
Master the easiest IPv4 subnetting approach for Class A, B, and C networks, covering VLSM, CIDR, full-length subnet masks, and inter-VLAN routing with switches in Cisco Packet Tracer.
Download and install Cisco Packet Tracer, register for a free account, and log in to access a tool used to simulate DHCP labs alongside Windows Server 2022 in this course.
Discover how IPv4 addresses are structured as 32-bit numbers, written in decimal as four octets, and how IP classes relate to hosts, with IP vs TCP differences.
Explore tcp/ip class ranges from class a to e, understand subnet masks and cidr, and distinguish unicast, multicast, broadcast, and loopback concepts.
Explore class C IPv4 addressing, including 192.168.100.0/24 networks, the 255.255.255.0 mask, network versus host portions, testing connectivity with ipconfig and ping, and DHCP vs static IP configuration.
Class B subnetting uses a 16-bit network portion and a 16-bit host portion with a 255.255.0.0 mask. The network 172.16.0.0 yields first host 172.16.0.1 and last host 172.16.255.254, broadcast 172.16.255.255.
Explore class A addressing, where the first octet is the network and the last three are hosts, with 255.0.0.0, loopback 127, and first host 10.0.0.1.
Explore class d and class e IPv4 addresses, where class d enables multicasting and class e is for research, ahead of subnetting and the private versus public networks distinction.
Explore classful vs classless subnetting, borrow bits to form multiple /27 subnets with 30 hosts each, and identify network IDs, first and last hosts, and broadcasts.
Master subnetting a class c network by borrowing bits to create 14 networks, assign /28 masks, and identify network IDs, first/last hosts, and broadcasts; compare private vs public IPs.
Reverse engineer class C subnetting by analyzing slash 29, 26, 27, 28, and 30 to understand borrowed bits and the resulting networks. Learn how six hosts fit per network.
Explore class B subnetting for private 172.16.0.0 networks, borrowing bits to create /21 and /23 subnets with up to 2046 or 510 hosts per network.
Master class B subnetting by borrowing 10 bits from the host portion to create 1024 networks on 172.16.0.0/16, yielding 62 hosts per network with /26 (255.255.255.192).
practice reverse engineering class B subnetting with slash notation, masks, and jump starts; derive network IDs, first and last hosts, and broadcasts using 172.16.x examples, including VLANs.
Explain subnetting a class A network with VLSM and CIDR, borrowing bits to create multiple networks and calculating hosts and broadcasts using 10.0.0.0/8 and masks such as 255.248.0.0.
Explore subnetting a class a network by borrowing bits to create 256 networks within 10.0.0.0/8, using a /16 mask for 65,534 hosts per network.
Explore reverse engineering of class a subnetting to master network IDs, broadcast addresses, and host ranges through practical mask calculations.
Practice subnetting in your head, calculate network and broadcast addresses using slash notation and vlsm, and reinforce skills with online quizzes.
Practice IPv4 subnetting in your head by applying notations such as /25, /28, /29, /24, /21, /20, and /27. Identify network IDs, broadcast addresses, and jump-start ranges using 255.255.255.x masks.
Practice subnetting in your head by applying classless networks and slash notation to determine network IDs and broadcasts for various subnets, with hands-on quiz examples.
Master subnetting fundamentals by calculating class a, b, and c masks, determining networks and hosts, and identifying first available hosts and jump starts through practical examples.
Master subnetting concepts by interpreting classful network quizzes, calculating subnet masks and first hosts, determining maximum hosts, applying subnet zero rules, and identifying network and broadcast addresses using cidr-style jumps.
Learn and practice subnetting across class C, class B, and class A addresses by borrowing bits, calculating network IDs, hosts, and broadcast addresses, with hands-on exercises.
Create and map VLAN ten, VLAN twenty, VLAN thirty, and VLAN forty on a switch, assign ports to each VLAN, and apply corresponding /28 subnets to enable isolated networks.
Explore inter-vlan routing with a router-on-a-stick configuration, creating subinterfaces, enabling dot1q trunking, and assigning vlan-based ip networks and default gateways to enable cross-vlan communication.
Repeat the quizzes and rewatch the videos to master full-length subnet masks, variable-length subnet masks, and CIDR, building subnetting fluency in your head.
About This Class ( My Entire Course is 100% HANDS ON)
Do You want to get the real world experience Of How Why And When Do You Need To Subnet A Network. What Is The Reason For Subnetting. Can I Have an Actual Network and leave it as a Classful Network in that case what issues will i face. Most Network Issues are communication problems and its mostly because They cant communicate with each other since they are on different networks so how can i tell if two systems are on the same network that's why you always need to know subnetting in and out and without it you can never become a successful network engineer.
Why This Class
This Short Course Will be the same as You worked as a Network Administrator For a Company For at least 2 Years that You can put on your resume because you will actually see every section in action with labs only as you did it in a real environment. If you do the 5 Hour Lab that is in this class i can assure you it will be equivalent to a 2 year experience in the Field.
What Will You Gain From This Class
This course will enhance your skills in better understating by actually doing it as we were in the same classroom utilizing Subnetting All Classes A,B,C Including Practice Quizzes.
In This Course you will not just learn you will actually do it yourself as if you were in an actual company doing the following:
1) How to Subnet All TCP/IP Classes A,B,C.
2) How To Apply The Subnets Per A VLANS and How To Setup INTERVLAN Routing.
3) How Would You Tell If Two Hosts are on the same network based on the CIDR.
4) How Would You Determine how many Hosts you need per A Network.
5) What is The difference between a Classful(FLSM) And Classless(VLSM).
6) How To Convert From Binary To Decimal and Vise Versa.
7) How To Apply The Subnets Networks In Real Environment Using VLANs And InterVLAN Routing.
Who is This Class For
Anybody that wants to put time and effort to learn real actual Subnetting Skills to reflect in the IT Field. This Class will make your life much easier than what you think you know. We always learn new skills every single day in the IT Field.
Do you want to become a Real Network Engineer (Not Just on Paper) than This class is for you.
Facts About The Course
Do I need any Work experience?
If You or Don't Work In The IT Field You Should Be Fine Taking This Course.
I Already Work In The IT Field Will I Benefit From This Course?
Working In The IT Field Doesn't Mean You Will Cover All Concepts Of Subnetting.
Will I get a certificate of completion at the end?
Yes You Will.