Unit 1 Exercise 1 IP Addressing Scenario When designing the data closet should be located in a non-centralized location but still have easy access for services and upgrades or repairs. I would consider using a class b network set up which would easily allow 145 users‚ computers or equipment to connect but still provide additional addresses and networks as the company expands within the next two years. As for IP address I would consider static IP address for all local computers and equipment
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Repeater: operates at physical layers of osi model. Digital signals or analog signals that carry digital data can only be transmitted over a limited distance. After a certain distance attenuation or noise endangers the integrity of that data. Repeaters reproduce and transmit the received digital data. This new signal is the exact duplicate of the original signals. Repeaters offer simple means to extend a network‚ increased traffic on the network is introduced. This increased network congestion may
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Question 1 You are given a network address 192.168.10.0/27‚ show your calculation and answer the followings (20 Marks – 4 marks each) |IP Address: 192.168.10.0 |Prefix Length - /27 | Bits allocation: |IP Address |128 |64 |32 |16 | |Prefix |11111111 |11111111 |11111111
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_____________________________________________________________ Application Note _____________________________________________________________ IP Addressing A Simplified Tutorial July 2002 COMPAS ID 92962 Avaya Labs 1 All information in this document is subject to change without notice. Although the information is believed to be accurate‚ it is provided without guarantee of complete accuracy and without warranty of any kind. It is the user’s responsibility to verify and test
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and thusly has more equipment and personnel. We traditionally use static IP addressing but this is no longer sufficient. It is now time that we start using DHCP due to the fact that this will allow better functionality through the automatic addressing and leasing of IP addresses. More benefits of using DHCP are the massive amount of IP addresses that are available in DHCP and the fact that DHCP will automatically recall an IP address once the lease is up unless it is renewed. The difference in the
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IP addresses consist of numbers that are 32 bits long (in binary)‚ have 4 octets (bits of 8) and use the decimal dot notation. IP addresses are comprised of two components: the network ID and the host ID. For example: In a class C network: 192.168.10.128 Network ID Host ID (16-bit block) (8-bit block) DNS (domain name system) is used with IP addresses. DNS converts domain names and websites to IP addresses‚ which a computer can read. The computer remembers the IP address
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IP Addressing Scenario According to the scenario‚ the company will have a single‚ physical location with approximately145 hosts on the network. In this case‚ I would suggest using a class C address such as 192.168.0.0. Reason why is because you can put all the devices on a single subnet with the subnet mask 255.255.255.0/24. This would allow for 253 usable host addresses‚ which is more than needed in this case. Whether you should dynamically or statically assign those IP’s goes‚ I suggest
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IP Address scheme: IPv4 operates on 32-bit addresses. 32 bit address = Byte 1| Byte 2| Byte 3| Byte 4 Class Prefix Network Number Host Number A 0 0-7 8-31 bits B 10 1-15 16-31 bits C 110 2-24 25-31 bits D 1110 Multicast E 1111 N/A The bits are ordered from left to right
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101100011101001 1011110100011010 00001010010110010 1001010101100111 1111010101000101 1101001101010011 001010010101010 1010101000110010 010101001011000 110101100011010 11010100001011 001010100110 1001010010 IP Addressing and Subnetting Workbook Version 1.1 11111110 10010101 00011011 11010011 10000110 IP Address Classes Class A 1 – 127 (Network 127 is reserved for loopback and internal testing) 00000000.00000000.00000000.00000000 Leading bit pattern 0 Network . Host . Host . Host Class B 128 – 191
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By Md Shamim Jahan IP addressing (IPv4 / IPv6) • Describe the operation and necessity of using private and public IP addresses for IPv4 addressing • Identify the appropriate IPv6 addressing scheme to satisfy addressing requirements in a LAN/WAN environment. • Identify the appropriate IPv4 addressing scheme using VLSM and summarization to satisfy addressing requirements in a LAN/WAN environment. • Describe the technological requirements for running IPv6 in conjunction with IPv4 such as dual stack
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