
Join a 26-hour, 100% labs boot camp to configure Windows Server 2022 with AD, DNS, DHCP, routing, remote access, DFS, Windows deployment services, and Windows update services, starting with TCP/IP.
Download and install Cisco Packet Tracer for DHCP labs, register for a free account, launch and log in, use version 8.22 for end-of-class simulations.
Learn how IP addresses identify hosts on a local or wide area network, differentiate IP version four and IP version six, and convert decimal to binary across four octets.
Explore IPv4 classes a through c and their ranges, with d for multicast and e for research. Learn subnet masks and CIDR notation /8, /16, /24, plus network/host portions and loopback 127.0.0.1.
Explore class c addresses within the 192 to 223 range and the 255.255.255.0 /24 subnet. Understand network versus host portions, and test connectivity with ipconfig and ping.
Learn how class B networks designate the first two octets as the network portion and the last two as the host portion, with a /16 mask and first host 172.6.0.1.
Explains class a addressing, including the network and host portions, using 10.0.0.0/8. Demonstrates loopback 127 and how hosts communicate within the same network via subnet masks.
Explore class d for multicast and class e for research, with pay-per-view and Netflix analogies, and note how multicast routing informs neighbors while we preview private versus public IP topics.
Discover how port numbers and sockets enable TCP and UDP connections, differentiate well-known ports from dynamic NAT ports, and map source and destination IPs to service ports.
Learn how TCP and UDP differ, use netstat to view open ports on Windows server and client, and examine port numbers like 3389, 445, and Kerberos 88/464.
Learn the difference between private and public networks, and understand private IP ranges (10.0.x.x, 172.16–31.x.x, 192.168.x.x), DHCP and APIPA 169.254.x.x, and how NAT links a LAN to the internet.
Explore how nat translates private ip addresses to public ones, compare static nat, dynamic nat, and pat, and configure internal and external interfaces with a Cisco cli lab.
Explore dynamic nat using a pool of public ips and three commands to translate many private hosts, contrasting it with static nat.
Explore port address translation (PAT) that maps multiple private IPs to one public IP using distinct ports, and review a hands-on NAT overload configuration with 210.210.210.254.
Explore binary, decimal, and hexadecimal representations for ip addresses and mac addresses, including IPv4's 32-bit and IPv6's 128-bit formats, with base conversions and hex digit logic.
Learn how to simplify IPv6 addresses by removing leading zeros and using a double colon, while understanding that IPv6 is 128-bit and encrypted by IPsec, with a slash 64 network ID.
Global IPv6 addresses are public IPs that connect to the internet and start with two. The first 64 bits form the network, the last 64 bits form the host portion.
Explore unique local IPv6 addresses, also called site local, which function as private internal networks not routable on the internet, useful for testing in lab environments.
Explore IPv6 link-local addresses that start with f0, and how stateless address autoconfiguration derives the host ID from the MAC using EUI-64 and FFFE, with NDP replacing ARP for IP-to-MAC.
Explore IPv6 multicast and how OSPF and RIP use the zero zero double colon slash eight range, plus router solicitation, advertisement, EUI-64, and neighbor solicitation steps.
Explore anycast addresses, global ipv6 addresses starting with 2 that replace ipv4 broadcast, directing traffic to the nearest device for load balancing and fault tolerance.
Learn how anycast routing assigns the same IPv6 gateway address to multiple routers, letting clients use the closest available path for fault tolerance and performance.
Learn how the loopback address tests your own NIC, using IPv4's 127.0.0.1 and IPv6's double colon one. See how to verify network interfaces with ping on a loopback.
Set up and test static IPv6 addresses on a small network, assigning global and link local addresses with /64 subnet, and verify connectivity using ping and ICMP in Packet Tracer.
Configure static IPv6 addresses across separate networks, using 2001: b ::/64 for bees and 2001: c ::/64 for seeds; hosts 5 and 6 remain, and ping confirms no cross-network reachability.
Download and install VMware Player to set up your virtualization lab, selecting Windows, Linux, or Mac, ensure you have the latest version, and restart your system after installation.
Download and save Windows 10, Windows 11, Windows Server 2019, and Windows Server 2022 ISOs. Keep them ready in the ISOs folder for VM creation.
Install and run Windows 10 and Windows 11 in VMware, enabling virtualization in the BIOS, and configure VMs with ISO images and VMware tools for full screen.
Learn how to set up Windows Server 2019 and 2022 in VMware, select the desktop experience GUI, install VMware tools, and prepare fully functional virtual servers for hands-on practice.
Enable Hyper-V on Windows by turning on the feature in control panel, restart, and verify the Hyper-V icon appears; non-pro editions like Windows 10/11 home premium cannot use Hyper-V.
Learn to set up Windows 10 and Windows 11 with Hyper-V, create generation two VMs, enable dynamic memory, boot from ISOs, and address Windows 11 TPM requirements.
Learn to set up Windows Server 2019 and 2022 in virtual machines, allocate resources, attach ISO, and complete desktop experience installations.
Download VirtualBox for Windows host, restart the system, launch the VirtualBox Manager, and prep your environment for virtualizing Windows 10/11 server in a hands-on lab.
Set up Windows 10 and 11 in VirtualBox with 8 GB RAM, 2 CPUs, and VBS folders for ISO images; install guest additions for full drivers.
Demonstrate installing Windows Server 2019 and 2022 in virtualization using ISO images, with 8 GB RAM and 2 vCPUs, skipping installation, and enabling desktop experience in VMware or hypervisors.
Configure a server and two clients by renaming machines, assigning static IPs, and using server manager to manage a workgroup setup, preparing for future Active Directory testing.
Test connectivity across all computers using ping to verify ICMP echo. Troubleshoot timeouts, disable the firewall, test by IP and by computer name, and use nbtstat.
About This Class ( My Entire Course is 100% HANDS ON)
Do You Want To become a Successful Server Administrator than you have reached the right course. We as IT Pros we tend to think that as long as you have a Certification that it will open the doors for you in the IT Field. Guess What That is wrong and you know that. My Entire 26 Hour Class is Just Labs as you are working in the Field . If You take my class it will be simulated as you have been working in the field for at least 2 years.
Do You wonder why is that and how can you be a real Server Admin. Don't You think that you need to know how to setup servers clients from scratch using different Types Of Hypervisors. I will be showing you how to start your own lab using VMware Player, VirtualBox and Hyper-V including getting the IOSs for the Operating System. Also, will be working with Cisco Packet Tracer.
The 1st Thing that you need to understand is how servers and client work together and by using what Protocol which is TCP/IP . So we must know the foundation of TCP/IP (V4,V6) Before starting to work with Client-Server Network.
After so that you are wondering what do i need to know to be a server admin . Open a Server and go to Server Manager and see what roles a Server will provide. If You can simulate all the Roles in real time that means you can work on servers in a real environment.
Why This Class
This One Day Course Will be the same as You worked as a Server 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. (Boot Camp Class Full Day) . If you do the 26 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
The Roles that i will be working on and you will be doing the same as you are watching my videos include the Following:
1) DNS
2) DHCP
3) Active Directory
4) GPOs
5) File Server (DFS)
6) CA Server (PKI)
7) WSUS Server
8) WDS Server
9) RRAS (VPN)
10) TCP/IP Subnetting
We will be working on all these roles including installing,configuring,maiantaining and troubleshooting using a Windows Server 2019/2022 And Of course we need client system W10,W11.
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 Networking.
Will I get a certificate of completion at the end?
Yes You Will.