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Cisco 300-110 Exam Syllabus Topics:

SectionObjectives
Cisco Wireless Architecture- Mobility groups and roaming design
- Lightweight Access Point (LAP) deployment models
- Controller-based architecture (WLC)
Wireless Security Design- 802.1X authentication and RADIUS integration
- Guest access and segmentation strategies
- WPA2/WPA3 enterprise security design
High Availability and Performance Optimization- Load balancing and RF optimization
- Redundancy design for controllers and APs
RF Fundamentals and Design Principles- Antenna types and placement strategies
- Channel planning and interference mitigation
- RF behavior and propagation
Wireless Site Survey and Requirements Analysis- Physical environment assessment and constraints
- Business and technical requirements gathering
- Coverage and capacity planning
Troubleshooting and Validation- Validation tools and post-deployment testing
- Wireless performance troubleshooting methodologies

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Cisco Designing Cisco Wireless Networks Sample Questions (Q53-Q58):

NEW QUESTION # 53
An engineer must design AP placements for a new branch office that contains two floors. The engineer uses Ekahau to complete the predictive survey. To calculate the signal bleed through between floors, the engineer creates a building, adds the floors, and attenuation areas. After the scale is set, what else must be added on the floors to accurately measure the signal bleed at a specific location?

Answer: C

Explanation:
In Ekahau Site Survey ' s multi-floor predictive modeling workflow, alignment points are the critical mechanism that allows the software to understand the precise vertical spatial relationship between floors in a multi-story building. Once floor plans are imported with their scale correctly defined, alignment points must be placed on each floor at the same real-world physical location - such as a stairwell corner, elevator shaft, or structural column - so that Ekahau can accurately calculate vertical signal propagation and inter-floor RF bleed. Without alignment points, the software has no spatial reference to determine which area on Floor 2 is directly above a given point on Floor 1, making floor-to-floor signal bleed calculations geometrically impossible. Drawing coverage areas (Option A) is a post-AP-placement activity. Starting the auto planner (Option B) would attempt to place APs without the required spatial reference. Choosing AP models (Option D) is a subsequent step. Alignment points are a fundamental requirement for any predictive survey involving multi-floor buildings. Reference: WLSD Study Guide - Ekahau Predictive Survey Methodology, Multi- Floor Building Configuration, Signal Propagation Modeling.


NEW QUESTION # 54
A network engineer is deploying Cisco 9130I APs on multiple Cisco Catalyst 9800-80 WLCs with Cisco Catalyst Center. The engineer must enable Cisco AI Analytics and location analytics to use the RRM features to automatically manage the WLC RF profiles. Which type of license must be used on Cisco Catalyst Center?

Answer: C

Explanation:
Cisco Catalyst Center ' s AI-driven network management capabilities - including AI Analytics, AI-Enhanced RRM (Radio Resource Management), location analytics (DNA Spaces integration), and automated RF profile management - are exclusively available under the Catalyst Advantage license tier. The Advantage tier builds upon the Essentials tier and adds access to the full suite of AI/ML-powered assurance and optimization features. Specifically, AI-Enhanced RRM leverages machine learning models trained on historical RF telemetry to predict and prevent RF issues, dynamically adjust channel and power assignments, and automate RF profile selection - capabilities that cannot be activated without the Advantage license. Location analytics through Catalyst Center integrates with Cisco Spaces to provide real-time client location tracking, asset tracking, and spatial analytics. Catalyst Essentials (Option C) provides basic device management, software image management, and network plug-and-play provisioning - it does not include AI Analytics or advanced RRM automation. Right-To-Use (Option B) is a legacy licensing model not applicable to Catalyst Center.
SNTC SmartNet (Option D) is a support and maintenance contract, not a software feature license. Reference:
WLSD Study Guide - Cisco Catalyst Center Licensing, AI-Enhanced RRM, Catalyst Advantage Feature Set.


NEW QUESTION # 55
An engineer is designing an outdoor mesh network for a container yard. Which two design rules apply to the mesh deployment? (Choose two.)

Answer: C,D

Explanation:
In a Cisco mesh deployment, the Root AP (RAP) has a wired connection to the network and the Mesh APs (MAPs) connect back to it over a wireless backhaul, typically using the 5 GHz radio.
Cisco recommends limiting the mesh to no more than four hops from RAP to the furthest MAP (Option A); while more hops are technically possible, each additional hop increases latency, jitter, and convergence time after a link failure. Backhaul throughput is roughly halved with each hop (Option C) because a MAP that relays traffic must both receive and retransmit each frame on the same half-duplex radio channel, consuming airtime twice. This compounds down the chain, so an eight-hop design delivers negligible usable throughput at the far end. MAPs by definition have no wired uplink, and RAPs and their associated MAPs must share the same bridge group name to form the mesh tree.


NEW QUESTION # 56
An engineer is designing guest access where guest traffic from foreign controllers on the internal network must terminate in the DMZ. Which two requirements must the design satisfy? (Choose two.)

Answer: B,E

Explanation:
Auto-anchor guest tunneling requires that the guest WLAN be configured identically on both the foreign and anchor controllers (Option B) - the SSID, security settings, and WLAN ID must match, because the anchor applies its own policy to the tunneled session and a mismatch causes the client to be dropped or assigned incorrect policy. A mobility tunnel between the two controllers (Option D) is the transport that carries the guest traffic from the internal foreign controller to the DMZ anchor, allowing the client's data to bypass the internal network entirely and terminate on the DMZ segment. Controllers must be configured as mobility peers of each other, but they do not need to share a mobility group name for auto-anchor to function, and they explicitly do not need to be in the same Layer 2 VLAN - the whole point of the design is that the anchor sits in a separate, firewalled DMZ subnet. RF group leadership is unrelated to guest tunneling.


NEW QUESTION # 57
An engineer configured the optimized client roaming on Cisco WLC with an RSSI threshold of -72 dBm. Clients report frequent disconnections. What must be configured for the AP to guide the client to a better AP?

Answer: D

Explanation:
The scenario presents a critical distinction in where Cisco WLC features are configured.
Optimized roaming on Cisco WLC is a radio-level feature that monitors connected client RSSI and, when a client's signal falls below the configured threshold (-72 dBm), triggers a disassociation to force the client to reconnect to a stronger AP. However, without a mechanism to guide the client proactively before reaching the threshold, clients that disassociate simply reconnect to whatever AP their device selects, potentially causing the reported frequent disconnections. BSS Transition Management (802.11v) is configured at the SSID level and provides the complementary mechanism: before the client reaches the RSSI threshold, the AP sends a BSS Transition Management Request pointing the client toward a specific target AP with stronger signal. The correct architecture requires: optimized roaming configured at the radio level (triggering disconnection when RSSI falls too low) combined with BSS transition enabled at the SSID level (guiding the client to a better AP before forced disconnection).


NEW QUESTION # 58
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