P6. This elementary problem begins to explore propagation delay and transmis- sion delay, two central concepts in data networking. Consider two hosts, A and B, connected by a single link of rate R bps. Suppose that the two hosts are separated by m meters, and suppose the propagation speed along the link is s meters/sec. Host A is to send a packet of size L bits to Host B. a. Express the propagation delay, dprops in terms of m and s. b. Determine the transmission time of the packet, drans in terms of L and R. c. Ignoring processing and queuing delays, obtain an expression for the end- to-end delay. d. Suppose Host A begins to transmit the packet at time t = 0. At time t = durans where is the last bit of the packet? e. Suppose dprop is greater than drans: At time t = drans, where is the first bit of the packet? f. Suppose dprop is less than drans- At time t = drans Where is the first bit of the packet? g. Suppose s = 2.5 10%, L = 120 bits, and R m so that dprop equals drans 56 kbps. Find the distance %3D

Computer Networking: A Top-Down Approach (7th Edition)
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Chapter1: Computer Networks And The Internet
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P6. This elementary problem begins to explore propagation delay and transmis-
sion delay, two central concepts in data networking. Consider two hosts, A
and B, connected by a single link of rate R bps. Suppose that the two hosts
are separated by m meters, and suppose the propagation speed along the link
is s meters/sec. Host A is to send a packet of size L bits to Host B.
a. Express the propagation delay, dprops in terms of m and s.
b. Determine the transmission time of the packet, drans, in terms of L and R.
c. Ignoring processing and queuing delays, obtain an expression for the end-
to-end delay.
d. Suppose Host A begins to transmit the packet at time t = 0. At time t =
dirans, where is the last bit of the packet?
e. Suppose dprop is greater than drans. At time 1 = dyans where is the first
bit of the packet?
f. Suppose dprop is less than drans- At time t = drans where is the first bit of
the packet?
g. Suppose s = 2.5 10%, L
m so that dprop equals drans
= 120 bits, and R
56 kbps. Find the distance
%3D
Transcribed Image Text:P6. This elementary problem begins to explore propagation delay and transmis- sion delay, two central concepts in data networking. Consider two hosts, A and B, connected by a single link of rate R bps. Suppose that the two hosts are separated by m meters, and suppose the propagation speed along the link is s meters/sec. Host A is to send a packet of size L bits to Host B. a. Express the propagation delay, dprops in terms of m and s. b. Determine the transmission time of the packet, drans, in terms of L and R. c. Ignoring processing and queuing delays, obtain an expression for the end- to-end delay. d. Suppose Host A begins to transmit the packet at time t = 0. At time t = dirans, where is the last bit of the packet? e. Suppose dprop is greater than drans. At time 1 = dyans where is the first bit of the packet? f. Suppose dprop is less than drans- At time t = drans where is the first bit of the packet? g. Suppose s = 2.5 10%, L m so that dprop equals drans = 120 bits, and R 56 kbps. Find the distance %3D
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