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HPE Campus Access Switching Expert Written Exam Sample Questions (Q68-Q73):
NEW QUESTION # 68
Which minimal configurations must becompleted for MSTP to work correctly? (Select two.)
- A. bridge priority number
- B. creating MSTP instances
- C. MSTP enabled interfaces
- D. MSTPregion
- E. revision number
Answer: D,E
Explanation:
The question asks for the minimal configurations required for Multiple Spanning Tree Protocol (MSTP) to work correctly on AOS-CX switches.
* Analysis of Options:
* Option A:Correct. The MSTP region name must be configured to define the MSTP region and ensure switches belong to the same region.
* Option B:Incorrect. Bridge priority is optional and defaults to 32768; it's not mandatory for MSTP functionality.
* Option C:Correct. The MSTP revision number is required to ensure consistency across switches in the same region.
* Option D:Incorrect. Enabling MSTP on interfaces is automatic for VLAN-enabled ports; explicit configuration is not mandatory.
* Option E:Incorrect. Creating MSTP instances is optional and only needed for specific VLAN-to- instance mappings.
* Why A and C are Correct:MSTP requires a consistent region configuration across all switches to function correctly. The minimal configuration includes:
* MSTP region name:Defines the region (e.g., spanning-tree config-name REGION1) to group switches.
* Revision number:Ensures region consistency (e.g., spanning-tree config-revision 1).
These settings ensure switches form a single MSTP region, allowing VLAN-to-instance mappings (default instance 0 if not specified) and loop prevention. Other settings, like bridge priority or explicit instance creation, are optional and not strictly required for basic MSTP operation.
* Relevance to Certification Objectives:
* Network Resiliency and Virtualization (8%):Designing and troubleshooting MSTP for redundancy and fault tolerance.
* Switching (19%):Implementing Layer 2 technologies like MSTP for loop prevention.
References:
HPE Aruba Networking AOS-CX Configuration Guide: MSTP Configuration, detailing region and revision requirements.
HPE7-A06Study Guide: Covers MSTP setup and best practices.
HPE Aruba Networking Technical Documentation: Spanning Tree Protocols for AOS-CX.
NEW QUESTION # 69
What is the correct sequence of events that occurs when a user device connects to a network using Dynamic Segmentation?
Answer:
Explanation:
Explanation:
This question asks for the sequence of events when a user device connects to a network utilizing Dynamic Segmentation, which typically involves authentication via ClearPass and role-based policy assignment.
* Authentication:When a device connects (wired or wireless), the first step in gaining secure access is authentication. The switch or AP (authenticator) facilitates this process, usually communicating via RADIUS with ClearPass Policy Manager (RADIUS server). The device provides credentials or uses certificates (e.g., 802.1X, MAC Auth).
* Role Assignment:Upon successful authentication, ClearPass evaluates policies based on the device
/user context (identity, posture, time of day, etc.) and sends back RADIUS attributes to the authenticator. A crucial attribute is the assigned User Role. This role encapsulates the access privileges and network configuration for the device.
* Network Placement/Segmentation:The authenticator (switch/AP) uses the assigned role information received from ClearPass to place the device into the appropriate network segment. This might involve assigning a specific VLAN ID to the port/client or, in User-Based Tunneling (UBT) scenarios, establishing a tunnel to an Aruba Gateway associated with that role. The step "placed on a VLAN based on its role" describes one common method of segmentation based on the assigned role.
* Access Granted:Once the device is authenticated, assigned a role, and placed in the correct network segment (VLAN or tunnel), access is granted according to the firewall rules, QoS settings, and other policies defined within that assigned role. Traffic can now flow subject to these enforced policies.
References:Aruba Dynamic Segmentation Solution Guides, ClearPass Policy Manager Documentation, AOS- CX Security Guide (Roles, Port Access). This relates to "Authentication/Authorization" (9%), "Security" (10%), "Switching" (19%), and "WLAN" (9%) objectives.
NEW QUESTION # 70
Place the recommended troubleshooting steps in order.
Answer:
Explanation:
Explanation:
The correct order is:
* identify
* analyze
* hypothesize
* validate
* implement
* verify
This question requires arranging standard troubleshooting steps into a logical sequence. A systematic approach is crucial for effective network troubleshooting.
* identify:The first step is always to clearly identify and define the problem. What are the symptoms?
Who is affected? What is the scope? When did it start? Understanding the problem precisely is essential before proceeding.
* analyze:Once the problem is identified, gather relevant data and analyze the situation. This involves checking logs, looking at configurations, examining network topology diagrams, checking status commands, and potentially capturing packets. This analysis helps build context around the identified issue.
* hypothesize:Based on the identification and analysis, form a hypothesis (or multiple hypotheses) about the probable cause of the problem. This involves using technical knowledge and experience to theorize what might be wrong.
* validate:Test the hypothesis to determine if it's correct. This step involves performing specific tests or checks designed to confirm or refute the theory. For example, if the hypothesis is a bad cable, test the cable. If it's a routing issue, check the routing table and perform trace routes. This step validates the cause before implementing a fix.
* implement:Once the cause has been validated, implement the solution. This could involve replacing hardware, correcting configuration, clearing states, etc.
* verify:After implementing the solution, verify that the original problem is resolved. It's also critical to check that the fix hasn't introduced any new issues. Monitor the system to ensure stability.
References:Standard Network Troubleshooting Methodologies (e.g., CompTIA Network+, Cisco troubleshooting models), ITIL Problem Management processes. This directly relates to the "Troubleshooting" (10%) objective, which emphasizes performing advanced troubleshooting and remediation.
NEW QUESTION # 71
A senior engineer from the network operations team has reported an intermittent problem where some PoE- powered devices are randomly losing power. During your investigation, you found that port 1 of the Acc-1 switch is currently presenting the behavior shown in the CLI output for the Acc-1.
What is a probablecausa lot poor 1/1/1 is denying PoE?
- A. switch PoE powerbudget exceeded
- B. PoE was manually disabled for port 1/1/1.
- C. This switch does no! support PoE class 4.
- D. PoE port priority sot to low
Answer: A
Explanation:
The question involves intermittent PoE-powered device power loss on port 1/1/1 of an AOS-CX switch (Acc-
1), with CLI output (not provided) indicating a PoE issue. The task is to identify a probable cause.
* Analysis of Options:
* Option A:Incorrect. AOS-CX switches typically support PoE Class 4 (802.3at, 30W), sufficient for most devices.
* Option B:Correct. If the switch's PoE power budget is exceeded, it may deny power to port 1/1
/1, causing intermittent device failures.
* Option C:Incorrect. Low PoE port priority may deprioritize the port but is less likely to cause complete power loss compared to budget issues.
* Option D:Incorrect. Manual disabling of PoE would cause consistent power loss, not intermittent issues.
* Why Option B is Correct:AOS-CX switches have a finite PoE power budget (e.g., 370W or 740W, depending on the model and power supply). If the total power demand from connected devices exceeds this budget, the switch denies power to some ports, often intermittently as devices cycle or negotiate power. For port 1/1/1, this could manifest as random power loss for the connected device. The CLI output likely shows a "power denied" status (e.g., via show power-over-ethernet brief). Checking the PoE budget (show power-over-ethernet) and upgrading power supplies or prioritizing critical ports resolves the issue, aligning with HPE Aruba Networking's PoE troubleshooting guidelines.
* Relevance to Certification Objectives:
* Connectivity (9%):Troubleshooting PoE deployment issues.
* Troubleshooting (10%):Diagnosing power-related issues in campus networks.
* Switching (19%):Implementing PoE configurations for Layer 2 devices.
References:
HPE Aruba Networking AOS-CX Configuration Guide: PoE Configuration and Troubleshooting.
HPE7-A06Study Guide: Covers PoE management and diagnostics.
HPE Aruba Networking Technical Documentation: PoE Budget Troubleshooting.
NEW QUESTION # 72
You arc about lo deploy a gateway that is on factory default. ZTP cannot be used for different reasons, but you are searching forvalid alternatives. What are two valid alternatives for ZTP? (Select two.)
- A. Use OTP by connecting lo the console port, and use terminal software to complete provisioning. *Static- Activate" should be used.
- B. Use OTP by connecting to port 0/0/1 with a static IP. and use a Web browser to complete provisioning.
- C. Use OTP by connecting to the console port, and use terminal software to complete provisioning. "Full- Setup" should be used.
- D. UseOTP by connecting to port 0/0/1. and use a Web browser to completeprovisioning.
- E. Use OTP by connecting to port 0/0/0. and use a Web browser to complete provisioning.
Answer: C,D
Explanation:
The question asks for valid alternatives to Zero Touch Provisioning (ZTP) for initially configuring a factory default Aruba gateway when ZTP cannot be used.
* Aruba Gateway Initial Provisioning Methods:
* ZTP:Automated provisioning using Activate/Central.
* One-Touch Provisioning (OTP) / Manual Setup:Involves direct connection for initial configuration.
* Web UI:Connecting a laptop to a specific management or designated setup port (often GE0
/0/1 on many gateway models) allows access to a web-based setup wizard.
* Console Port:Connecting via the serial console port allows CLI access, which includes guided setup scripts or manual configuration.
* Analysis of Options:
* A: Port 0/0/0 is typically the OOBM port, not the standard OTP web UI port.
* B: Port 0/0/1 is commonly used for OTP via Web browser on many Aruba gateway models.
* C: Using the console port with terminal software for initial setup (potentially using a "Full-Setup" wizard or script) is a standard manual method.
* D: "Static-Activate" refers to manual registration with the Activate service, not a console setup mode.
* E: Requires setting a static IP, adding complexity beyond the basic OTP connection method described in B.
* Conclusion:Using the designated OTP Ethernet port (commonly GE0/0/1) with a web browser (Option B) and using the console port with terminal software (Option C) are the standard, valid alternatives to ZTP for initial gateway setup.
References:Aruba Gateway Installation and Quick Start Guides, AOS-10 Fundamentals Guide (Provisioning sections). This relates to "Connectivity" (9%) and "Troubleshooting" (10%) objectives.
NEW QUESTION # 73
......
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