QUESTION The latest version (IPv6) of an IP address uses ANSWER 32-character English-like name 128-bit addresses 16-character English-like name 32-bit addresses I DON'T KNOW YET
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Using 32 -bit Internet addresses was originally thought to provide ample room for expansion, but that conjecture is not proving to be accurate. IPv6 uses 128 -bit addressing. Will that prove to be adequate? Justify your answer. (For example, you might compare the number of possible addresses to the population of the world.)
What is the size of the total address space of IPv4, i.e. the number of valid IPv4 addresses? A. 2^31 B. 2^32 C. 2^32 - 1 D. 2^33 - 1 Question 2 If every one of the roughly 8 billion people on Earth wanted to have a networked device with their own, unique IPv4 address, would there be enough IPv4 addresses? A. Yes B. No Question 3 An IPv4 subnet is a network inside the larger network, identified by a certain number of initial bits that are common to all the addresses in the subnet. The number of common bits (aka the prefix length) is given with a slash after the base address (i.e. the lowest address) of the subnet. The remaining bits are available to be freely assigned to hosts in the subnet, with the exception that the base address is reserved for the subnet number, and the last address is reserved for the subnet broadcast address. These two addresses are still part of the subnet. For example, the routing prefix 192.168.1.0/24 defines a subnet with a constant first 24 bits, i.e. with a prefix length of 24. Available host addresses in this subnet are 192.168.1.1 to 192.168.1.254. 192.168.1.0 is the subnet number; 192.168.1.255 is the broadcast address. There are 256 addresses in this subnet, and 254 available host addresses. How many available host addresses are there in the subnet 10.0.0.0/8? Enter the answer as a decimal number.
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