Given the network address 32.0.0.0/3, develop a scheme for 1000 subnets with at most 2000 hosts each. Show the subnet mask and CIDR notation for the subnet scheme. Show the 1st, 2nd, and 1000th subnet address and list the range of available IP addresses for each.
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A: ANSWER:
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Q: For the given IP address 196.62.146.174/25, answer the following questions: a. Subnet Mask b. Number…
A: ANSWER:
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Q: subnet range
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A: ANSWER:
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A: Given: network address 148.211.93.128/25, develop a scheme for 3 subnets with at most 10 hosts each.…
Q: Given the network address 135.48.0.0/12, develop a scheme for 10 subnets with at most 100 hosts…
A: The answer to the above-mentioned question is given below with an explanation.:---
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A: given data
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A: Given:
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Q: For the given IP address 196.62.146.174/25, answer the following questions. a. Subnet Mask b. Number…
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Given the network address 32.0.0.0/3, develop a scheme for 1000 subnets with at most 2000 hosts each. Show the subnet mask and CIDR notation for the subnet scheme. Show the 1st, 2nd, and 1000th subnet address and list the range of available IP addresses for each.
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- Given the network address 148.211.93.128/25, develop a scheme for 3 subnets with at most 10 hosts each. Show the subnet mask and CIDR notation for the subnet scheme. Show the 1st, 2nd, and 3rd subnet addresses and list the range of available IP addresses for each subnet.Given the network address 135.48.0.0/12, develop a scheme for 10 subnets with at most 100 hosts each. Show the subnet mask and CIDR notation for the subnet scheme. Show the 1st, 2nd, and 10th subnet address and list the range of available IP addresses for each subnet.An IP address can be written as a 32-bit number. For a class B network, the two most significant bits are set to 10. The 16 most significant bits are used as a network ID, and the 16 least significant bits are used as a host ID. However, the host ID cannot be all 0's or all 1's. How many hosts (i.e., host IDs) can there be on a class B network?
- An IP address can be written as a 32-bit number. For a class B network, the two most significant bits are set to 10. The 16 most signi cant bits are used as a network ID, and the 16 least signi cant bits are used as a host ID. However, the host ID cannot be all 0's or all 1's. How many hosts (i.e., host IDs) can there be on a class B network?Create a chart that begins with the OSI Seven-layer model on the left-hand side. Next, a column that describes the function of the layer. Then a column that lists the Protocol Data Units (such as Datagrams, Frames, etc) that correspond to each layer in the OSI model. Continue this process for the major hardware or software applications that function in each layer (not all layers have corresponding applications). The last column should be the TCP/IP model aligned to the appropriate layers of the OSI seven-layer model. This should result in a document that looks something like the chart tab (with the blank spaces filled in!)Consider the figure below with hosts A to F, and interfaces assigned IP and MAC addresses. Suppose all of the ARP tables are up to date and Host A sends a datagram to Host F. Give the source and destination MAC and IP addresses in the frame encapsulating this IP datagram as the frame is transmitted (i) from A to the left router, (ii) from the left router to the right router, and (iii) from the right router to F. E 192.168.1.001 00-00-00-00-00-00 192.168.2.001 44-44-44-44-44-44 192.168.3.001 77-77-77-77-77-77 Router 1 192.168.1.002 192.168.2.002 192.168.2.003 22-22-22-22-22-22 33-33-33-33-33-33 55-55-55-55-55 192.168.2.004 192.168.1.003 D 66-66-66-66-66 11-11-11-11-11-11 from A to Router 1 Router 1 to Router 2 LAN B Source MAC address Destination MAC address Source IP Destination IP LAN Router 2 LAN 192.168.3.002 88-88-88-88-88-88 F from Router 2 to F 192.168.3.003 99-99-99-99-99-99
- Which of the following instructions falls in the category of data transfer instructions? JUMP LOAD ROTATE ANDRefer to the network figure above, showing two Ethernet Subnets connected through an IP Router, answer the following question 1-5. The devices in each subnet are connected locally to each other through layer two intermediate devices such as Ethernet switch and ethernet hub. For each device in the subnets, both its Internet Protocol (IP )address and its MAC address (also called the Physical address or the Ethernet address are shown. The subnet mask used by all devices is 255.255.255.240 (which is the same as the prefix length “/28”). 1. If Client #1 wants to send a broadcast packet to all the devices on the left subnet (containing client #1, client #2, client #3) what destination IP address should be used? (Mention in both binary and decimal format.) 2. What is the first and last assignable IP address for the left subnet above (containing client #1 and #3)? (Mention in both binary and decimal format.)Provide an example of a protocol at each of the TCP/IP model layers, for example that you have used in the above. Also give an example of overhead added in each of these protocols, e.g. a field in the protocol header. If possible, provide information on the maximum size of each packet, and the size of the header, of each of these example protocols.
- Consider a router that interconnects three subnets: Subnet 1, Subnet 2, and Subnet 3. Suppose all of the interfaces in each of these three subnets are required to have the prefix 223.10.128/24. Also suppose that Subnet 1 is required to support at least 50 interfaces, Subnet 2 is to support at least 100 interfaces, and Subnet 3 is to support at least 12 interfaces. Provide three network addresses (of the form a.b.c.d/x) that satisfy these constraints.A router interconnects a subnet, where all the interfaces of the subnets must have the prefix 164.132.62/24. suppose that the Subnet is required to support up to 60 interfaces, provide a network address that satisfies the above.TCP session sends 50 packets per second over an Ethernet Local Area Network (LAN). Each packet consists 2280B (excluding the preamble and cyclic redundancy check (CRC)). Calculate the size of the headers, and hence the TCP payload data. What therefore is the TCP throughput of the session?