Question: 1 2 D6 Not yet 100 Fy 1.4-2 Computing Packet Transmission Delay (1). Suppose a packet is L = 1500 bytes long (one byte =

1  1 2 D6 Not yet 100 Fy 1.4-2 Computing Packet Transmission
2
Delay (1). Suppose a packet is L = 1500 bytes long (one
byte = 8 bits), and link transmits at R = 1 Gbps

D6 Not yet 100 Fy 1.4-2 Computing Packet Transmission Delay (1). Suppose a packet is L = 1500 bytes long (one byte = 8 bits), and link transmits at R = 1 Gbps (ie, a link can transmit bits 1,000,000,000 bits per second). What is the transmission delay for this packet? [Note: you can find more problems like this one here.) L packet length in bits) A link transmission rates (Mbps) Queue of packets waiting for output link Select one: O a 000012 secs O b. 666,666 secs O 0015 secs Od: 00012 secs ..0000016 secs Om7 yet anwered Mariced out 1.00 1.4-10 Computing utilization (3). Consider the scenario shown below, with four different servers connected to four different clients over four three-hop paths. The four pairs share a common middle hop with a transmission capacity of R = 300 Mbps. The four links from the servers to the shared link have a transmission capacity of Rs = 50 Mbps. Each of the four links from the shared middle link to a client has a transmission capacity of Rc = 90 Mbps. Pfleg Assuming that the servers are all sending at their maximum rate possible, what are the link utilizations of the client links (with transmission capacity Re)? Enter your answer in a decimal form of 1.00 (if the utilization is 1) or O.xx (if the utilization is less than 1, rounded to the closest xx). Your answer: The utilization of client link is: [A] Your answer: The utilization of client link is: [A] - Hipe R10 to e 5 H #100 N pe Rc [Note: more questions like this one can be found here.]

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