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Question 2 ( a ) The IPv 4 packet header is shown in Figure 2 . 1 below. The bits allocated to each field are
Question
a The IPv packet header is shown in Figure below. The bits allocated to each field are
shown at the top of the frame.
Figure
i Which part of IPv packet header deals with the issue of security of transmitted
information? What are the other major functions which are implemented in this
same part of the header?
ii In the IPv datagram the Header Checksum is applied to the header and not to the
payload data. What is the reason for this choice?
iii If the size of the data present in the Options field is bits, what is the value of
IHL in this case? Would it be possible in principle to put into the Options bits?
Support your answer by the relevant calculations.
b The key function which is resolved by the Network Layer is the global packet addressing.
i List and briefly describe the five main schemes used for assigning IP addresses.
ii Explain the operating principles of the IPv CIDR addressing scheme. What are the
main advantages and disadvantages of CIDR?
iii A network which uses classful addressing with subnetting has a subnet mask of
Does the IP address belong to a group of the
addresses subnetted with this mask? Explain why.
Question continued
c The dependence of the congestion window in kilobytes on the transmission time in
units of RTT for a lightly loaded internet is shown in Figure where it was assumed
that the maximum segment size MSS kbyte. Draw schematically a similar dependence
for a congested internet in which the following scenario was observed: Between and
RTT no disruptions of the transmission take place. At RTT the first three
duplicate acknowledgements ACKs have been received by the sender host. Then at
RTT the first RTO Retransmission TimeOut of the senders acknowledgement clock
has occurred. Between and the network operates without disruptions.
Explain the obtained dependence. You need to draw the dependence for a time interval
between and RTT
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