Wireless Network Fundamentals Zero-to-Hero

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Wireless Network Fundamentals ZerotoHero [TutsNode.net] - Wireless Network Fundamentals ZerotoHero 14 - Building a Wireless LAN
  • 45 - Building a Wireless LAN.mp4 (1.0 GB)
8 - Understanding Cisco Wireless Architectures
  • 29 - Split MAC and AP Modes.mp4 (763.8 MB)
  • 27 - Autonomous and CloudBased.mp4 (577.2 MB)
  • 28 - Cisco Wireless Architectures.mp4 (245.7 MB)
  • 30 - Cisco Wireless Network Building Blocks.mp4 (141.7 MB)
13 - Wireless Security Fundamentals
  • 40 - Securing Wireless Networks.mp4 (706.9 MB)
  • 41 - Wireless Client Authentication Methods.mp4 (119.9 MB)
  • 39 - Anatomy of a Secure Connection.mp4 (89.9 MB)
  • 44 - Securing Management Frames with MFP.mp4 (39.6 MB)
  • 42 - Wireless Privacy and Integrity Methods.mp4 (33.2 MB)
  • 43 - WPA and WPA2.mp4 (31.5 MB)
5 - Wireless LAN Topologies
  • 17 - Fundamentals of Wireless Networks.mp4 (519.5 MB)
  • 18 - Wireless LAN Topologies.mp4 (77.1 MB)
  • 19 - Other Wireless Topologies.mp4 (34.4 MB)
  • 16 - Types of Wireless Networks.mp4 (21.6 MB)
2 - RF Standards
  • 7 - IEEE 80211 Standards.mp4 (479.1 MB)
  • 8 - Radio Frequency RF and Wireless Bands and Standards.mp4 (327.0 MB)
  • 4 - Regulatory Bodies.mp4 (149.0 MB)
  • 6 - IEEE 80211 Channel Use.mp4 (58.0 MB)
  • 5 - IEEE Standards Body.mp4 (53.0 MB)
  • 9 - WiFi Alliance.mp4 (34.6 MB)
1 - RF Signals and Modulation
  • 2 - Understanding Basic Wireless Theory.mp4 (318.7 MB)
  • 3 - Carrying Data Over an RF Signal.mp4 (219.2 MB)
  • 1 - Comparing Wired and Wireless Networks.mp4 (12.9 MB)
16 - Troubleshooting WLAN Connectivity
  • 47 - Troubleshooting Client Connectivity.mp4 (233.5 MB)
  • 48 - Troubleshooting AP Connectivity.mp4 (97.0 MB)
  • 49 - Checking the RF Environment.mp4 (37.6 MB)
7 - Planning Coverage with Wireless APs
  • 26 - Designing and Validating Coverage with Site Surveys.mp4 (232.4 MB)
  • 25 - Adding APs to an ESS.mp4 (83.0 MB)
  • 24 - AP Cell Size.mp4 (49.6 MB)
9 - Implementing Autonomous and Cloud Deployments
  • 31 - Implementing Autonomous AP.mp4 (174.6 MB)
  • 32 - Implementing CloudBased AP.mp4 (37.1 MB)
6 - Understanding 80211 Frame Types
  • 20 - IEEE 80211 Frame Types and Addressing.mp4 (154.0 MB)
  • 22 - IEEE 80211 Frame Types.mp4 (130.8 MB)
  • 23 - Client Housekeeping.mp4 (109.9 MB)
  • 21 - Accessing the Wireless Medium.mp4 (99.6 MB)
10 - Implementing Controllerbased Deployments
  • 33 - Connecting a Centralized Controller.mp4 (150.0 MB)
12 - Understanding Roaming
  • 37 - Roaming Between Centralized Controllers.mp4 (146.7 MB)
  • 38 - Roaming Between Converged Controllers.mp4 (66.6 MB)
  • 36 - Roaming Overview.mp4 (56.7 MB)
11 - Understanding Controller Discovery
  • 34 - Understanding Controller Discovery.mp4 (132.3 MB)
  • 35 - Designing High Availability.mp4 (111.4 MB)
3 - RF Signals in the Real World
  • 11 - Free Space Path Loss.mp4 (83.8 MB)
  • 10 - Interference.mp4 (71.6 MB)
  • 12 - Effects of Physical Objects.mp4 (62.1 MB)
15 - Locating Devices in a Wireless Network
  • 46 - Locating Devices in a Wireless Network.mp4 (71.2 MB)
4 - Understanding Antennas
  • 13 - Antenna Characteristics.mp4 (68.7 MB)
  • 14 - Antenna Types.mp4 (67.3 MB)
  • 15 - Antenna Accessories.mp4 (8.3 MB)
  • TutsNode.net.txt (0.1 KB)
  • [TGx]Downloaded from torrentgalaxy.to .txt (0.6 KB)
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Description


Description

A wireless LAN (WLAN) is a wireless computer network that links two or more devices using wireless communication to form a local area network (LAN) within a limited area such as a home, school, computer laboratory, campus, or office building. This gives users the ability to move around within the area and remain connected to the network. Through a gateway, a WLAN can also provide a connection to the wider Internet.

Wireless LANs based on the IEEE 802.11 standards are the most widely used computer networks in the world. These are commonly called Wi-Fi, which is a trademark belonging to the Wi-Fi Alliance. They are used for home and small office networks that link together laptop computers, printers, smartphones, Web TVs and gaming devices with a wireless router, which links them to the internet. Hotspots provided by routers at restaurants, coffee shops, hotels, libraries, and airports allow consumers to access the internet with portable wireless devices.

The IEEE 802.11 has two basic modes of operation: infrastructure and ad hoc mode. In ad hoc mode, mobile units communicate directly peer-to-peer. In infrastructure mode, mobile units communicate through a wireless access point (WAP) that also serves as a bridge to other networks such as a local area network or the Internet.

Since wireless communication uses a more open medium for communication in comparison to wired LANs, the 802.11 designers also included encryption mechanisms: Wired Equivalent Privacy (WEP), no longer considered secure, Wi-Fi Protected Access (WPA, WPA2, WPA3), to secure wireless computer networks. Many access points will also offer Wi-Fi Protected Setup, a quick, but no longer considered secure, method of joining a new device to an encrypted network.
Who this course is for:

Enterprise Network Engineers , Wireless Engineers

Requirements

This course doesn’t have formal prerequisite.

Last Updated 3/2023



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8.4 GB
seeders:34
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Wireless Network Fundamentals Zero-to-Hero


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