Q2: Network Addressing Scheme (FIXED LENGTH SUBNETTING) Minimizing Subnets Using the original network 121.0.0.0, design a network addressing scheme that will create the minimum number of fixed-length subnets to meet the needs shown in the graphic. Your goal is to subnet the network in a way that uses as few subnets as possible, while still providing enough IP addresses for each area and accommodating a 90% growth allowance in both subnets and hosts. Note that you are not using VLSM here, so each subnet must have the same fixed subnet mask, regardless of the specific host requirements for each area. Address class Custom subnet mask Minimum number of subnets needed Extra subnets required for 90 % growth + (Round up to the next whole number) Total number of subnets needed = Number of host addresses in the largest subnet group Number of addresses needed for 90% growth in the largest subnet + (Round up to the next whole number) Total number of address needed for the largest subnet - Start with the first subnet and arrange your sub-networks from the largest group to the smallest: Subnet 1: IP address range for Doha Subnet 2: IP address range for Gharrafa Subnet 3: IP address range for Router A to Router B serial connection Subnet 4: IP address range for Router A to Router C serial connection Subnet 5: IP address range for Router C to Router D serial connection

Computer Networking: A Top-Down Approach (7th Edition)
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ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
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Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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Q2: Network Addressing Scheme (FIXED LENGTH SUBNETTING) Minimizing Subnets
Using the original network 121.0.0.0, design a network addressing scheme that will create the
minimum number of fixed-length subnets to meet the needs shown in the graphic. Your goal is
to subnet the network in a way that uses as few subnets as possible, while still providing enough
IP addresses for each area and accommodating a 90% growth allowance in both subnets and
hosts. Note that you are not using VLSM here, so each subnet must have the same fixed subnet
mask, regardless of the specific host requirements for each area.
Address class
Custom subnet mask
Minimum number of subnets needed
Extra subnets required for 90 % growth +
(Round up to the next whole number)
Total number of subnets needed =
Number of host addresses in the largest subnet group
Number of addresses needed for 90% growth in the largest subnet +
(Round up to the next whole number)
Total number of address needed for the largest subnet -
Start with the first subnet and arrange your
sub-networks from the largest group to the smallest:
Subnet 1: IP address range for Doha
Subnet 2: IP address range for Gharrafa
Subnet 3: IP address range for Router A to Router B serial connection
Subnet 4: IP address range for Router A to Router C serial connection
Subnet 5: IP address range for Router C to Router D serial connection
Transcribed Image Text:Q2: Network Addressing Scheme (FIXED LENGTH SUBNETTING) Minimizing Subnets Using the original network 121.0.0.0, design a network addressing scheme that will create the minimum number of fixed-length subnets to meet the needs shown in the graphic. Your goal is to subnet the network in a way that uses as few subnets as possible, while still providing enough IP addresses for each area and accommodating a 90% growth allowance in both subnets and hosts. Note that you are not using VLSM here, so each subnet must have the same fixed subnet mask, regardless of the specific host requirements for each area. Address class Custom subnet mask Minimum number of subnets needed Extra subnets required for 90 % growth + (Round up to the next whole number) Total number of subnets needed = Number of host addresses in the largest subnet group Number of addresses needed for 90% growth in the largest subnet + (Round up to the next whole number) Total number of address needed for the largest subnet - Start with the first subnet and arrange your sub-networks from the largest group to the smallest: Subnet 1: IP address range for Doha Subnet 2: IP address range for Gharrafa Subnet 3: IP address range for Router A to Router B serial connection Subnet 4: IP address range for Router A to Router C serial connection Subnet 5: IP address range for Router C to Router D serial connection
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