Transcribed Image Text 2. You are required to design IP addressing scheme for the Pantai Siring's branch for all floors using VLSM subnetting. You may use any private IP address class (10.0.0.0 to 10.255.255.255, 172.16.0.0 to 172.31.255.255 or 192.168.0.0 to 192.168.255.255). User group
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2. You are required to design IP addressing scheme for the Pantai Siring's branch for all floors using VLSM subnetting. You may use any private IP address class (10.0.0.0 to 10.255.255.255, 172.16.0.0 to 172.31.255.255 or 192.168.0.0 to 192.168.255.255). User group are as follows: a. Ground Floor- Administrator – 10 hosts b. 1* Floor - Lecturer – (Based on the last 2 digits of your Matric Number) For Example: B031910402 – 2 hosts only c. 2nd Floor - Student – 250 hosts d. 3rd Floor - Management – 80 hosts Explain in steps the calculations of your IP addressing scheme.
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- Consider the following non-default subnet masks: (a) 255.255.248.0, (b) 255.128.0.0 . To which IP address class do they pertain?Write down the following in CIDR notation: (a) IP: 150.160.170.180, Subnet Mask:255.255.224.0; (b) IP: 75.80.85.90, Subnet Mask: 255.252.0.0 Three stations A, B, C and D are connected to a common Ethernet hub. Their IPaddresses and subnet mask are respectively: 200.100.50.67, 255.255.255.252;200.100.50.7, 255.255.255.248; 200.100.50.138, 255.255.255.240 and 200.100.50.1,255.255.255.254. Determine which among these stations can communicate with eachother. You need to show all detailed workings.An enterprise wants to use a network infrastructure that complies with the class B IP addressing template given below. The network part of this is the internet service provider (ISP) appointed by. According to this: a) How many subnets can this business create within itself? b) The maximum number of hosts in each subnet (LAN) can you take? c) Let one of these subnets be given as follows: subnet 1 : 10000010.00110010.00000100.00000000 Does the computer with IP address 130.50.7.139 belong to this subnet? Show your work and reasoning for each option.Suppose you open your BMCC mailbox first thing on a Monday morning and find that your messages have arrived. Assuming the BMCC server does not have access to the MAC address of the device reading these emails. Explain in detail how the ARP protocol determines which device on the LAN will be the recipient of incoming Internet data. After 22 years, the transition to IPv6 addressing is complete for around 30 percent of Internet traffic. When comparing IPv4 and IPv6 address headers, the Ethernet frames' Maximum Transmission Unit (MTU) stands out as a potential stumbling block.
- Consider the following topology. iMac2 wants to send a file to iMac3. iMac2 knows the destination IP of iMac3. Assuming that the fully configured network has just been switched on, explain the exact process that occurs to send the file from source to destination (only one way). Since many things happen along the way, you only need to address the following in your answer: 1. The appropriate names of the PDU during different stages 2. The ARP table population 3. The MAC table population 4. The usage and role of the IP Routing table (assume that the router already knows all routes to different networks) Hint: This question does not require explanation of the OSI Reference Model or TCP/IP stack. Your answer should be strictly structured in a step-by-step number-point format.. Assume: Your laptop's Ethernet address is 0a:0b:0c:0d:0e:0f, DHCP server address is 131.111.7.3, your IPv4 address will be 131.111.7.121, the gateway's IP address is 131.111.7.1, and Ethernet address is 00:01:02:03:04:05, the network subnet mask is 255.255.255.0.Write the series of protocol/packet exchanges that occur on the wired Ethernet link, up until you can send a single packet to 128.232.0.20. You do not need to describe packets after this packet has left the link. Include ARP and DHCPSuppose you have the following network requirements, for Given an IP address and mask of 9.0.0.0/8, design an IP addressing scheme using VLSM? How is the efficiency of this method achieved? Use the topology in Figure to answer the questions. a. Network 1 needs to support 330 host addresses. b. Network 2 needs to support 62 host addresses. c. Network 3 needs to support 2 host addresses. d. Network 4 needs to support 520 host addresses. e. Network 5 needs to support 230 host addresses. f. Network 6 needs to support 62 host addresses. g. Network 7 needs to support 2 host addresses. h. Network 8 needs to support 2 host addresses.
- 51- A network for a local office requires 4 LAN subnets as follows: · Subnet A - North Office with 31 hosts; · Subnet B - East Office with 15 hosts; and · Subnet C - South Office with 7 hosts. · Subnet D – West Office with 4 hosts. Given the IP Address 192.168.15.0 /24 and above described network requirements: 1. Design an optimal address scheme using Variable Length Subnet Mask (VLSM) method; and What will be the network address of Subnet A? Select one: A. 192.168.15.0 B. 192.168.15.32 C. 192.16.15.128 D. 192.168.15.1This is Networking subject, Fixed length subnet mask (FLSM) Subnetting in IPv4 Network design problem: Given the class b network of 172.30.0.0/16, subnet the network in order to create the network in the figure below with host requirements shown by preparing a complete ipv4 address summary table. Solution: a. Required subnets b. Number of subnets c. Available hosts per subnets d. Network increment (INC) e. New prefix length and subnet mask address f. IPv4 Address summary tableA Network with id: 192.168.0.0 and subnet mask 255.255.0.0 is given to you to split it in such a way thatfollowing classrooms are given adequate number of IPs based on their needs. Each classroom willoccupy its own subnet. The following information for each subnet must be included: Subnet ID CIDR Subnet Mask First IP usable in the subnet Last IP usable in the subnet Broadcast IP Address for the subnet Classroom1: 8 PCsClassroom2: 400PC and 4 PrinterClassroom 3: 2 PCsClassroom4: 62 PCs and a ServerClassroom5: 24PCs
- An ISP has the following block of addresses 132.204.192/20. The manager of this ISP hired you to help him assign IP block of addresses to the following subnets. Subnet A should have enough addresses to support at least 850 interfaces; Subnet B should have enough addresses to support at least 55 interfaces; Subnet C should have enough addresses to support at least 46 interfaces; Subnet D should have enough addresses to support at least 40 interfaces; Subnet E should have enough addresses to support at least 20 interfaces. Subnet F should have enough addresses to support at least 28 interfaces. Give the range of addresses (in binary) assigned to each subnet. Show your work.54- A network for a local office requires 4 LAN subnets as follows: · Subnet A - North Office with 31 hosts; · Subnet B - East Office with 15 hosts; and · Subnet C - South Office with 7 hosts. · Subnet D – West Office with 4 hosts. Given the IP Address 192.168.15.0 /24 and above described network requirements: 1. Design an optimal address scheme using Variable Length Subnet Mask (VLSM) method; and What will be the subnet mask of Subnet B? Select one: A. 255.255.128.255 B. 255.255.192.0 C. 255.255.192.192 D. 255.255.255.192 E. 255.255.255.22460- A network for a local office requires 4 LAN subnets as follows: · Subnet A - North Office with 31 hosts; · Subnet B - East Office with 15 hosts; and · Subnet C - South Office with 7 hosts. · Subnet D – West Office with 4 hosts. Given the IP Address 192.168.15.0 /24 and above described network requirements: 1. Design an optimal address scheme using Variable Length Subnet Mask (VLSM) method; What will be the range of usable (assignable) host addresses in Subnet D? Select one: A. 192.168.15.224 to 192.168.15.255 B. 192.168.15.113 to 192.168.15.118 C. 192.168.15.192 to 192.168.15.254 D. 192.168.15.193 to 192.168.15.240 E. 192.168.15.192 to 192.168.15.239