300-425: Designing Cisco Enterprise Wireless Networks (ENWLSD)
The Cisco 300-425 ENWLSD exam is essential for professionals aiming to specialize in wireless network design. Our comprehensive resource for 300-425 practice tests, shared by individuals who have successfully passed the exam, provides realistic scenarios and invaluable insights to enhance your exam preparation.
Why Use 300-425 Practice Test?
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Real Exam Experience: Our practice test accurately replicates the format and difficulty of the actual Cisco 300-425 exam, providing you with a realistic preparation experience.
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Identify Knowledge Gaps: Practicing with these tests helps you identify areas where you need more study, allowing you to focus your efforts effectively.
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Boost Confidence: Regular practice with exam-like questions builds your confidence and reduces test anxiety.
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Track Your Progress: Monitor your performance over time to see your improvement and adjust your study plan accordingly.
Key Features of 300-425 Practice Test:
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Up-to-Date Content: Our community ensures that the questions are regularly updated to reflect the latest exam objectives and technology trends.
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Detailed Explanations: Each question comes with detailed explanations, helping you understand the correct answers and learn from any mistakes.
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Comprehensive Coverage: The practice test covers all key topics of the Cisco 300-425 exam, including wireless site surveys, WLAN deployment models, and wireless network design.
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Customizable Practice: Create your own practice sessions based on specific topics or difficulty levels to tailor your study experience to your needs.
Exam number: 300-425
Exam name: Designing Cisco Enterprise Wireless Networks (ENWLSD 300-425)
Length of test: 90 minutes
Exam format: Multiple-choice, drag-and-drop, fill-in-the-blank, testlet, simlet, and simulation questions
Exam language: English
Number of questions in the actual exam: 55-65 questions
Passing score: Varies, typically around 750-850 out of 1000
Use the member-shared Cisco 300-425 Practice Test to ensure you’re fully prepared for your certification exam. Start practicing today and take a significant step towards achieving your certification goals!
Related questions
A customer asks an engineer to explain the concept of mobility domains and mobility groups. Which statement does the engineer respond with?
A mobility group does not constrain the distribution of security context of a client and also does not constrain AP fail-over between controllers when the WLC are in the same mobility domain.
If WLCs are in the same mobility domain, they communicate with each other but, if an anchor WLC is present it must be in the same mobility domain for communication to be possible.
If WLCs are in the same mobility domain, they communicate with each other. Mobility groups constrain the distribution of security context of a client and also constrain AP fail-over between controllers.
WLCs do not need to be in the same mobility domain to communicate with each other. Mobility groups constrain the distribution of security context of a client and also constrain AP fail-over between controllers.
https://www.cisco.com/c/en/us/td/docs/wireless/controller/8-0/configuration-guide/b_cg80/b_cg80_chapter_010011.html
A customer Wi-Fi deployment is experiencing the sticky client problem and must enable the optimized roaming feature. The wireless clients have valid security credentials for an SSID and can see an AP that offers that SSID to join. What must be configured to enhance roaming?
How are mobility groups created, excluding mobility anchors?
The WLGs do not have to be of the same model or type to be a member of a mobility group, however each member should be running different software versions.
A mobility group does not require ell WLCs in the group lo use the same virtual IP address.
Each WLC must use the same mobility domain name and be defined as a peer in each other' s static mobility members list.
If WLCs with HA SSO are deployed, each WLC in the WLC HA pair is considered separately as a mobility peer.
Which statement about creating a mobility group is true, excluding mobility anchors?
Each WLC must use the same mobility name and be defined as a peer in each other's static mobility members list.
If WLCs with HA SSO are deployed, each WLC in the WLC HA pair considered separately as a mobility peer.
The WLCs do not have to be of the same model or type to be a member of a mobility group, however each member should be running different software versions.
A mobility groups does not require all WLCs in the group to use the same virtual IP address.
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?
An engineer in a branch office that does not have a wired backhaul must ensure that local clients can be switched locally and authenticated centrally. In which mode must the AP be configured?
Refer to the exhibit. An engineer must design a mobility group that has these requirements:
* The mobility group must consist of two WLCs.
* All WLCs must run software version 8.0 or later.
* The WLCs must connect via an IPv4 network.
* Two of the WLCs must be in an SSO high availability pair.
Which two configurations must be included in the design? (Choose two.)
A medium-sized hospitality company with 50 hotels needs to upgrade the existing WLAN in each hotel to 802.11n. During the site surveys for each hotel, what needs to be taken into consideration when determining the locations for each AP?
Selecting locations that are easily accessed so maintenance and upgrades can be performed quickly.
Selecting AP locations where power is already available.
Selecting APs that can be hidden in ceiling panels to provide a secure and clean aesthetic look.
Selecting locations that make visual assessment of the AP operation easy.
A network engineer is working on a design for a wireless network that must support data, voice, and location services. To support these services, which access point placement must the engineer use?
corner only
perimeter and corner
perimeter only
indoor and outdoor
An engineer is designing a network deployment for a technology company. The company has four buildings with access points that must provide seamless wireless coverage and client roaming. The customer data center must have two WLCs and the core switches for the network. Which type of wireless architecture must be used?
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