 5 4 3...
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Fictional Network Topology 3 Network Stack 1: zerpflumheit' OSI Layer # 7 6 5 4 3 2 7 6 5 4 3 Name 2 einhalten Network Stack 3: 'aufgetrause' OSI Layer # angeschmeckte ankrause angekletten ausgekletts ausgewarfung Name ausgesetztest einlaufse behaltst gerennkeit aufkatzete zerhundst PDU Size (bytes) 18 40 92 98 42 44 Header PDU Header Size (bytes) 71 34 37 7 65 49 5 (5 Marks) Network Stack 2: "angestehs' OSI Layer # 7 6 5 4 3 2 OSI Layer # 7 6 5 4 3 2 PDU Header Size (bytes) einkatzetest 34 angewitzs 8 enschmecktete 29 aufgerennung 9 aufgekrauheit 54 besetztete 91 Name Network Stack 4: 'getritter' Name verrauchtete berennung enwitztete aushundung verraucht ausgesetzung PDU Header Size (bytes) 48 45 42 29 48 94 Physical Layer Properties Physical Layer enhunder verkletttete angesetzheit angekaest 35 PDU Header Size (bytes) Question# Question 34 36 82 64 53 71 Network Diagram Node #2 Node #3 Node #5 Network Stack: aufgetrause Network Stack angestehs Network Stack aufgetrause 37 Data Rate Propagation (Kilobits per second) Delay (milliseconds) 5314 2176 5347 8495 Physical Layer verkletttete 719 140 145 762 Node #4 Node #0 Node #1 Network Stack getritter Network Stack aufgetrause |Network Stack zerpflumbeit Physical Layer angekaest Could applications on nodes 3 and 1 communicate with one another? i.e., are they using compatible network stacks, and is there a compatible path through the network between them? Answer Yes or No. If an application on node 3 sends 248 bytes of data, how large would the PDU be at layer 3? Provide the exact number of bytes as your answer. What is the data rate that is possible between nodes 3 and 1? Provide the exact number of kilobits per second as your answer. How many milli-seconds would it take node 3 to send 2406 bytes of data to node 12 Provide the number of milliseconds as your answer, rounded down to the nearest whole number. Fictional Network Topology 3 Network Stack 1: zerpflumheit' OSI Layer # 7 6 5 4 3 2 7 6 5 4 3 Name 2 einhalten Network Stack 3: 'aufgetrause' OSI Layer # angeschmeckte ankrause angekletten ausgekletts ausgewarfung Name ausgesetztest einlaufse behaltst gerennkeit aufkatzete zerhundst PDU Size (bytes) 18 40 92 98 42 44 Header PDU Header Size (bytes) 71 34 37 7 65 49 5 (5 Marks) Network Stack 2: "angestehs' OSI Layer # 7 6 5 4 3 2 OSI Layer # 7 6 5 4 3 2 PDU Header Size (bytes) einkatzetest 34 angewitzs 8 enschmecktete 29 aufgerennung 9 aufgekrauheit 54 besetztete 91 Name Network Stack 4: 'getritter' Name verrauchtete berennung enwitztete aushundung verraucht ausgesetzung PDU Header Size (bytes) 48 45 42 29 48 94 Physical Layer Properties Physical Layer enhunder verkletttete angesetzheit angekaest 35 PDU Header Size (bytes) Question# Question 34 36 82 64 53 71 Network Diagram Node #2 Node #3 Node #5 Network Stack: aufgetrause Network Stack angestehs Network Stack aufgetrause 37 Data Rate Propagation (Kilobits per second) Delay (milliseconds) 5314 2176 5347 8495 Physical Layer verkletttete 719 140 145 762 Node #4 Node #0 Node #1 Network Stack getritter Network Stack aufgetrause |Network Stack zerpflumbeit Physical Layer angekaest Could applications on nodes 3 and 1 communicate with one another? i.e., are they using compatible network stacks, and is there a compatible path through the network between them? Answer Yes or No. If an application on node 3 sends 248 bytes of data, how large would the PDU be at layer 3? Provide the exact number of bytes as your answer. What is the data rate that is possible between nodes 3 and 1? Provide the exact number of kilobits per second as your answer. How many milli-seconds would it take node 3 to send 2406 bytes of data to node 12 Provide the number of milliseconds as your answer, rounded down to the nearest whole number.
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