Free 300-110 sample questions
Real questions from the Designing Cisco Wireless Networks (WLSD) practice bank, with the correct answer and an explanation for each one. No junk, no filler.
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Showing 6 of 12 free sample questions.
An RF engineer is designing a wireless network for a university lecture hall. The hall seats 400 students. The design requirement mandates support for 2.5 devices per student, with an assumption that 40% of devices will be actively transmitting at any given time. If a single Catalyst 9136 AP radio can efficiently handle 35 active concurrent client transmissions before unacceptable airtime degradation occurs, what is the minimum number of 5 GHz radios required to support the active capacity?
While engineering the wireless coverage for an 80,000-seat outdoor sporting arena, the design team must mitigate severe co-channel interference (CCI) while providing high-capacity access. Which TWO of the following AP and antenna combinations, along with their deployment methodologies, are most appropriate for this ultra-high-density environment? (Select TWO)
To guarantee seamless VoWLAN (Voice over WLAN) performance, a wireless consultant is defining the RF design constraints. According to Cisco's best practices for real-time application deployments, which set of minimum requirements must be met at the cell edge?
Background: A regional healthcare provider recently deployed a new wireless network across a 5-story hospital wing based entirely on a predictive site survey. Current Situation: Shortly after go-live, nursing staff reported frequent disconnects of their Wi-Fi-enabled VoIP badges, particularly when moving between the intensive care unit (ICU) and the radiology department. Constraints & Analysis: A post-deployment Layer 1 and Layer 2 active survey was conducted. The survey revealed that the predictive model assumed standard drywall (3 dB attenuation) for all interior walls. However, the walls surrounding the radiology department are lead-lined, and the ICU contains extensive metal medical equipment. The post-deployment survey showed an RSSI of -82 dBm at the roaming boundaries, whereas the predictive model estimated -65 dBm. Based on the analysis, what is the most critical failure in the initial design phase, and what is the optimal remediation strategy? flowchart LR A[Predictive Survey] -->|Assumed 3dB Drywall| B(Estimated Cell Size: Large) C[Actual Environment] -->|Lead-Lined Walls - very high loss| D(Actual Cell Size: Small) B -.->|Expectation Mismatch| E[Coverage Holes / Roaming Failures] D -.-> E
During a Layer 1 site survey in a manufacturing facility, an engineer observes a continuous, high-amplitude spike on a spectrum analyzer centered at 2.45 GHz with a 100% duty cycle. Wi-Fi clients in the immediate vicinity are experiencing complete loss of connectivity. What is the most likely source of this interference, and how does it affect the wireless design?
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