Aruba Certified Associate - Campus Access (ACA) Practice Test

HPE6-A85 test Format | Course Contents | Course Outline | test Syllabus | test Objectives

Exam Code: HPE6-A85
Exam Name: Aruba Certified Associate - Campus Access (ACA)
Exam type: Proctored
Exam duration: 1 hour 30 minutes
Exam length: 60 questions
Passing score: 67%
Delivery languages: English- Japanese- Latin American Spanish

- Network Stack (10%)

- OSI model layers (Physical- Data Link- Network- Transport- Session- Presentation- Application).
- TCP/IP stack fundamentals (e.g.- IP addressing- subnetting- ICMP).
- Encapsulation and de-encapsulation processes.
- Common protocols (e.g.- ARP- DHCP- DNS).

Terminologies:

- OSI Model: 7-layer reference model for network communication.
- TCP/IP Stack: Suite of protocols including IP (Internet Protocol)- TCP (Transmission Control Protocol)- UDP (User Datagram Protocol).
- Encapsulation: Wrapping data with headers/trailers at each OSI layer (e.g.- Ethernet frame at Layer 2).
- ARP (Address Resolution Protocol): Maps IP addresses to MAC addresses.
- DHCP (Dynamic Host Configuration Protocol): Automates IP address assignment.
- CIDR (Classless Inter-Domain Routing): Notation for subnet masks (e.g.- /24).

- Connectivity (8%)

- Ethernet cabling standards and PoE (Power over Ethernet).
- Wireless connectivity basics (SSID association- client roaming).
- IP addressing and subnetting for connectivity.
- Basic troubleshooting of connectivity issues.

- Terminologies:

- PoE (Power over Ethernet): Delivers power and data over Ethernet cables (e.g.- IEEE 802.3at for 30W).
- SSID (Service Set Identifier): Name of a wireless network for client association.
- Ethernet II Framing: Standard frame format with preamble- destination/source MAC- EtherType.
- Subnetting: Dividing networks into smaller subnetworks (e.g.- VLSM - Variable Length Subnet Masking).
- ClientMatch: Aruba technology for seamless client steering across APs based on RF conditions.
- RSSI (Received Signal Strength Indicator): Measures wireless signal strength in dBm.

- Network Resiliency and Virtualization (8%)

- Redundancy protocols (e.g.- VRRP- link aggregation).
- VLANs for traffic segmentation.
- Basic virtualization concepts (e.g.- VXLAN in campus).
- Failover and resiliency features in Aruba switches/APs.

Terminologies:

- VRRP (Virtual Router Redundancy Protocol): Provides gateway redundancy with a virtual IP.
- LACP (Link Aggregation Control Protocol): IEEE 802.3ad for bundling links (e.g.- LAG - Link Aggregation Group).
- VLAN (Virtual Local Area Network): IEEE 802.1Q tag for logical network segmentation.
- VXLAN (Virtual Extensible LAN): Encapsulates Layer 2 over Layer 3 for virtualized overlays.
- VSX (Virtual Switching Extension): Aruba AOS-CX feature for stacking switches with split-brain prevention.
- STP (Spanning Tree Protocol): Prevents loops (variants: RSTP - Rapid STP- MSTP - Multiple STP).

- Switching (15%)

- Port configuration (access- trunk- hybrid).
- VLAN assignment and inter-VLAN routing.
- MAC address learning and forwarding.
- Basic QoS and storm control.

Terminologies:

- AOS-CX: Aruba Operating System for CX switches (modular- intent-based).
- Trunk Port: Carries multiple VLANs with 802.1Q tagging.
- Access Port: Untagged single VLAN port for end devices.
- MAC Table (Forwarding Database): Switch table mapping MAC addresses to ports.
- Inter-VLAN Routing: Layer 3 switching using SVIs (Switched Virtual Interfaces).
- Storm Control: Limits broadcast/multicast traffic to prevent storms.

- WLAN (15%)

- RF concepts (channels- interference- power levels).
- AP modes (controller-based- Instant AP).
- SSID configuration and WPA3 security.
- Basic WLAN troubleshooting (e.g.- coverage- interference).

Terminologies:

- AP (Access Point): Device providing wireless coverage (e.g.- Aruba 500/600 series).
- RF (Radio Frequency): Wireless signal propagation (2.4 GHz- 5 GHz- 6 GHz bands).
- Channelization: Dividing spectrum into non-overlapping channels (e.g.- 20/40/80 MHz widths).
- WPA3 (Wi-Fi Protected Access 3): Latest security with SAE (Simultaneous Authentication of Equals) for enhanced protection.
- ARM (Adaptive Radio Management): Aruba feature for dynamic channel/power optimization.
- OFDMA (Orthogonal Frequency Division Multiple Access): Wi-Fi 6 technology for multi-user efficiency.

- Routing (12%)

- Static and dynamic routing (OSPF basics).
- Route advertisement and summarization.
- Default gateways and route metrics.
- Troubleshooting routing tables.

Terminologies:

- Static Route: Manually configured path (e.g.- ip route 0.0.0.0/0 ).
- OSPF (Open Shortest Path First): Link-state routing protocol (areas- LSAs - Link State Advertisements).
- Routing Table: FIB (Forwarding Information Base) for next-hop decisions.
- Administrative Distance: Trust metric for route selection (e.g.- 1 for connected- 110 for OSPF).
- Route Summarization: Aggregating routes (e.g.- 10.1.0.0/16 from /24 subnets).
- VRF (Virtual Routing and Forwarding): Isolates routing tables for segmentation.

- Security (10%)

- Firewall roles and policies.
- Threat detection (e.g.- ARP inspection).
- Basic encryption and access control.

Terminologies:

- User Role: Aruba policy defining access permissions (e.g.- employee- guest).
- Firewall Policy: ACLs (Access Control Lists) for traffic filtering (e.g.- session-based).
- DAI (Dynamic ARP Inspection): Validates ARP packets against DHCP snooping bindings.
- 802.1X Port Security: Port-based authentication for wired/wireless.
- ACL (Access Control List): Rules for permitting/denying traffic (standard/extended).
- Rogue AP Detection: Scanning for unauthorized APs.

- Authentication/Authorization (7%)

- 802.1X/EAP methods.
- MAC authentication and MPSK.
- Role derivation and enforcement.

Terminologies:

- ClearPass: Aruba NAC (Network Access Control) platform for policy enforcement.
- EAP (Extensible Authentication Protocol): Frameworks like EAP-TLS- PEAP-MSCHAPv2.
- MPSK (Multi-Pre-Shared Key): Unique PSKs per device on same SSID for headless IoT.
- RADIUS (Remote Authentication Dial-In User Service): AAA protocol for auth/authz.
- NAS (Network Access Server): Switch/AP acting as RADIUS client.
- Profiler: ClearPass tool for device profiling (e.g.- OS/fingerprint-based roles).

- Management and Monitoring (7%)

- Centralized management dashboards.
- Client and AP monitoring.
- UXI (User Experience Insight) for synthetic testing.

Terminologies:

- Aruba Central: Cloud-based management platform for APs- switches- gateways.
- UXI (User Experience Insight): Aruba tool for proactive monitoring via synthetic tests.
- SNMP (Simple Network Management Protocol): Polling for device stats (v2c/v3).
- Telemetry: Streaming data (e.g.- NetEdit for switch config validation).
- Dashboard Widgets: Visuals for KPIs like client count- uptime.
- API (Application Programming Interface): For integrating with external tools.

- Troubleshooting (4%)

- Diagnostic commands (show- debug).
- Log analysis and common failure modes.
- Layered troubleshooting (bottom-up OSI).

Terminologies:

- show Commands: AOS-CX CLI for status (e.g.- show interfaces- show log).
- Debugging: Real-time packet capture (e.g.- debug ip packet).
- Syslog: Centralized logging (severity levels: info- warning- error).
- Packet Tracer: Simulates traffic paths for fault isolation.
- Loopback Interface: Testing tool for Layer 3 connectivity.
- MTTR (Mean Time to Repair): Metric for resolution speed.

- Performance Optimization (3%)

- QoS policies for traffic prioritization.
- Bandwidth management.
- Basic load balancing.

Terminologies:

- QoS (Quality of Service): Prioritizes traffic (e.g.- DSCP - Differentiated Services Code Point).
- CoPP (Control Plane Policing): Protects CPU from DoS via rate limiting.
- WMM (Wi-Fi Multimedia): 802.11e for wireless QoS (voice/video queues).
- Bandwidth Contracts: Aruba role-based limits on throughput.
- AirMatch: Aruba RF optimization for AP placement/channel selection.
- Latency: Round-trip time (RTT) in ms for performance metrics.

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Question: 1215
A network engineer needs to implement QoS for a new video conferencing application.
Which DSCP value should be assigned to ensure optimal performance?
A. 0
B. 34
C. 56
D. 46
Answer: D
Explanation: The DSCP value of 46 is recommended for video conferencing applications
to ensure optimal performance by prioritizing the traffic.
Question: 1216
Which Aruba feature provides advanced radio resource management (RRM) capabilities
for optimizing Wi-Fi performance and mitigating interference?
A. AirWave
B. Spectrum Analysis
C. Adaptive Radio Management (ARM)
D. AirMatch
Answer: C
Explanation: Adaptive Radio Management (ARM) is the Aruba feature that provides
advanced radio resource management capabilities for optimizing Wi-Fi performance and
mitigating interference. ARM dynamically adjusts channel allocation, power levels, and
other parameters to optimize the performance and reliability of the wireless network in
real time.
Question: 1217
When configuring SNMP for your Aruba devices, which version provides enhanced
security features compared to v2c?
A. v3
B. v2c
C. v1
D. v4
Answer: A
Explanation: SNMP v3 introduces enhanced security features such as authentication and
encryption, making it more secure than v2c.
Question: 1218
Cohesity integrates RADIUS for AAA in a multicloud vault, with NAS (dial-up server)
as client for PEAP sessions from remote admins. Profiling fails on legacy Win7. Which
EAP and Profiler tweaks enable auth? (Select All That Apply)
A. Downgrade to PEAPv0/MSCHAPv1 inner with `eap peap fast-reauth enable`,
fingerprinting via SNMP sysDescr "Windows 7"
B. Configure NAS with `radius-server key timeout 15` and ClearPass zone for legacy
subnet scanning
C. Enable Profiler's OnGuard dissolvable agent for Win7 OS_type, mapping to Cohesity
"Admin-Legacy" role
D. Chain to EAP-MD5 fallback, but enforce Cohesity MFA override for vault access
Answer: B, C
Explanation: Configuring NAS RADIUS key and timeout with ClearPass zone scanning
supports legacy profiling. Enabling Profiler's OnGuard for Win7 OS_type accurately
classifies, mapping to restricted Cohesity roles for secure vault auth.
Question: 1219
A energy sector client uses Cohesity Helios for monitoring OT workloads in multicloud
(on-prem to AWS IoT). Synthetic tests `ot-test --workload scada --sensors 1000 --
anomaly sim-ransomware` detect threat vectors. Dashboard shows posture score drop to
75/100. Which telemetry and API steps enhance threat visibility? (Select All That Apply)
A. Stream OT telemetry: `helios stream --type ot --metrics anomaly,posture --interval
15s`
B. Query Gaia API `get('/v1/threats/ot?from=2025-10-15&score<80')` for low-score
events
C. Widget config for Posture Score with `heatmap=true & filter=ot-workloads`
D. SNMP v3 auth for OID 1.3.6.1.4.1.43456.8.2.1 on sensor anomaly traps
Answer: A, B, C
Explanation: Streaming OT-specific telemetry at 15s intervals captures anomaly and
posture metrics for real-time Helios visibility in AWS IoT integrations. The Gaia API
query filters OT threats with scores below 80 since the test date. Configuring the Posture
Score widget with heatmap and OT filter visualizes score drops across multicloud OT
assets.
Question: 1220
What type of data does the UXI feature primarily utilize to simulate real user
interactions?
A. Historical performance metrics
B. User behavior patterns
C. Network traffic logs
D. Application configuration settings
Answer: B
Explanation: The UXI feature primarily utilizes user behavior patterns to simulate real
user interactions. This approach helps in accurately assessing how applications perform
under typical user conditions.
Question: 1221
Which Aruba access point deployment mode is suitable for remote sites or locations
where there is limited or no local IT support available?
A. Remote AP (RAP) mode
B. Mesh mode
C. Campus AP (CAP) mode
D. Spectrum Analysis mode
Answer: A
Explanation: Remote AP (RAP) mode is suitable for remote sites or locations where there
is limited or no local IT support available. In RAP mode, the access point establishes a
secure tunnel to a central controller located in the main site or data center. This allows for
centralized management, configuration, and troubleshooting of the remote access point,
making it an ideal deployment mode for remote locations.
Question: 1222
When encapsulating data for transmission, which OSI model layer adds a header
containing source and destination MAC addresses?
A. Data Link
B. Application
C. Network
D. Transport
Answer: A
Explanation: The Data Link layer (Layer 2) is responsible for adding headers that contain
the source and destination MAC addresses during the encapsulation process.
Question: 1223
What is the maximum theoretical throughput of a Wi-Fi 6 (802.11ax) device using
OFDMA and 8 simultaneous users?
A. 600 Mbps
B. 1.2 Gbps
C. 2.4 Gbps
D. 9.6 Gbps
Answer: D
Explanation: Wi-Fi 6 (802.11ax) can achieve a maximum theoretical throughput of 9.6
Gbps when utilizing OFDMA and multiple users, significantly increasing the data
capacity compared to previous standards.
Question: 1224
Scenario: Multicloud Cohesity with Aruba integration; UXI tests `uxi gw-test --gw gw-
multi-01 --traffic 2Gbps --duration 600s` hit 12% loss. Dashboard uptime 97%. Fixes?
(Select All That Apply)
A. `aruba diagnostic --gw gw-multi-01 --loss-threshold 10% --remediate qos`
B. Telemetry config `enable --gw gw-multi-01 --metrics loss,traffic --rate 30s`
C. Widget Traffic Loss with `line_chart=true & correlate=uptime`
D. Trap SNMP OID 1.3.6.1.4.1.43456.10.1.2 for loss alerts
Answer: A, B, C
Explanation: Aruba diagnostic remediates QoS for >10% loss on gateways. Telemetry at
30s rate streams loss and traffic for UXI alignment. The line chart widget correlates loss
with uptime KPIs for trend analysis in multicloud traffic.
Question: 1225
A network engineer is reviewing the load balancing configuration. Which method can be
used to distribute traffic across multiple paths?
A. DSCP tagging
B. Round-robin
C. CoPP
D. WMM
Answer: B
Explanation: Round-robin is a common method for distributing traffic evenly across
multiple paths or servers in a load balancing configuration.
Question: 1226
In a multicloud disaster recovery drill, a telecom provider tests Cohesity failover for
Oracle databases from primary OCI Autonomous DB to secondary AWS Aurora. The
runbook YAML includes: steps: - name: failover-autonomous trigger: manual params:
{db_name: ora-prod, target: aurora-cluster}, executed via iris_cli runbook execute --file
dr-oracle.yaml, but failover stalls at "Redo log shipping suspended: network latency
>500ms". Post-failover, query performance drops 40%. Which runbook and cluster
settings will streamline failover and restore performance? (Select All That Apply)
A. Add step: optimize-redo with params: {latency-threshold: 200ms, buffer-size:
256MB} to the YAML, and configure OCI DB listener with --redo-compress enabled.
B. Update Aurora cluster parameter group: aurora_parallel_query=1;
max_connections=1000 via AWS console, and set Cohesity policy --performance-tier
high for post-failover scaling.
C. Enable Cohesity's LogStream feature in the policy with --stream-mode parallel --
target-latency 100ms, integrating OCI GoldenGate for real-time redo capture.
D. Test with iris_cli dr test --runbook dr-oracle --dry-run, adjusting YAML trigger to auto
on alert id: latency-exceed.
Answer: B,C
Explanation: Performance drops post-failover are mitigated by enabling Aurora parallel
query and increasing connections in the parameter group, aligned with Cohesity's high-
tier policy for resource scaling. Stalled redo shipping is resolved by LogStream's parallel
mode with 100ms latency target, using GoldenGate to decouple OCI to AWS transfer
from network variability.
Question: 1227
Which Aruba technology provides centralized monitoring and management of network
devices, including switches, access points, and controllers?
A. Aruba Activate
B. AirWave
C. Aruba Central
D. Aruba Meridian
Answer: B
Explanation: AirWave is the Aruba technology that provides centralized monitoring and
management of network devices, including switches, access points, and controllers. It
offers comprehensive visibility into the network, simplifies troubleshooting, and enables
proactive network monitoring.
Question: 1228
A network administrator is experiencing frequent packet drops and wants to analyze the
flow of packets to identify the issue. Which tool is best suited for this task?
A. Packet Tracer
B. Syslog
C. Loopback Interface
D. Debugging
Answer: A
Explanation: Packet Tracer simulates traffic paths and helps identify where packets are
being dropped, making it the best tool for analyzing packet flow issues.
Question: 1229
A technician is configuring a new access point and needs to set the Ethernet frame
format. Which of the following is a key component of Ethernet II framing?
A. IP Address
B. Destination MAC Address
C. VLAN Tag
D. SSID
Answer: B
Explanation: The destination MAC address is a key component of Ethernet II framing,
which also includes the source MAC address and EtherType, defining the format for the
Ethernet frames transmitted over the network.
Question: 1230
To ensure compliance with data protection regulations, you need to implement access
controls on sensitive data. What is a best practice for managing access controls?
A. Grant access based on user requests
B. Allow access to all users by default
C. Use the principle of least privilege
D. Change access controls annually
Answer: C
Explanation: The principle of least privilege ensures that users are granted only the
access necessary to perform their job functions, minimizing the risk of unauthorized
access to sensitive data.
Question: 1231
A aerospace firm protects CFD simulations with Cohesity, using ANSYS Fluent on-
premises HPC and Rescale cloud on GCP. The policy journals with fluent -g -i
journal.jou -r case.cas, but Rescale scale-up fails with "Mesh partition imbalance: core 16
load 85%". Simulation time overruns 40%. Which Fluent journal and Cohesity partition
settings will balance loads? (Select All That Apply)
A. Add to journal.jou: /parallel/distribution-type metis; /parallel/ntp 1, and policy --mesh-
balance metis --core-load 75%.
B. Configure Rescale job: Core Type GCP C2, Scaling Auto, and Cohesity --rescale-hook
pre-scale partition.
C. Enable Fluent's adaptive partitioning: /define/models/partition-adaptive yes, with 16
cores pre-journal.
D. Monitor with fluent -post t=imbalance.log, alerting Cohesity on >20% variance.
Answer: A,B
Explanation: Partition imbalances are corrected by metis distribution in Fluent journal
with 75% core load in Cohesity, optimizing HPC to cloud transfer. Overruns are reduced
by auto-scaling on GCP C2 cores via Rescale, hooked to Cohesity for pre-scale
repartitioning in multicloud simulations.
Question: 1232
Which Aruba technology provides secure remote access to corporate resources for mobile
devices and laptops?
A. Aruba VIA
B. Aruba Central
C. Aruba Meridian
D. Aruba ClearPass
Answer: A
Explanation: Aruba VIA (Virtual Intranet Access) provides secure remote access to
corporate resources for mobile devices and laptops. It enables users to establish encrypted
connections to the corporate network over public or private networks, ensuring secure
remote access.
Question: 1233
A network administrator needs to configure a static route on a router. Which command
would be used to add a route to the routing table?
A. route add
B. netstat
C. ip route
D. ifconfig
Answer: C
Explanation: The ip route command is used to add static routes to the routing table on a
router.
Question: 1234
In a network using VXLAN, how is the encapsulation of Layer 2 frames achieved?
A. By using UDP encapsulation
B. By using GRE tunnels
C. By using MPLS labels
D. By using IPsec
Answer: A
Explanation: VXLAN encapsulates Layer 2 frames in UDP packets, allowing them to be
transported over Layer 3 networks.
Question: 1235
Immutable backup to Cohesity FortKnox multicloud. Subnet 10.70.0.0/28 too small for
quorum. Bond Mode 1. SSID "Immute" ClientMatch -83 dBm. Which for immutability?
(Select All That Apply)
A. VLSM /28 to /27 quorum IPs
B. ClientMatch disable on "Immute" for quorum stability
C. Ethernet II no EtherType filtering for WORM compliance
D. PoE IEEE 802.3at for FortKnox vaults
Answer: A, B
Explanation: /27 fits quorum (5+ IPs). Disable ClientMatch avoids disruptions.
EtherType filtering unnecessary; PoE not for vaults.
Question: 1236
A technician is setting up a network that requires efficient IP address allocation. Which
technique should they use to allow for variable subnet sizes?
A. Static IP addressing
B. Subnetting with VLSM
C. ClientMatch
D. Power over Ethernet
Answer: B
Explanation: Subnetting with Variable Length Subnet Masking (VLSM) allows for more
efficient IP address allocation by enabling different subnet sizes based on specific needs,
optimizing the use of available IP addresses.
Question: 1237
Which encryption protocol is used for securing communication between an Aruba
controller and access points?
A. WEP
B. WPA2-PSK
C. TKIP
D. AES
Answer: D
Explanation: The AES (Advanced Encryption Standard) protocol is used for securing
communication between an Aruba controller and access points. AES is a strong
encryption algorithm that ensures confidentiality and integrity of data transmitted over
the wireless network.
Question: 1238
Nutanix Cohesity Azure, Aruba 2930M. VRRP loop post-failover. Which fix? (Select All
That Apply)
A. Enable VRRP with no-preempt and advertisement 100ms on VLAN 1900 for Nutanix
stability.
B. Configure trunk with allowed except 1900 on port 1/1/60 to avoid loop VLAN.
C. Implement LACP with actor-pause and rx-flow-control on lag 190 for Nutanix.
D. Set VXLAN with loop-detection interval 10s for Azure Nutanix extension.
Answer: A, C
Explanation: VRRP no-preempt 100ms stabilizes Nutanix post-failover loops. LACP
actor-pause rx-flow-control prevents frame loss in aggregation. Trunk except avoids but
risks. VXLAN loop-detection extends but detects only.
Question: 1239
AOS-CX 6400 stack (10.12 VSF members 1-5) access port 2/2/10 VLAN 330 untagged
causes multicast storm, MAC table 256K overflow, inter-VLAN SVI 330 (10.330.0.1/24)
to trunk floods. Which per-port and global? (Select All That Apply)
A. Port 2/2/10: storm-control multicast pps 500 action drop
B. Global: errdisable recovery cause multicast-storm interval 60
C. Vlan 330: igmp snooping querier to prune excess groups
D. Trunk: vlan trunk allowed exclude 330 to isolate
Answer: A,C
Explanation: Storm-control multicast pps 500 action drop on the port throttles ingress
multicasts precisely, averting table overflow from the source. Enabling IGMP snooping
querier on VLAN 330 dynamically prunes unnecessary multicast forwards, reducing
floods to the trunk and sustaining SVI inter-VLAN performance.
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Martin Hoax [2026-4-28]

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