Design a network addressing scheme that will supply the


Practical Subnetting 1
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 100% growth in both areas. Circle each subnet on the graphic and answer the questions below.

469_1.jpg

Practical Subnetting 2
Based on the information in the graphic shown, design a network addressing scheme that will supply the minimum number of hosts per subnet, and allow enough extra subnets and hosts for 30% growth in all areas. Circle each subnet on the graphic and answer the questions
below.

450_2.jpg

Practical Subnetting 3
Based on the information in the graphic shown, design a classfull network addressing scheme that will supply the minimum number of hosts per subnet, and allow enough extra subnets and hosts for 25% growth in all areas. Circle each subnet on the graphic and answer the questions below

1139_3.jpg

Practical Subnetting 4
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. Circle each subnet on the graphic and answer the questions below.

476_4.jpg

Practical Subnetting 5
Based on the information in the graphic shown, design a network addressing scheme that will supply the minimum number of hosts per subnet, and allow enough extra subnets and hosts for 100% growth in all areas. Circle each subnet on the graphic and answer the questions below.

21_5.jpg

Practical Subnetting 6
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 20% growth in all areas. Circle each subnet on the graphic and answer the questions below.

178_6.jpg

Practical Subnetting 7
Based on the information in the graphic shown, design a network addressing scheme that will supply the minimum number of hosts per subnet, and allow enough extra subnets and hosts for 125% growth in all areas. Circle each subnet on the graphic and answer the
questions below.

1654_7.jpg

Practical Subnetting 8
Based on the information in the graphic shown, design a network addressing scheme that will supply the minimum number subnets, and allow enough extra subnets and hosts for 85% growth in all areas. Circle each subnet on the graphic and answer the questions below.

712_8.jpg

Practical Subnetting 9
Based on the information in the graphic shown, design a network addressing scheme that will supply the minimum number of hosts per subnet, and allow enough extra subnets and hosts for 15% growth in all areas. Circle each subnet on the graphic and answer the questions
below

823_9.jpg

Practical Subnetting 10
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 110% growth in all areas. Circle each subnet on the graphic and answer the questions below.

1001_10.jpg

Address class

Custom subnet mask

Minimum number of subnets needed

Extra subnets required for 25% growth

Total number of subnets needed

Number of host addresses in the largest subnet group

Number of addresses needed for

25% growth in the largest subnet

Total number of address needed for the largest subnet

IP address range for Sales

IP address range for Marketing

IP address range for Administrative

IP address range for Router A to Router B serial connection

(Round up to the next whole number)

(Round up to the next whole number)

Start with the first subnet and arrange your sub-networks from the largest group to the smallest.+ = + =

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Computer Networking: Design a network addressing scheme that will supply the
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