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| Certification Vendor: | Cisco |
|---|---|
| Exam Name: | Implementing and Operating Cisco Wireless Core Technologies |
| Exam Number: | 350-101 |
| Related Certifications: | Cisco CCNP Wireless (Legacy) Cisco CCIE Wireless (Legacy) |
| Available Languages: | English |
| Exam Format: | Multiple choice, Simulation / scenario-based (typical Cisco exam format) |
| Recommended Training: | Cisco Official Training Catalog Cisco Wireless Networking Training (Cisco Learning Network) |
| Exam Registration: | Cisco Learning Network Certification Portal Cisco Certification Exam Registration (Pearson VUE) |
| Sample Questions: | Cisco 350-101 Sample Questions |
| Exam Way: | Computer-based exam delivered via Pearson VUE testing centers or online proctoring (Cisco exams standard delivery method) |
| Pre Condition: | No confirmed official prerequisite available for this exam code mapping. Cisco wireless certifications typically recommend foundational networking knowledge (CCNA-level). |
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NEW QUESTION # 16
How does the optimized roaming function operate in a WLC implementation?
Answer: A
Explanation:
Optimized roaming is a Cisco WLC feature designed to reduce sticky-client behavior. A sticky client remains associated to an AP even after moving far enough away that another AP would provide better RF service. Cisco describes optimized roaming as actively monitoring client data RSSI and disconnecting clients when received signal strength falls below the configured threshold. The official Catalyst 9800 documentation states that optimized roaming "disassociates client when the RSSI is lower than the set threshold," which directly matches option A.
This function does not calculate device location through peer-to-peer beaconing, does not depend on external experience services, and is not static load balancing. It is an RF/client- roaming enforcement mechanism controlled by the wireless infrastructure. In practical operation, the AP/WLC evaluates client signal quality and, when the configured optimized roaming criteria are met, forces the client to disconnect so it can reassess the RF environment and roam to a better AP. Cisco also notes that optimized roaming helps maintain client connectivity by managing disassociationn based on RSSI and data-rate thresholds.
NEW QUESTION # 17
In an RF environment, what does high interference result in?
Answer: C
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 # 18
What is a feature of an RTS frame in the context of 802.11 frame types?
Answer: A
Explanation:
An RTS frame is an 802.11control frameused in the Request to Send/Clear to Send exchange. Cisco identifies RTS as a Request to Send frame and explains that 802.11 control frames assist in delivering data frames between stations. Cisco further states that the RTS/CTS function is optional, helps reduce collisions when hidden stations are associated to the same access point, and that a station sends an RTS frame as the first phase before transmitting a data frame.
Therefore, option B is correct because the RTS frame requests access to the wireless medium before data transmission. If the receiving station or AP replies with CTS, nearby stations defer transmission based on the duration information, reducing collision probability. This is especially relevant in hidden-node environments where two clients can hear the AP but cannot hear each other. Option A refers to RF spectral-mask compliance, which is a physical-layer regulatory concept. Option C confuses NAV behavior with roaming; RTS/CTS may influence virtual carrier sensing, not client roaming updates. Option D is unrelated because frame compression is not an RTS function. Reference topics:802.11 frame types, control frames, RTS/CTS, CSMA/CA, hidden-node mitigation, and medium reservation.
NEW QUESTION # 19
A wireless deployment experiences intermittent client disconnections caused by excessive roaming sensitivity. Which client-side metric is MOST associated with roaming decisions?
Answer: A
Explanation:
Clients primarily use RSSI thresholds and signal quality metrics to determine when roaming should occur. Aggressive roaming thresholds may trigger unnecessary AP transitions, resulting in instability. CAPWAP MTU and RADIUS timeout values do not directly influence roaming sensitivity decisions made by wireless clients.
NEW QUESTION # 20
A network engineer is integrating Cisco ISE with a wireless controller for 802.1X authentication.
The controller is registered with Cisco ISE as a network device. To secure communication, the engineer must configure a shared secret for RADIUS authentication. Which CLI command on the WLC accomplishes this task?
Answer: A
Explanation:
The key 0 command configures the shared RADIUS secret under the RADIUS server definition on the Catalyst 9800 WLC, allowing the controller and Cisco ISE to securely authenticate RADIUS messages.
NEW QUESTION # 21
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