Question: assume that: d _ ( queue ) prop ( 1 ) / ( ( 1 - ( R _ ( in ) ) / (

assume that:
d_(queue )prop(1)/((1-(R_(in ))/(R_(out )))^(3))-1 in msQ6. Compute the total latency incurred when transmitting 800MB of data between the two computers in
the example network below. Latency here refers to the time that passes between when the transmission
first starts at the sender and when the final bit of data is received by the receiver. Report the total
latency in ms with 3 significant figures behind the decimal point (e.g.0.00321ms,4.305ms). Show
your work and assume the following:
54B of each packet is used to store header information needed by the different layers of the internet,
the maximum packet length (including header size) is 1460B
assuming that 1 microsecond is needed to process a packet at each router
assume a link utilization rate of 0.25 when computing queuing delay using our example equation. You
can compute it via wolfram alpha at this link (the result is reported in ms)
Assume packets travel at 2**108ms in copper/glass and at 3**108ms via wireless transmission
Hint: the answer to this question is not a multiple of the answer to Q3. Take a look at the ladder diagrams
on slides 30-33 to get a sense of computing the latency associated transmitting a file that is divided into
multiple smaller packets. Pay extra attention to the ladder diagrams on slide 33 that visualizes how a
larger file that can't fit into a single packet flows through the network. The idea of throughput is also of
relevance to this problem.
 assume that: d_(queue )prop(1)/((1-(R_(in ))/(R_(out )))^(3))-1 in msQ6. Compute the total

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