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Cisco 350-101 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Automation and AI: Covers Python scripting basics, NETCONF
  • YANG, wireless API interpretation, and AI-driven analytics, operations, and radio resource management within Catalyst Center.
Topic 2
  • Wireless Monitoring and Management: Covers network maintenance tasks, client monitoring configuration, troubleshooting client connectivity issues, and integrating with external devices and platforms.
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.
Topic 4
  • 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.

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Cisco Implementing and Operating Cisco Wireless Core Technologies Sample Questions (Q95-Q100):

NEW QUESTION # 95
A network engineer is deploying a new wireless monitoring solution in a large campus. The engineer must connect Cisco Spaces Connector, Cisco ISE, and a Catalyst Center appliance to the switch infrastructure. All three services require management and telemetry connectivity, and the security policy mandates segregation of management and user traffic. The engineer also must ensure that any network changes do not disrupt ongoing wireless services for users and staff. Which implementation must the engineer use on the switch interfaces?

Answer: D

Explanation:
For campus wireless monitoring deployments involving Cisco Spaces, ISE, and Catalyst Center appliances, strict separation of management traffic from user data is required to maintain security and service continuity.
The correct approach is to configure the switch interfaces connecting these appliances as access ports assigned to the dedicated management VLAN. This ensures that management and telemetry traffic is isolated from production WLAN traffic, preventing any disruption to end users if configuration changes are made.
Assigning the management VLAN as the native VLAN on trunk ports (Option B) is inappropriate because the native VLAN still transmits untagged traffic and could allow accidental bridging with user traffic, violating security policies. PortFast (Option A) is used for rapid STP convergence on end-user ports but does not enforce VLAN separation or management isolation. Port Aggregation Protocol (Option C) is intended for link bundling and redundancy, not VLAN segmentation. Cisco Wireless best practices emphasize access port configuration for management appliances in a dedicated VLAN to guarantee security, telemetry reliability, and non-disruptive network operations. Proper implementation involves assigning a unique VLAN ID for all monitoring and management devices and configuring the switch port as an access port, ensuring consistent isolation and predictable behavior in a high-density campus environment. Reference topics:Wireless Monitoring and Management - Cisco Spaces deployment, ISE integration, management VLAN isolation, switch access port configuration.


NEW QUESTION # 96
What is the primary modulation technology used by 802.11ax in wireless communications?

Answer: A

Explanation:
The correct answer isorthogonal frequency-division multiple access, orOFDMA. Cisco identifies 802.11ax, also known as Wi-Fi 6, as the generation that introduces OFDMA-based operation to improve efficiency, especially in dense wireless environments. Cisco's Catalyst 9800 documentation states that OFDMA support for 802.11ax APs improves performance in dense deployments, enables simultaneous data transmissions with OFDMA and MU-MIMO, and supports uplink and downlink multi-user operations across multiple client devices.
Strictly, OFDMA is a multi-user channel-access and subcarrier allocation method rather than a pure constellation modulation scheme. However, within 802.11ax fundamentals and this answer set, OFDMA is the defining PHY/MAC technology. It divides a 20, 40, 80, or 160 MHz channel into smaller resource units so multiple clients can transmit or receive in the same transmission opportunity. Cisco further explains that OFDMA improves wireless performance by using independently modulated subcarriers within frequencies, allowing simultaneous transmissions to and from multiple clients. FHSS and DSSS belong to older 802.11 PHY generations. QAM is used for symbol modulation, but "Quadrature Amplitude Modulation OFDMA" is not the primary 802.11ax technology name. Reference topics:802.11ax/Wi-Fi 6, OFDMA, resource units, uplink/downlink multi-user operation, and high-efficiency WLAN design.


NEW QUESTION # 97
How does U-NII-1 operate with regards to the common frequency bands supported in enterprise wireless networks?

Answer: B

Explanation:
U-NII-1 (Unlicensed National Information Infrastructure-1) is a segment of the 5 GHz band commonly used in enterprise wireless deployments. It is specifically designated for indoor use to help minimize interference with other devices and reduce regulatory conflicts. U-NII-1 operates in the lower 5 GHz range (5.150?.250 GHz in the U.S.) and imposes power and indoor restrictions, which prevents outdoor deployment that could interfere with radar and other critical communications. This band supports 802.11a/n/ac/ax Wi-Fi clients, providing multiple non- overlapping channels that facilitate high-density enterprise deployments. By restricting usage to indoor environments, U-NII-1 helps maintain predictable coverage and mitigates interference from outdoor sources, making it ideal for office and campus environments where controlled radio propagation is critical. The access points and wireless controllers dynamically handle channel assignment and power levels to ensure efficient spectrum usage while conforming to these regulatory limitations. Option C accurately reflects these operational parameters by highlighting indoor restriction and interference minimization, whereas the other options mischaracterize the frequency range, power, or permitted use.


NEW QUESTION # 98
What defines RSSI in radio signal measurements?

Answer: B

Explanation:
RSSI, or Received Signal Strength Indicator, is a measure of the detected power level of a radio signal at the receiver, expressed in dBm. It reflects the strength of the wireless signal received by the client or access point and is a critical metric for assessing coverage, link quality, and roaming decisions. Higher RSSI values (closer to 0 dBm) indicate stronger signals, while lower values (more negative) represent weaker signals. RSSI is used by Cisco wireless controllers and clients to make roaming decisions, select access points, and optimize transmit power levels. Option B, noise generated by interference, affects signal-to-noise ratio but does not define RSSI. Option C, QoS packet marking, pertains to network traffic prioritization, not RF measurements.
Option D, wireless radio service ID, refers to identifying services on a network and is unrelated to signal strength measurement. Understanding RSSI is fundamental in RF planning, AP placement, and troubleshooting wireless coverage issues. Cisco Wireless Core Technologies emphasize monitoring RSSI to maintain adequate signal levels across the deployment, ensuring seamless connectivity and performance in high-density or challenging RF environments. Reference topics:RF Fundamentals - RSSI, signal strength, link quality, roaming, RF planning.


NEW QUESTION # 99
What is an attribute of the workgroup bridge mode for an AP in a wireless network?

Answer: C

Explanation:
The workgroup bridge mode on a Cisco access point is designed to integrate a wired network segment into an existing wireless infrastructure. In this mode, the AP acts as a client to a root AP or wireless controller-managed network, bridging Ethernet-connected devices on its wired ports to the wireless LAN. This is commonly deployed in environments where wired devices, such as printers, legacy systems, or isolated office equipment, require network connectivity but cannot directly connect to the wired backbone.
Traffic from devices on the wired segment is encapsulated and transmitted over the wireless link to the root AP, effectively extending network access without running physical cabling. Unlike bridging between multiple AP radios (2.4 GHz vs. 5 GHz), or providing inter-Ethernet port forwarding, the primary attribute of a workgroup bridge is wireless-to-wired integration, not radio- to-radio communication or internal LAN segmentation. Broadcast domains are limited to the bridged wired segment and the wireless uplink; they are not automatically extended across all interfaces without VLAN configuration.
Cisco deployment guides emphasize that workgroup bridge mode is ideal for connecting remote wired clusters to a centralized WLAN, providing seamless connectivity while maintaining security and management under the controller or root AP.


NEW QUESTION # 100
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