
In this lecture, you are going to learn about the TCP / IP and OSI Models.
In this lecture, you will learn about the TCP and UDP protocols and their comparison.
In this lecture, you will be learning about the functions of Firewalls, Access Points and Wireless Controllers used in networking.
The concept of Virtualization and Cloud computing is complex and you will learn it in this lecture.
In this lecture, you are going to learn about the Three-Tier Architecture and Collapsed Core Architecture.
In this lecture, you are going to learn about the different topologies.
In this lecture, you are going to learn about the cables and cabling types used in inter-networking.
This lecture talks about the troubleshooting methods which can be implied to any situation.
This portion talks about the IP addressing.
This lecture is about IP Subnetting which is also considered very important concept in networking.
This the second part of IP Subnetting concept.
This lecture talks about the IPV6 Addressing in networking.
In this lecture, you will learn about IPV6 addressing through LAB.
In this lecture, you will learn about the IPV6 addressing through autoconfig option.
Learn how switches build and maintain the cam table, aging mac entries with a timestamp, and forward frames by examining source and destination addresses, flooding when destinations are unknown.
Explore the Ethernet frame structure, including the start frame delimiter, 48-bit destination and source addresses, the payload, and the frame check sequence used for error checking.
Explore standard VLANs 1–1001 and extended VLANs 1006–4094, plus how VTP advertises extended VLANs and stores them in running configuration in transparent mode.
Configure vlan trunking across two switches, assign computers to sales vlan 10 and 20 via access ports, enable trunk on inter-switch links, and verify with ping.
Explore how routers use routing tables to deliver packets between networks via destination IP addresses, including dynamic and static routing, default gateways, ARP, and Cisco forwarding techniques.
Learn routing table components such as prefix, network mask, and next hop, and how slash notation and masks define networks and hosts, and how administrative distance influences path selection.
Discover how routing table population uses administrative distance, routing protocol metrics, and prefix length to add, replace, or discard routes and support load balancing.
Configure IPv4 static routes on two routers by specifying destination networks, subnet masks, and exit interfaces, and verify connectivity with ping.
Enable dns name resolution on Cisco devices by configuring ip domain-lookup. Specify the dns server with ip name-server and optionally set ip domain-name for a fully qualified domain name.
Configure a DNS server and a web server together, create a DNS record, and access the web server by hostname in the browser through DNS resolution.
Configure dhcp relay by assigning an ip helper address on the local interface to forward dhcp requests to a remote dhcp server, ensuring hosts in different networks obtain addresses.
Configure a standard IPv4 access list to permit a specific network and deny all others on an interface, after assigning IP addresses and testing connectivity with pings.
Configure an extended access control list, set up interfaces with ip addresses, and test connectivity to enforce permit and deny rules.
Configure static nat to map private addresses to public addresses, enabling internal hosts to reach the internet; verify mappings with show ip nat translations.
Configure PAT to conserve IP addresses by mapping multiple private hosts to one public IP via port translation, and verify connectivity across inside and outside interfaces.
ICND 100-105, also known as CCENT, serves as a primary gateway into Cisco’s networking world. This course introduces learners to the fundamental concepts of computer inter-networking using Cisco equipment, while also building a strong foundation in the core principles required for any networking certification. It is designed to help beginners understand how networks operate, including essential topics such as IP addressing, routing, switching, and network security basics.
The course thoroughly covers all topics outlined in the official Cisco syllabus for ICND 1 v3, ensuring that students gain both theoretical knowledge and practical understanding. By completing this course, learners can develop the confidence to work with basic network configurations and troubleshoot simple networking issues.
However, it is important to note that relying solely on this course may not be sufficient to pass the certification exam. To maximize your chances of success, it is strongly recommended to supplement your preparation with the official Cisco certification guidebook and additional practice resources. Combining structured learning with hands-on practice and comprehensive study materials will significantly improve your understanding and exam readiness. so what are you waiting for, grab the course today, have the experience, as it comes with all required things, join the course and start your journey!