a) Change the following IPv4 addresses from binary notation to dotted-decimal notation. I.10000001 00001011 00001011 11101111 ii.11000001 10000011 00011011 11111111
Q: a) Change the following IPv4 addresses from binary notation to dotted-decimal notation. i.11000001…
A: Given binary notation - i.11000001 10000011 00011011 11111111
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A: Given: b) Show the original (unabbreviated) form of the following IPv6 addresses i. FDEC: 74 : :…
Q: a) Change the following IPv4 addresses from binary notation to dotted-decimal notation. 10000001…
A: Change the following IPv4 addresses from binary notation to dotted-decimal notation. i. 10000001…
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Q: · Change the following IPV4 addresses from binary notation to dotted-decimal notation. a. 10000001…
A: Change the following IPV4 addresses from binary notation to dotted-decimal notation .
Q: Change the following IPv4 addresses from binary notation to dotted-decimal notation. I.…
A: [As per our guidelines we are supposed to answer only one question in case of multiple questions.…
Q: Show the original (unabbreviated) form of the following IPv6 addresses. FDEC: 74 : : BOFF : 0 :…
A: I have provided solution in step2.
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Q: Change the following IPV4 addresses from binary notation to dotted-decimal notation. a. 10000001…
A: a. 10000001 00001011 00001011 11101111 10000001 = 129 00001011 = 11 00001011 = 11 11101111 = 239…
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A: Given addresses are 11000110 10110111 10100000 00000000 to 11000110 10110111 10111111 11111111
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Q: • Change the following IPV4 addresses from binary notation to dotted-decimal notation. a. 10000001…
A: 1. 10000001 00001011 00001011 11101111 10000001 = 129 in decimal (10000001)₂ = (1 × 2⁷) + (0 × 2⁶) +…
a) Change the following IPv4 addresses from binary notation to dotted-decimal notation.
I.10000001 00001011 00001011 11101111
ii.11000001 10000011 00011011 11111111
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- Show your work for the following conversion. a) Convert the following block of IP addresses into CIDRized addresses: 11000110 10110111 10100000 00000000 to 11000110 10110111 10111111 11111111Change the following IPV4 addresses from binary notation to dotted-decimal notation. a. 10000001 00001011 00001011 11101111 b. 11000001 10000011 00011011 11111111Determine whether or not the following IPv6 address notations are correct:•::0F53:6382:AB00:67DB:BB27:7332•7803:42F2:::88EC:D4BA:B75D:11CD•::4BA8:95CC::DB97:4EAB•74DC::02BA•::00FF:128.112.92.116
- ) Show the original (unabbreviated) form of the following IPv6 addresses. i. FDEC: 74 : : BOFF : 0 : FFFO ii. 0 : 15 : : 1 : 12 :1213Write the simplified version for the following IPv6 address:A700:401:0000:0000:71A0:0000:0000:04A1Provide the compressed format for each of the following IPv6 addresses. Show both rule I and rule 2 of your answer: (i) (ii) FE80:02BD:0000:0000:6000:8001:00A7:B220 2001:0B02:0FC6:0000:0000:0000:0050:A000 2001:6075:75A0:0000:0000:0000:0009:ABBC
- Answer the following questions: The IP address is based on your student number SN as follow: The first byte is 198. The second byte is the 6th and 7th numbers of your SN, for example, if your SN is 438051221, the second byte is The third byte is the 8th and 9th numbers of your SN, for example, if your SN is 438051221, the third byte is The forth byte is 0. Consider a company which owns a license of this IP address. Write this IP address, for example 198.12.21.0 How many hosts at the maximum can be in this network? What are the first and the last addresses given to hosts? The company likes to divide its network into 10 subnets. Determine the necessary number of bits borrowed. Determine the new subnet mask. Determine the maximum number of hosts in each subnet. Fill the following table Subnet Subnet address First host address Last host address Broadcast address 1…Using the two rules of IPv6 compression, edit each IPv6 address until it is in the shortest form possible. 2b06:0000:0000:1f2b:d77f:0000:0000:89ce 0e56:11c2:0e75:8d23:3528:7e0d:419b:bdce 00eb:0000:0000:0000:d8c1:0946:0272:0879 ad93:a0e4:a9ce:32fc:cba8:15fe:ed90:d768 558c:0000:0000:d367:7c8e:1216:0000:66be 8bfa:99f0:d4c5:0b8c:0f6f:04df:2804:283d 5d66:5ec9:0046:0000:2576:004f:7159:0639 7d2b:00a9:a0c4:0000:a772:00fd:a523:0358 00c8:b434:06ee:ec2f:03c9:01ce:765d:a66b 9930:cafa:0000:0052:04cc:7b7a:0037:27e6Write down of shorter form the following IPv6 addresses: 0000:0000:0000:0000:0000:0000:0000:0001, 2001:0DB8:0000:A300:ABCD:0000:0000:0123 Can the following IPv6 addresses exist? (Justify your answer!): 2001:DB9:0000:AA:1::1111; FF02:1001::A1:0000::F; FE80:AAAA:0001:FFFF::0; 8080:0011:AD:5000:99:10.
- . Consult the MIME RFC to find out how base64 encoding handles binary data of a length not evenly divisible by three bytes. The POP3 Post Office Protocol only allows a client to retrieve email, using a password for authentication. Traditionally, to send email a client would simply send it to its server (using SMTP) and expect that it be relayed. (a) Explain why email servers often no longer permit such relaying from arbitrary clients. (b) Propose an SMTP option for remote client authentication. (c) Find out what existing methods are available for addressing this issue.To begin, what is an IP address and how does it work? Is there a reason to use mnemonic addresses? How many domains can be represented in a 32-bit representation? Exists a limit to the size of a domain in terms of the number of computers it can hold?In IPv4, the address format is a 32-bit numeric number that is frequently written as four octets separated by periods from the range [0, 255]. At the time of writing, Internet Protocol version 6 (IPv6), with 128-bit addresses, was gradually replacing IPv4. How many IP addresses may be assigned in IPv4 and IPv6 in theory?