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1. An engineer must design and configure a wireless network for pervasive coverage in an oil terminal, casual web and email traffic, 5 GHz. What is the best design?
A) Disable all data rates below 24 Mbps and keep the power assignment on the AP as auto.
B) Keep all the data rates enabled and set the AP power assignment mode to auto.
C) Keep the power assignment as auto and disable 802.11n and 802.11ac MCS rate.
D) Disable all data rates below 54 Mbps and assign static power level 1 on all access points.
2. Users who leave the office with a wireless headset must be able to hand oft the voice call with minimal disruption. The engineer drafted four possible Door plans for AP placement:
* red dots and arrows represent the direction of travel
* blue dots represent the AP placements
Which floor plan provides the requested functionality?
A)
B)
C)
D)
A) Floor plan D
B) Floor plan C
C) Floor plan A
D) Floor plan B
3. An engineer is designing a wireless solution for a corporate campus which includes two primary buildings:
Research and Operations. The design must ensure seamless mobility for employees moving between buildings, support uninterrupted connectivity for real-time applications, and facilitate efficient Layer 2 and Layer 3 roaming. Each building ' s 9800-80 WLC manages its local APs, and the solution must support 802.11 r/k/v while maintaining an effective mobility control plane. Which design approach leverages Cisco mobility group architecture to meet the requirements?
A) Establish the Operations building ' s WLC as an anchor controller, configuring the Research building ' s WLC to tunnel all client traffic to it for centralized traffic management.
B) Assign each 9800-80 WLC to separate mobility groups, one for each building, to isolate traffic and mitigate the risk of overloading a single mobility group.
C) Designate the Research building ' s WLC as the primary controller and the Operations building ' s WLC as a secondary controller within a single mobility group to centralize mobility management.
D) Add both 9800-80 WLCs in a single mobility group with no specific roles assigned, enabling peer-to- peer coordination for seamless roaming across buildings.
4. A network engineer is designing a new wireless network. The network must include these requirements: * optimized performance * avoid interference * availability in high-density areas * roaming Which two approaches must be taken? (Choose two.)
A) 2.4 GHz frequency band with 40 MHz channels
B) 2.4 GHz frequency band with 20 MHz channels
C) 5 GHz frequency band with 80 MHz channels
D) 5 GHz frequency band with 20 MHz channels
E) 5 GHz frequency band with 40 MHz channels
5. An engineer is designing a high-density WLAN that must support 100 concurrent users with 100 Mbps throughput consistently. The design allows for 20 Mbps per cell and per channel on the 5 GHz band. How many channels must the design use to provide 1 Mbps per user prior to RF overhead?
A) 20
B) 5
C) 15
D) 10
Solutions:
| Question # 1 Answer: B | Question # 2 Answer: D | Question # 3 Answer: D | Question # 4 Answer: B,D | Question # 5 Answer: B |
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