TCP/IP Protocol Suite 1 Change the following IP addresses from binary notation to dotted-decimal notation. a. 10000001 00001011 00001011 11101111 b. 11000001.

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Presentation transcript:

TCP/IP Protocol Suite 1 Change the following IP addresses from binary notation to dotted-decimal notation. a b c d Example 1

TCP/IP Protocol Suite 2 Change the following IP addresses from dotted-decimal notation to binary notation. a b c d Example 2 Solution

TCP/IP Protocol Suite 3 Find the error, if any, in the following IP addresses: a b c d Example 3 Solution

TCP/IP Protocol Suite 4 Change the following IP addresses from binary notation to hexadecimal notation. a b Example 4

TCP/IP Protocol Suite 5 How can we prove that we have 2,147,483,648 addresses in class A? Example 5

TCP/IP Protocol Suite 6 Find the class of each address: a b c d Example 6

TCP/IP Protocol Suite 7 Find the class of each address: a b c d e Example 7

TCP/IP Protocol Suite 8 Given the network address , find the class, the block, and the range of the addresses. Example 9

TCP/IP Protocol Suite 9 Given the network address , find the class, the block, and the range of the addresses. Example 10

TCP/IP Protocol Suite 10 Given the network address , find the class, the block, and the range of the addresses. Example 10

TCP/IP Protocol Suite 11 Given the network address , find the class, the block, and the range of the addresses. Example 11

TCP/IP Protocol Suite 12 Given the address , find the beginning address (network address). Example 12

TCP/IP Protocol Suite 13 Given the address , find the beginning address (network address). Example 13

TCP/IP Protocol Suite 14 Given the address , find the beginning address (network address). Example 14

TCP/IP Protocol Suite 15 What is the subnetwork address if the destination address is and the subnet mask is ? Example 15