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Huawei H19-404_V1.0 Exam Syllabus Topics:

SectionObjectives
Campus Network Security Design- Security Planning
  • 1. Free mobility
  • 2. Network access control
  • 3. User authentication
  • 4. Security policy design
CloudCampus and Intelligent Campus Solutions- CloudCampus Architecture
  • 1. iMaster NCE-Campus
  • 2. iMaster NCE-CampusInsight
  • 3. Intelligent O&M capabilities
  • 4. CloudCampus solution overview
Campus Network Solution Architecture and Design- Enterprise Campus Network Architecture
  • 1. Enterprise campus solution architecture
  • 2. Campus network evolution trends
  • 3. Hierarchical campus network design
Huawei Campus Network Products and Solutions- Campus Network Product Portfolio
  • 1. Campus switches
  • 2. Network management platforms
  • 3. Wireless LAN products
  • 4. Campus security products
Industry Scenario Solution Design- Industry-Oriented Campus Solutions
  • 1. Enterprise office scenarios
  • 2. Education campus scenarios
  • 3. Large campus deployment planning
  • 4. Healthcare and government scenarios
Pre-sales Methodology and Solution Presentation- Pre-sales Skills
  • 1. Network planning tools
  • 2. Customer requirement analysis
  • 3. Technical proposal design
  • 4. Solution value presentation
Campus WLAN Planning and Design- WLAN Technologies
  • 1. WLAN architecture
  • 2. Capacity and coverage design
  • 3. AP deployment planning
  • 4. RF fundamentals
Campus SD-WAN Planning and Design- SD-WAN Solutions
  • 1. Branch interconnection design
  • 2. WAN optimization planning
  • 3. SD-WAN architecture
  • 4. Application experience assurance

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All these three Huawei H19-404_V1.0 exam questions formats contain the real and updated H19-404_V1.0 exam questions. These HCSE-Presales-Campus Network Planning and Design V1.0 (H19-404_V1.0) exam questions are being presented in practice test software and PDF dumps file formats. The H19-404_V1.0 desktop practice test software is easy to use and install on your desktop computers. Whereas the other Huawei H19-404_V1.0 web-based practice test software is concerned, this is a simple browser-based application that works with all operating systems. Both practice tests are customizable, simulate actual exam scenarios, and help you overcome mistakes.

Huawei HCSE-Presales-Campus Network Planning and Design V1.0 Sample Questions (Q10-Q15):

NEW QUESTION # 10
iMaster NCE-Campus can identify terminals. Which of the following services can be provided after terminal identification?

Answer: B,C,D

Explanation:
After identifying a terminal, iMaster NCE-Campus can use the identification result for security monitoring, visibility, and policy automation. Spoofing detection is supported because the platform can compare a terminal's current type and traffic behavior with its previously identified characteristics. For example, if a device originally identified as an IP phone suddenly behaves like a PC, the system can generate a spoofing alarm or apply an isolation policy.
Terminal identification also supports statistics and reporting by vendor, operating system, device category, access port, and policy status. Huawei explicitly describes terminal-type statistics, report export, and visibility of access policies.
In addition, iMaster NCE-Campus can automatically deliver VLAN, security-group, QoS, authentication, and access-permission policies according to the identified terminal type. Option B is incorrect because wired authentication is an admission process, not a service produced after terminal identification. Therefore, A, C, and D are correct.


NEW QUESTION # 11
How many ports can a 400GE card offer on the CloudEngine S16700 series next-generation flagship core switches?

Answer: C

Explanation:
A high-density 400GE service card for the CloudEngine S16700 series can provide 18 ports. The S16700 is positioned as a next-generation flagship campus core switch designed for ultra-high-capacity aggregation, large-scale Wi-Fi backhaul, data-center interconnection, and long-term bandwidth evolution.
An 18-port 400GE card provides a theoretical aggregate port rate of 7.2 Tbit/s in each direction before considering the switching fabric's internal architecture and forwarding design. This density allows a single chassis slot to aggregate numerous high-speed distribution switches, connect multiple campus fabrics, or provide high-bandwidth links toward data centers and service platforms. It also reduces the number of cards and chassis required compared with lower-density 8-port, 12-port, or 16-port alternatives.
The question asks specifically for the number of physical 400GE interfaces offered by the card, not the entire chassis capacity or the number of ports after breakout. Under the H19-404 product-portfolio specification represented by this question, the correct density is 18 native 400GE ports. Therefore, option B is correct.


NEW QUESTION # 12
Which of the following slicing modes are supported?

Answer: A,B,C,D

Explanation:
All four listed classification dimensions are supported slicing approaches in the relevant campus and SD- WAN context. A slice can be created from traffic characteristics, including a 5-tuple or an identified application, so selected flows receive dedicated forwarding, bandwidth, security, or quality policies. Huawei supports customized application identification using URLs and IP 5-tuple information, as well as application- and 5-tuple-based traffic steering and QoS.
VPN- or VN-based slicing provides logical Layer 3 isolation. Huawei's SD-WAN design maps each VN to an independent VPN instance or VRF and permits different overlay topologies, routing configurations, and policies. User-group-based slicing associates network treatment with identity or security-group membership rather than a permanently assigned IP address, supporting free mobility and consistent policy when users move. Huawei's campus architecture applies different permissions to different user groups inside a VN.
VLAN- or port-based slicing classifies traffic by the local access attachment and is useful for fixed terminals or environments without identity authentication. Therefore, A, B, C, and D are all correct.


NEW QUESTION # 13
Which of the following WLAN networking solutions is recommended when there are 15,000 wireless terminals on the customer network?

Answer: C


NEW QUESTION # 14
In the energy-saving solution based on AI traffic prediction, IoT APs are recommended to operate in non- energy-saving mode by default.

Answer: A

Explanation:
The statement is true. AI-based energy-saving systems analyze historical traffic and usage patterns to predict periods of low network demand. Ordinary AP radios or access devices can then enter an energy-saving state when their capacity is not required, while surrounding devices maintain sufficient coverage and service availability.
IoT APs, however, may host continuously operating IoT cards, sensors, electronic shelf-label services, Bluetooth location functions, RFID services, healthcare devices, or asset-tracking terminals. Placing such an AP into an energy-saving or hibernation state could interrupt more than ordinary Wi-Fi connectivity. It could also disable an IoT module's power supply, management channel, data backhaul, or persistent sensing function. Huawei's Wi-Fi and IoT convergence architecture uses APs as shared locations, power sources, and communication channels for IoT services.
Huawei also applies intelligent technologies to analyze AP load trends and perform predictive network optimization. The safer default is therefore to exclude IoT APs from automatic energy-saving actions unless the administrator confirms that their attached IoT services tolerate interruption. Accordingly, the answer is True.


NEW QUESTION # 15
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