Consider two hosts, A and B, connected by a single link of bandwidth R bits per sec. 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. Ignore the processing and queuing delays. Suppose s = 2.5 X 108 , L = 100 bits, and R = 28 kbps. Find the distance m so that the propagation delay equals transmission delay.
Consider two hosts, A and B, connected by a single link of bandwidth R bits per sec. 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. Ignore the processing and queuing delays. Suppose s = 2.5 X 108 , L = 100 bits, and R = 28 kbps. Find the distance m so that the propagation delay equals transmission delay.
Operations Research : Applications and Algorithms
4th Edition
ISBN:9780534380588
Author:Wayne L. Winston
Publisher:Wayne L. Winston
Chapter20: Queuing Theory
Section20.10: Exponential Queues In Series And Open Queuing Networks
Problem 8P
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![Consider two hosts, A and B, connected by a single link of bandwidth R bits per sec. 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. Ignore the processing and queuing delays. Suppose s = 2.5 X
108 , L = 100 bits, and R = 28 kbps. Find the distance m so that the propagation delay equals transmission
delay.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc00d13fa-a597-4631-9a9e-de154819da20%2F3e3442e3-25a8-40d0-89b6-9cc9bea739cf%2F6grywr_processed.png&w=3840&q=75)
Transcribed Image Text:Consider two hosts, A and B, connected by a single link of bandwidth R bits per sec. 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. Ignore the processing and queuing delays. Suppose s = 2.5 X
108 , L = 100 bits, and R = 28 kbps. Find the distance m so that the propagation delay equals transmission
delay.
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