Authoritative Cisco - 350-101 - New Implementing and Operating Cisco Wireless Core Technologies Braindumps Sheet

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Cisco 350-101 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Wireless Monitoring and Management: Covers network maintenance tasks, client monitoring configuration, troubleshooting client connectivity issues, and integrating with external devices and platforms.
Topic 2
  • RF Fundamentals: Covers the behavior of radio waves, how RF signals are measured and interpreted, the mathematics behind RF calculations, and the characteristics of Wi-Fi antennas.
Topic 3
  • 802.11 Technology Fundamentals: Covers Wi-Fi governance bodies, regional channel and power regulations, and the core technical principles of 802.11 including modulation, channel width, MIMO, topologies, and frame types.

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Cisco Implementing and Operating Cisco Wireless Core Technologies Sample Questions (Q47-Q52):

NEW QUESTION # 47
An engineer has been tasked with configuring a Cisco Catalyst 9100 AP to join a WLC using a static configuration as DHCP and DNS discovery methods are not available. The engineer has set the AP hostname to `AP053540555', and has configured the AP with a static IP address, subnet mask, and default gateway. The engineer must now configure the AP to discover the primary WLC with hostname `WLC-PRIMARY' and IP address `192.168.100.10'. Which CLI command must the engineer use on the AP?

Answer: A

Explanation:
The correct AP-side command is capwap ap primary-base WLC-PRIMARY 192.168.100.10.
Cisco's Catalyst AP command reference shows the syntax for configuring the primary controller as capwap ap primary-base <controller-name> <controller-ip-address>, and provides the same structure in its example: capwap ap primary-base wlc-5520 209.165.200.224. Cisco's Catalyst
9800 AP join documentation also identifies the primary controller discovery entry as capwap ap primary-base <wlc-hostname> <wlc-IP-address>.
This command statically primes the lightweight AP with the preferred WLC when DHCP option
43, DNS discovery, broadcast discovery, or prior learned controller information is unavailable.
The hostname AP053540555 is only the AP's local identity and is not part of the WLC discovery command. Option A omits the primary-base keyword, so it is not valid syntax. Option B places keywords in the wrong order and does not match Cisco CAPWAP AP CLI. Option C omits the required controller name before the IP address.


NEW QUESTION # 48
What is a characteristic of gain in wireless antenna design?

Answer: A

Explanation:
In wireless antenna design, gain refers to the measure of an antenna's ability to focus energy in a particular direction compared to a reference antenna, usually an isotropic radiator. Gain does not generate additional power; instead, it redistributes radiated energy to increase signal strength in the intended direction, enhancing the effective range and performance of the wireless link. This directional amplification is crucial in both point-to-point and point-to-multipoint deployments, as higher gain antennas can concentrate RF energy to overcome path loss and improve received signal strength at the target.


NEW QUESTION # 49
A university is deploying Cisco Catalyst 9176 APs at several satellite campuses, each with its own subnet and DNS services. The APs will be shipped with only their MAC addresses preregistered on the WLC. The satellite campuses do not use DHCP option 43, but they have access to a central DNS server. IT staff want APs to discover and join the Catalyst 9800 WLC automatically without site visits. Which solution must the IT staff implement?

Answer: D

Explanation:
For Cisco Catalyst 9176 APs deployed at remote sites without DHCP option 43, automatic WLC discovery can be accomplished using DNS-based CAPWAP controller discovery. By creating a DNS A record namedcisco-capwap-controller. < domain > that resolves to the WLC management IP address, APs can query DNS and locate their centralized controller automatically, eliminating the need for site visits or manual configuration. This method is preferred for large-scale or satellite deployments where APs may exist on different subnets and traditional DHCP-based discovery is unavailable. Option A is impractical because manually assigning static IPs to hundreds of APs is operationally complex and error-prone. Option B, using a multicast group, is not supported for cross-subnet controller discovery in CAPWAP; multicast is limited to local subnets. Option D (ap-discovery) is not a recognized standard for WLC discovery; Cisco specifically documentscisco-capwap-controlleras the required DNS entry for CAPWAP-based automatic discovery. This approach ensures zero-touch provisioning, simplifies network operations, and guarantees that APs join the correct controller, supporting centralized management and consistent configuration across multiple campuses.
Reference topics:Wireless Network Implementation - CAPWAP discovery, DNS-based controller discovery, Catalyst 9800 WLC onboarding, zero-touch provisioning.


NEW QUESTION # 50
What is the time taken for an RF signal to travel from the transmitter to the receiver known as?

Answer: A

Explanation:
In RF communications, propagation delay refers to the finite time required for a signal to travel from the transmitter to the receiver over a given medium. This delay depends on the distance between the endpoints and the speed at which electromagnetic waves propagate through the medium, typically close to the speed of light in air (approximately 3 ?10 m/s). Propagation delay is fundamental in calculating network latency, timing synchronization in protocols, and designing wireless coverage, especially in large-scale enterprise networks.


NEW QUESTION # 51
What does a low SNR value result in?

Answer: A

Explanation:
The Signal-to-Noise Ratio (SNR) is an important metric used to determine the quality of a wireless signal. It compares the strength of the signal to the level of background noise. A low SNR indicates that the signal is weak relative to the noise, leading to poor signal quality.
Option D: Decreased data integrity with possible errors is the correct answer. When SNR is low, the quality of the data transmission is compromised. The noise interferes with the signal, leading to potential data errors and a decrease in data integrity. This can cause packets to be lost or corrupted, requiring retransmissions, and reducing the overall performance and reliability of the network.


NEW QUESTION # 52
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