To stay updated and competitive in the market you have to upgrade your skills and knowledge level. Fortunately, with the Implementing and Operating Cisco Wireless Core Technologies (350-101) certification exam you can do this job easily and quickly. To do this you just need to pass the Implementing and Operating Cisco Wireless Core Technologies (350-101) certification exam. The Implementing and Operating Cisco Wireless Core Technologies (350-101) certification exam is the top-rated and career advancement Cisco 350-101 certification in the market.
| Certification Vendor: | Cisco |
|---|---|
| Exam Name: | Implementing and Operating Cisco Wireless Core Technologies |
| Exam Number: | 350-101 |
| Exam Format: | Simulation / scenario-based (typical Cisco exam format), Multiple choice |
| Related Certifications: | Cisco CCIE Wireless (Legacy) Cisco CCNP Wireless (Legacy) |
| Available Languages: | English |
| Recommended Training: | Cisco Wireless Networking Training (Cisco Learning Network) Cisco Official Training Catalog |
| 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 # 40
Which hierarchy in a YANG data modeling approach describes a relationship in the context of NETCONF device configuration?
Answer: B
Explanation:
YANG represents network configuration and operational state as a hierarchical data model. In Cisco model-driven programmability, YANG is used with NETCONF to model configuration and state data so that client applications can programmatically retrieve, edit, and manage device configuration. Cisco states that YANG is used with NETCONF for automated and programmable network operations, and that YANG primarily models the configuration and state data used by NETCONF operations.
The correct hierarchy is the tree and leaf-based structure. Cisco's YANG model structure description defines it as a hierarchical framework that organizes data into a tree with top-level nodes and nested child nodes, and groups related data through containers, lists, and leaves. In this model, containers and lists create structure, while leaf nodes hold actual values such as interface names, VLAN IDs, descriptions, IP addresses, or policy parameters. Option B describes a relationship inside the hierarchy, but it is not the full YANG modeling hierarchy. Options A and C are not valid YANG/NETCONF structural models.
NEW QUESTION # 41
Which feature enables fast secure roaming in a wireless network?
Answer: B
Explanation:
Fast secure roaming in enterprise wireless networks is achieved using the 802.11r standard, also known as Fast BSS Transition (FT). 802.11r allows clients to authenticate with a new access point (AP) before disassociating from the current AP, significantly reducing the time required for the re-authentication process.
This pre-authentication mechanism ensures that client sessions, such as voice or video calls, are maintained seamlessly when moving between APs in a mobility domain. DCA (Dynamic Channel Assignment) optimizes channel selection but does not affect roaming speed. 802.11ax enhances overall throughput and spectral efficiency but does not directly provide fast roaming. MIMO (Multiple Input Multiple Output) improves signal reliability and capacity but is unrelated to the authentication handoff process. Cisco Wireless Core Technologies highlight the deployment of 802.11r in conjunction with PMK caching and Opportunistic Key Caching (OKC) to further accelerate roaming in high-density environments. Implementing 802.11r is critical for environments requiring minimal packet loss and low latency during client movement, such as voice over Wi-Fi or real-time video applications. Reference topics:Client Connectivity Configuration - 802.11r, Fast BSS Transition, secure fast roaming, mobility domains, PMK caching.
NEW QUESTION # 42
A network engineer must isolate all guest users connected to the WLAN on a Cisco 9800 WLC so they cannot communicate with each other but can access the internet. The WLAN must meet these requirements:
*SSID named VisitorAccess assigned to VLAN 30
*guests prohibited from sharing files with other guests
*must be scalable to multiple access points in the building
Which action must the network engineer take to meet the requirements?
Answer: A
Explanation:
The requirement is guest client isolation, not merely guest authentication or internet breakout. On a Catalyst
9800 WLC, peer-to-peer blocking is the correct control because it prevents wireless clients associated to the same WLAN from communicating directly with one another. Cisco defines peer-to-peer blocking as a WLAN security feature applied to individual WLANs, where each client inherits the WLAN's P2P blocking behavior, and traffic can be bridged locally, dropped, or forwarded upstream. For this scenario, the appropriate action is thedropbehavior, because guest-to-guest file sharing must be prohibited while upstream internet access remains available.
The dedicated guest VLAN, VLAN 30, provides traffic segmentation from production networks and creates a clean policy boundary for VisitorAccess. Cisco's Catalyst 9800 configuration model maps WLANs to policy profiles, and the policy profile defines client network and switching policy, including VLAN association.
Options B, C, and D do not solve client isolation: local authentication validates users, FlexConnect/local switching changes traffic forwarding behavior, and multicast/RADIUS does not block unicast guest-to-guest traffic. Reference topics:Client Connectivity Configuration - guest WLAN design, P2P blocking, VLAN segmentation, and Catalyst 9800 WLAN-to-policy mapping.
NEW QUESTION # 43
What is a benefit of applying TACACS authentication for device access?
Answer: D
Explanation:
TACACS+ is used for device administration, especially for GUI and CLI access to infrastructure platforms such as Cisco Catalyst 9800 WLCs, switches, and routers. Cisco defines TACACS+ as a security application that provides centralized validation for users attempting to access a device or network access server, and it separates authentication, authorization, and accounting functions for administrative control. Cisco ISE device administration documentation further states that TACACS+ is used to control and audit network device configuration, allowing devices to query ISE for administrator authentication and authorization while sending accounting records for logging administrator actions.
Therefore, the primary benefit is streamlined administrator access across platforms. Instead of maintaining local administrator accounts independently on every WLC or network device, TACACS+ enables centralized identity validation, role-based authorization, and consistent audit trails. Option A is incorrect because TACACS+ supports differentiated authorization rather than static grouping. Option B is the opposite of centralized accounting. Option D is inaccurate because TACACS+ is mainly for device administration, whereas client or endpoint network access is typically handled with RADIUS. Reference topics:Wireless Monitoring and Management - AAA for WLC administration, TACACS+ device administration, role-based access, and centralized audit control.
NEW QUESTION # 44
What does an elevated noise floor indicate in an RF environment?
Answer: B
Explanation:
An elevated noise floor indicates degraded RF conditions and directly reduces wireless link reliability. Cisco defines the noise floor as the ambient RF noise level, expressed in dBm, below which received signals are unintelligible. Cisco also defines SNR as the ratio of signal strength to the noise floor, meaning that when the noise floor rises, the usable separation between the desired signal and background RF energy decreases.
For a receiver to decode frames reliably, the received signal must remain sufficiently above the noise floor. Cisco site-survey guidance states that RF signals must be higher than the noise floor to be detectable as valid useful signals, and gives the common design example of -67 dBm signal with a -92 dBm noise floor to maintain 25 dB SNR. When the noise floor is elevated, SNR drops, clients experience more retries, lower modulation rates, reduced throughput, and possible disconnects. Cisco's high-density wireless guidance states that raised noise floor lowers SNR, translating to lower speeds and higher airtime utilization. Options B, C, and D describe unrelated timing, spectrum- planning, or bandwidth-demand concepts.
NEW QUESTION # 45
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