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IP-adresser: versioner, struktur og anvendelse

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IP-adresser: versioner, struktur og anvendelse er en it-opgave til 10. klasse, afleveret til karakteren 10. Fylder 8 sider (2.910 ord, ca. 13 min. læsning) og blev publiceret 15. september 2013.

Denne opgave redegør for Internet Protocol (IP) adresser, deres versioner (IPv4 og IPv6), og hvordan de er struktureret. Den dækker emner som subnetting, tildeling af statiske og dynamiske IP-adresser, samt anvendelse af firewalls og NAT til netværksbeskyttelse. En grundig introduktion til IP-netværk.

Redaktørens vurdering
12 Fremragende
Omfattende og velstruktureret redegørelse for IP-adresser, deres versioner og netværkskonfiguration. Høj faglig kvalitet og god inspiration for andre elever.
Struktur
12
Faglig dybde
12
Kilder
10
Fuldstændighed
12
  • firewall
  • internetprotokol
  • ip-adresser
  • ipv4
  • ipv6
  • nat
  • netværksprotokoller
  • netværkssikkerhed
  • router
  • subnetting

Two versions of the Internet Protocol (IP) are in use: IP Version 4 and IP Version 6. Each version defines an IP address differently. Because of its prevalence, the generic term IP address typically still refers to the addresses defined by IPv4. The gap in version sequence between IPv4 and IPv6 resulted from the assignment of number 5 to the experimental Internet Stream Protocol in 1979, which however was never referred to as IPv5.

IPv4 addresses

Main article: IPv4#Addressing

Decomposition of an IPv4 address from dot-decimal notation to its binary value.

In IPv4 an address consists of 32 bits which limits the address space to 4294967296 (232) possible unique addresses. IPv4 reserves some addresses for special purposes such as private networks (~18 million addresses) or multicast addresses (~270 million addresses).

IPv4 addresses are canonically represented in dot-decimal notation, which consists of four decimal numbers, each ranging from 0 to 255, separated by dots, e.g., 172.16.254.1. Each part represents a group of 8 bits (octet) of the address. In some cases of technical writing, IPv4 addresses may be presented in various hexadecimal, octal, or binary representations.

IPv4 subnetting

In the early stages of development of the Internet Protocol,[1] network administrators interpreted an IP address in two parts: network number portion and host number portion. The highest order octet (most significant eight bits) in an address was designated as the network number and the remaining bits were called the rest field or host identifier and were used for host numbering within a network.

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