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Cisco 350-101 Exam Sample Online | 350-101 Mock Test
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Cisco Implementing and Operating Cisco Wireless Core Technologies Sample Questions (Q57-Q62):
NEW QUESTION # 57
Which CleanAir feature is used to avoid channels with interference from devices such as outdoor bridges and microwave ovens?
- A. Air Quality Index
- B. Channel Utilization
- C. Spectrum Analysis
- D. Persistent Device Avoidance
Answer: D
Explanation:
Cisco CleanAir technology is designed to detect, classify, and mitigate RF interference in enterprise wireless networks. Persistent Device Avoidance is a CleanAir feature that identifies non-Wi-Fi sources of interference, such as microwave ovens, outdoor bridges, or other RF devices, and then instructs the wireless LAN controller (WLC) to avoid channels affected by these interferers. By doing so, APs can select cleaner channels, reducing packet loss, improving throughput, and maintaining optimal coverage. Spectrum Analysis (Option B) provides visibility into the RF environment and interference sources but does not automatically avoid channels. Air Quality Index (Option C) gives a real-time assessment of RF quality per channel but is a monitoring metric, not an avoidance mechanism. Channel Utilization (Option D) reports on the percentage of channel occupancy by Wi-Fi traffic, assisting in load balancing, but does not prevent interference from external sources. Persistent Device Avoidance ensures proactive channel selection in environments with consistent interference, enhancing overall network reliability and performance. This capability is critical in high-density or mixed-use environments, where interference from non-Wi-Fi devices can degrade client experience. Reference topics:Wireless Network Operation - Cisco CleanAir, Persistent Device Avoidance, RF interference mitigation, channel optimization.
NEW QUESTION # 58
A network engineer must ensure that guest users connecting to a Cisco 9800 WLC are assigned IP addresses from a specific subnet that is separate from corporate users. The guest network must support at least 200 simultaneous connections and isolate traffic from internal devices. The DHCP server must allocate addresses only within the 10.20.30.0/24 subnet. Which action must the network engineer take to accomplish this task?
- A. Create a dedicated guest interface and map it to the guest policy profile for the guest WLAN.
- B. Use static IP address assignment for the guest WLAN interface and use ACLs for separation.
- C. Assign a unique policy tag to the guest WLAN and use a shared DHCP pool with DHCP option 43.
- D. Set up a unique policy tag on the guest WLAN and use a shared DHCP pool.
Answer: A
Explanation:
The correct action is to create a dedicated guest interface/VLAN and bind it to the guest WLAN through the Catalyst 9800 policy profile. In Catalyst 9800 architecture, the WLAN defines the SSID and wireless security parameters, while the policy profile defines client forwarding policy, VLAN mapping, DHCP-related behavior, and access policy. Cisco's Catalyst 9800 VLAN configuration procedure places the VLAN selection under thePolicy Profile > Access Policiessection, where a VLAN or VLAN group is mapped to the WLAN policy profile. Cisco also documents that DHCP can be configured per interface or per WLAN and recommends using the DHCP server address assigned to the relevant interface for WLAN client addressing.
A dedicated guest VLAN backed by the 10.20.30.0/24 DHCP scope provides up to 254 usable addresses, satisfying the 200-client requirement while keeping guest users separated from corporate users at Layer 3
/VLAN boundaries. Option A and C are wrong because a shared DHCP pool violates the requirement for a guest-only subnet; DHCP option 43 is for AP/controller discovery, not client addressing. Option D is not scalable and does not define DHCP allocation. Reference topics:Catalyst 9800 policy profiles, WLAN-to- policy mapping, guest VLAN segmentation, DHCP scopes, and guest network isolation.
NEW QUESTION # 59
Which feature enables fast secure roaming in a wireless network?
- A. DCA
- B. MIMO
- C. 802.11ax
- D. 802.11r
Answer: D
Explanation:
Fast secure roaming in enterprise wireless networks is achieved using the 802.11r standard, also known as Fast BSS Transition (FT). 802.11r allows clients to authenticate with a new access point (AP) before disassociating from the current AP, significantly reducing the time required for the re-authentication process.
This pre-authentication mechanism ensures that client sessions, such as voice or video calls, are maintained seamlessly when moving between APs in a mobility domain. DCA (Dynamic Channel Assignment) optimizes channel selection but does not affect roaming speed. 802.11ax enhances overall throughput and spectral efficiency but does not directly provide fast roaming. MIMO (Multiple Input Multiple Output) improves signal reliability and capacity but is unrelated to the authentication handoff process. Cisco Wireless Core Technologies highlight the deployment of 802.11r in conjunction with PMK caching and Opportunistic Key Caching (OKC) to further accelerate roaming in high-density environments. Implementing 802.11r is critical for environments requiring minimal packet loss and low latency during client movement, such as voice over Wi-Fi or real-time video applications. Reference topics:Client Connectivity Configuration - 802.11r, Fast BSS Transition, secure fast roaming, mobility domains, PMK caching.
NEW QUESTION # 60
Which wireless connection occurs when there are no physical obstacles between the receiver and transmitter?
- A. attenuation
- B. reflection
- C. line-of-sight
- D. beamforming
Answer: C
Explanation:
The correct answer isline-of-sight. In RF terminology, line-of-sight describes a wireless path where the transmitting antenna and receiving antenna have an unobstructed visual or RF path between them. Cisco's RF power documentation defines this directly: antennas that can see each other without obstacles between them are considered to be in line of sight. This is especially important in outdoor, bridge, mesh, and point-to-point wireless designs, where buildings, terrain, foliage, or other obstructions can degrade or block the RF path.
The other options describe different RF behaviors.Attenuationis signal loss as RF energy travels through free space, cables, walls, or other materials.Reflectionoccurs when RF energy bounces off a surface such as metal, glass, or concrete, often contributing to multipath.Beamformingis an antenna/transmission technique that focuses RF energy toward a client or receiver to improve signal quality; it is not the condition of having no obstacles. Cisco mesh planning guidance also emphasizes verifying whether a wireless link has clear line of sight before deployment, reinforcing that LOS is a path condition, not a modulation or security feature.
Reference topic:RF Fundamentals - RF propagation, path loss, line-of-sight, obstruction effects, and wireless link planning.
NEW QUESTION # 61
In an RF environment, what does high interference result in?
- A. unreliable frame aggregation
- B. scheduled contention access
- C. extended coverage patterns
- D. inconsistent channel performance
Answer: D
Explanation:
The correct answer is B. inconsistent channel performance . In WLAN RF design, interference is unwanted RF energy in the same or adjacent frequency space that reduces the usable quality of a channel. Cisco defines interference as unwanted RF signals in the same frequency band that can cause degradation or loss of service.
When interference increases, the channel becomes less predictable: clients and APs experience higher contention, more retries, lower modulation rates, reduced throughput, and unstable latency.
Cisco also notes that overlapping channels can create RF interference, leading to connectivity issues and poor throughput. In co-channel interference scenarios, adjacent radios on the same channel interfere with network performance through collisions or excessive CSMA deferrals, degrading WLAN performance. This directly maps to inconsistent channel performance because the channel may appear usable at one moment and congested or impaired the next.
The other answers are not the best operational result. Frame aggregation may be impacted indirectly, but it is not the primary RF-level outcome. Scheduled contention access is not caused by interference. Extended coverage patterns are related to antenna gain, transmit power, and propagation, not high interference.
Reference topic: RF Fundamentals - interference, channel utilization, co-channel interference, adjacent-channel interference, retries, and WLAN performance degradation.
NEW QUESTION # 62
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