Q2: Based on the information in the graphic shown, design a network addressing scheme that will supply the minimum number of subnets, and allow enough extra subnets and hosts for 70% growth in all areas without using VLSM. Circle each subnet on the graphic and answer the questions below. Ft. Worth 1000 Hosts Router S 0/0/1 IP address 112.0.0.0 S 0/0/1 S0/0/0 FOO Router FOO S 0/0/1 Router D F 0/1 Address class Custom subnet mask Minimum number of subnets needed Extra subnets required for 70 % 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 70% 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 Dallas Subnet 2: IP address range for Ft. Worth 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 Dallas 1500 Hosts

Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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Q2: Based on the information in the graphic shown, design a network addressing
scheme that will supply the minimum number of subnets, and allow enough extra
subnets and hosts for 70% growth in all areas without using VLSM. Circle each
subnet on the graphic and answer the questions below.
Ft. Worth
1000 Hosts
Router
S 0/0/1
IP address 112.0.0.0
S 0/0/1
S0/0/0
FOO
Router
FOO
S 0/0/1
Router
D
F 0/1
Address class
Custom subnet mask
Minimum number of subnets needed
Extra subnets required for 70 % 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 70% 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 Dallas
Subnet 2: IP address range for Ft. Worth
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
Dallas
1500 Hosts
Transcribed Image Text:Q2: Based on the information in the graphic shown, design a network addressing scheme that will supply the minimum number of subnets, and allow enough extra subnets and hosts for 70% growth in all areas without using VLSM. Circle each subnet on the graphic and answer the questions below. Ft. Worth 1000 Hosts Router S 0/0/1 IP address 112.0.0.0 S 0/0/1 S0/0/0 FOO Router FOO S 0/0/1 Router D F 0/1 Address class Custom subnet mask Minimum number of subnets needed Extra subnets required for 70 % 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 70% 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 Dallas Subnet 2: IP address range for Ft. Worth 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 Dallas 1500 Hosts
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