Question

Hosts A and B are connected via a 2 km optical link (propagation speed 2 x 10^8 m/s) with 100 Gbps bandwidth. a) Calculate the propagation delay for the optical link in seconds. b) Calculate the transmission delay for a 125,000-byte frame in seconds. c) What is the total delay for transmitting the 125,000-byte frame from A to B (ignore queuing delay and processing delay)?

          Hosts A and B are connected via a 2 km optical link (propagation speed 2 x 10^8 m/s) with 100 Gbps bandwidth.

a) Calculate the propagation delay for the optical link in seconds.
b) Calculate the transmission delay for a 125,000-byte frame in seconds.
c) What is the total delay for transmitting the 125,000-byte frame from A to B (ignore queuing delay and processing delay)?
        
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Added by Trinidad P.

Computer Science and Information Technology
Computer Science and Information Technology
Trishna Knowledge Systems 2018 Edition
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Hosts A and B are connected via a 2 km optical link (propagation speed 2 x 10^8 m/s) with 100 Gbps bandwidth. a) Calculate the propagation delay for the optical link in seconds. b) Calculate the transmission delay for a 125,000-byte frame in seconds. c) What is the total delay for transmitting the 125,000-byte frame from A to B (ignore queuing delay and processing delay)?
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Transcript

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00:01 Hello students we are going to write here consider a 2 link network where host is connected to the router by 1 mbps link with 10 ms propagation delay and rotor is connected to host b by a 15 mpps link with 25 ms propagation delay host a sends a 15 hundred byte packet to host b what is transmission delay in ms of the packet from the router to host b so if i write here for this this is size of the packet to be transmitted that would be we are going to write here transmitted that would be if i write here for this this is 1500 bytes.
00:56 So this must be we are going to write here 1500 bytes.
01:01 Multiplied by 8 bits so this will come out as 12 ,000 bits so now we are going to write here transmission delay would be number of bits number of bits divided by we are going to write here transmission transmission rate and if i write here for this this will be trans so consider number of bits 12 ,000 bits so we are going to write here so now we are going to consider consider number of bits must be 12 ,000 bits if i write here and transmission rate must be written as 15 mbps.
02:16 This must be 15 mbps.
02:21 So we are going to write here that is equivalent to 15 ,00, double zero and four times zero, double zero and four times zero bps.
02:34 So if i write here for this, calculate, so we are going to calculate transmission delay delay between e and router if i write here for this.
03:08 So this will come out as transmission, transmission delay...
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