Cisco - 350-101 - Fantastic Exam Implementing and Operating Cisco Wireless Core Technologies Question

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Cisco 350-101 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Wireless Network Operation: Covers initial configuration of Cisco wireless infrastructure, AP discovery and join processes, AP modes, WLAN setup, and client management policies across platforms like Catalyst Center, ISE, and Spaces.
Topic 2
  • 802.11 Technology Fundamentals: Covers Wi-Fi governance bodies, regional channel and power regulations, and the core technical principles of 802.11 including modulation, channel width, MIMO, topologies, and frame types.
Topic 3
  • Wireless Network Implementation: Covers Cisco wireless deployment architectures (Fabric, Mesh, Local, Cloud), physical infrastructure setup, and configuring management access for APs, WLCs, and dashboards.

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Cisco Implementing and Operating Cisco Wireless Core Technologies Sample Questions (Q36-Q41):

NEW QUESTION # 36
Which feature does bridge mode provide in a Cisco wireless mesh architecture?

Answer: D

Explanation:
Bridge mode in a Cisco wireless mesh deployment allows access points to operate as mesh infrastructure nodes, typically as a Root AP (RAP) or Mesh AP (MAP), so Ethernet segments can be connected across a wireless backhaul. Cisco's mesh design documentation states that in a point-to-point bridging scenario, a mesh AP can extend a remote network by using the backhaul radio "to bridge two segments of a switched network." This directly maps to option A: point-to-point communication between network segments.
In Catalyst 9800 mesh deployments, Cisco documents converting an AP to bridge mode withcapwap ap mode bridge, after which the AP rejoins the controller in bridge mode and can be assigned a mesh role. Cisco also defines the RAP as the AP with the wired connection toward the WLC, while the MAP joins through its radio path toward the RAP. Option B is incorrect because bridge mode does not force all traffic to 2.4 GHz; Cisco mesh backhaul can use configured backhaul radios. Option C describes RRM/TPC behavior, not bridge mode.
Option D incorrectly associates mesh bridge mode with WAN edge functions. Reference topics:Wireless Network Implementation - mesh AP roles, RAP/MAP operation, wireless backhaul, and Ethernet bridging.
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NEW QUESTION # 37
A medium-sized enterprise must provide wireless internet to visitors in their lobby using a Cisco 9800 WLC.
The solution must meet these requirements:
Ensure that guests cannot access the corporate LAN.
Guests are redirected to a login page before browsing.
The guest network must use a separate VLAN from internal users.
Access must be limited to web browsing only.
Guest access does not require any preshared keys or certificates.
Which two actions must be taken to achieve this solution? (Choose two.)

Answer: A,C

Explanation:
To implement a guest Wi-Fi network on a Cisco 9800 WLC with the requirements mentioned, the solution must ensure that guests are isolated from the corporate LAN and are redirected to a login page before being able to access the internet. Additionally, access needs to be restricted to web browsing only, with no need for preshared keys or certificates.
Option A: "Create a WLAN that uses a web policy and points to a consent parameter map."This is necessary to enforce the login page and redirect users to a webauth page. By creating a WLAN with web policy, you ensure that users are redirected to a captive portal where they can accept the terms and conditions or login to the network. This solution also helps in segregating the guest network from the corporate network, as users are contained within their VLAN.
Option E: "Deploy a WLAN policy that points wireless users to a webauth parameter map."Web authentication (webauth) is an essential part of guest access. Deploying a WLAN policy with webauth ensures that users are directed to the login page (a webauth parameter map), allowing them to authenticate before browsing the internet.
Other options:
Option Bwould block mDNS, but it does not directly address the need for a login page or VLAN segregation.
Option Cis important for enforcing access control policies, but it doesn't fulfill all the requirements of the login page and limited access (web browsing only).
Option Dis unrelated to the requirement of providing access only to web browsing, as it primarily addresses peer-to-peer traffic blocking, which is not directly tied to web access control.
Therefore, the correct solution involves combining a web policy with a webauth parameter map for login page redirection (A and E).


NEW QUESTION # 38
An IT team is deploying Meraki APs at a remote branch and must ensure that they are automatically assigned to the correct network in the Meraki dashboard. The branch is scheduled to receive 20 new APs, and site connectivity to headquarters was set up. Before shipping the APs, the team must make sure that each one is claimed by the intended network for management and monitoring. Which deployment action must they take before physically connecting the APs?

Answer: C

Explanation:
When deploying Meraki APs, it is essential to claim each AP in the Meraki dashboard to ensure that they are automatically assigned to the correct network and can be managed remotely. This process involves registering the APs with the Meraki cloud, which is done by adding the AP serial numbers to the network within the Meraki dashboard before physically installing them at the branch.
Option B: "Add the AP serial numbers to the required network within the Meraki dashboard." This is the correct answer. Before the APs are physically connected, the administrator needs to log into the Meraki dashboard and add the serial numbers of the new APs to the intended network.
This ensures that once the APs are powered on and connected, they automatically join the correct network and are ready for monitoring and management without requiring further configuration.


NEW QUESTION # 39
What is a benefit of network adaptability in terms of improved operational outcomes when using AI-RRM in Cisco Catalyst Center?

Answer: D

Explanation:
The correct answer is reduction of co-channel interference. AI-RRM in Cisco Catalyst Center is designed for RF optimization, not IP addressing, software scheduling, or user identity classification. Cisco describes AI-enhanced RRM as applying artificial intelligence and machine learning to optimize RF environments and automate/adapt RF parameter tuning for Cisco wireless networks. This is directly tied to operational RF outcomes such as improved channel planning, transmit power behavior, channel width decisions, and better spectrum utilization.
Co-channel interference occurs when multiple AP radios operate on the same channel within hearing range, forcing devices to share airtime and increasing contention. AI-RRM uses telemetry, analytics, and learned RF behavior to recommend or apply more optimal RF configurations. Cisco specifically states that AI-enhanced RRM optimization can produce improvements such as up to a 40 percent reduction in co-channel interference and SNR gains for wireless clients. Cisco's AI-RRM deployment guidance also identifies AP radio distribution and utilization analysis as critical for minimizing co-channel interference and optimizing wireless performance.
Therefore, option B is the only operational outcome aligned with AI-RRM's purpose.


NEW QUESTION # 40
A deployment includes IoT sensors that support only 2.4 GHz connectivity. Performance issues occur because nearby APs heavily utilize overlapping channels. Which channel plan is recommended?

Answer: B

Explanation:
In most regulatory domains, channels 1, 6, and 11 are the standard non-overlapping 2.4 GHz channels. Using these minimizes adjacent-channel interference and improves performance.
Overlapping channels create excessive interference and degraded wireless throughput for legacy IoT environments.


NEW QUESTION # 41
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