Question: Time: 0 0 : 5 9 : 4 8 ( 6 ) ( N ) Realtime Simulation 7 . You'll need a different

Time: 00:59:48
(6)
\( N \)
Realtime
Simulation 7. You'll need a different subnet for each connection to a router or each connection between routers. How many subnets will you need altogether? 8. Using the formula \(2^{\mathrm{n}}=\mathrm{Y}\), how many bits will you need to borrow from the host portion of the IP address? 9. What will your new subnet mask be?7. You'll need a different subnet for each connection to a router or each connection between routers. How many subnets will you need altogether?
8. Using the formula \(2^{n}=Y \), how many bits will you need to borrow from the host portion of the IP address?
9. What will your new subnet mask be?
10. What is the magic number for these calculations?
11. How many possible hosts can each subnet have?
12. Fill in the Network ID column in Table 8-12 with the first several subnets for this network. The first one is filled in for you. The table only covers the subnets you'll need for this project.
13. Fill in the Broadcast address column in Table 8-12.
14. Fill in the Range of host addresses column in Table 8-12.\begin{tabular}{l}
\hline \multicolumn{1}{|l|}{ Table 8-12 Subnet information for Packet Tracer network }\\
\begin{tabular}{|l|l|l|l|}
\hline Subnet number & Network ID & Range of host addresses & Broadcast address \\
\hline 1 & 192.168.43.0 & & \\
\hline 2 & & & \\
\hline 3 & & & \\
\hline 4 & & & \\
\hline 5 & & & \\
\hline 6 & & & \\
\hline 7 & & & \\
\hline 8 & & & \\
\hline 9 & & & \\
\hline
\end{tabular}
\end{tabular}
Time: 0 0 : 5 9 : 4 8 ( 6 ) \ ( N \ ) Realtime

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