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Last Updated: Sep 06, 2026
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| Section | Weight | Objectives |
|---|---|---|
| Storage Architecture Design | 30% | - Evaluate customer requirements and business objectives - Design storage solutions aligned with workload characteristics - Scalability and growth planning |
| Storage Networking & Connectivity | 20% | - SAN, NAS, and converged networking technologies - Network performance and reliability optimization - Topology design, zoning, and fabric management |
| HPE Storage Products & Solutions | 20% | - Integration with HPE compute and cloud platforms - Software-defined storage and hyperconverged infrastructure - HPE 3PAR, Nimble, Primera, and Alletra portfolio |
| Data Protection & Resiliency | 20% | - Data security and compliance - Backup, replication, and disaster recovery strategies - High availability and multi-site availability design |
| Optimization, Monitoring & Management | 10% | - Management tools: HPE InfoSight, OneView - Performance tuning and capacity planning - Lifecycle management and upgrades |
Question 1
A Disaster Recovery Architect is reviewing a proposed replication design for a healthcare provider.
Requirements:
RPO = 0
RTO < 10 minutes
Datacenter Separation: 20 km
Automated failover
VMware vSphere
Current Proposal:
Asynchronous replication every 15 minutes
Manual recovery procedures
Independent storage presentation at DR site
Which THREE concerns should be raised regarding the proposal? (Choose 3.)
A. Fibre Channel replication is unsupported beyond 10 km
B. The proposed design does not align with the stated requirement for automated failover
C. VMware environments cannot utilize storage-based disaster recovery technologies
D. Asynchronous replication cannot guarantee zero data loss during a site failure
E. Manual recovery procedures may conflict with aggressive recovery-time objectives
Question 2
A Global Pharmaceutical Company is planning a consolidation project.
Workloads:
Oracle RAC
SAP HANA
SQL Server
VMware
VDI
Research Applications
Business Requirement:
"Research workloads must never affect production transaction processing." Assessment Findings:
Peak Production IOPS: 280,000
Research Peaks: Highly Variable
Which THREE design recommendations are most appropriate? (Choose 3.)
A. Utilize InfoSight analytics to monitor contention patterns and performance drift
B. Implement QoS maximum limits for research workloads
C. Implement QoS minimum guarantees for production applications
D. Disable compression globally to eliminate controller utilization
E. Disable snapshots across research environments
Question 3
A Storage Administrator is troubleshooting intermittent performance degradation on a unified storage array that was recently deployed to consolidate the company's infrastructure.
[Unified Array - Peak Telemetry (10:00 AM - 11:00 AM)]
Global Controller CPU: 96%
Protocol Split: 60% File (SMB/NFS) / 40% Block (Fibre Channel)
Block Workload (SQL Server): Read Latency spiking to 18ms
File Workload (User Shares): Heavy sequential metadata scanning active
Backend Disk Utilization: 35%
Which TWO conclusions accurately diagnose the root cause of this performance bottleneck on the unified platform? (Choose 2.)
A. The array's controllers are computationally saturated by the heavy metadata processing required by the file protocols, leaving insufficient CPU cycles to rapidly process the block storage SCSI commands
B. The unified array's automated tiering engine has incorrectly promoted the SMB file metadata to the NVMe tier, physically forcing the SQL database down to the spinning disks
C. The Fibre Channel SAN switches are deliberately throttling the SQL Server's block traffic to prioritize the bandwidth required by the SMB/NFS Ethernet protocols
D. The backend physical disks are overwhelmed by the combination of sequential file reads and random database writes, creating a mechanical bottleneck that drives up the latency
E. The shared, unified architecture has allowed a "noisy neighbor" file workload to negatively impact the performance of the mission-critical block workload
Question 4
A Backup and Recovery Engineer is attempting to right-size the storage capacity for an aging hybrid array. The primary application owner claims their database only grows by 100 GB per week, yet the storage array telemetry indicates the volume's physical footprint is expanding by
1.5 TB per week.
[Telemetry Logs - Volume: Fin_DB_01]
Mon 02:00 - Array Snap Created (Retention: 30 Days)
Tue 02:00 - Array Snap Created (Retention: 30 Days)
...
[Analytics Profile]
Host Data Change Rate: 2% Daily (Highly random overwrites)
Inline Deduplication: Disabled (Encrypted Payload)
Space Reclamation (UNMAP): Enabled & Active
Which TWO diagnostic conclusions accurately explain the massive discrepancy between the application owner's perceived growth and the actual physical capacity consumption? (Choose 2.)
A. The application owner's calculation of 100 GB/week represents pure logical net-new data insertion, ignoring the storage-level retention overhead of their own highly volatile overwrites
B. The storage controllers are suffering from severe CPU contention, which artificially inflates the physical capacity metrics reported to the telemetry engine
C. The host application is transmitting an encrypted payload, which mathematically neutralizes the storage array's ability to deduplicate the snapshot differentials
D. The application's 2% daily random overwrite rate forces the array's 30-day snapshot retention policy to permanently lock massive amounts of modified physical blocks
E. The Space Reclamation (UNMAP) protocol is malfunctioning, trapping deleted database tables as
"active" physical blocks on the backend storage
Question 5
A Storage Architect is evaluating an HPE GreenLake for File Storage deployment supporting a genomics research environment.
Requirements:
12 PB dataset
Linux compute nodes
POSIX semantics
Multi-GB/s throughput
Minimal application modification
Which THREE statements accurately support the recommended architecture? (Choose 3.)
A. NFS over RDMA can provide POSIX-compliant access while reducing traditional networking overhead
B. Existing applications can continue utilizing standard file system interfaces
C. Fibre Channel storage is mandatory for all workloads exceeding one petabyte
D. RDMA-capable networking can improve throughput efficiency and reduce CPU consumption
E. Object storage APIs are required for POSIX-compliant applications
Solutions:
| Question 1 Answer: B,D,E | Question 2 Answer: A,B,C | Question 3 Answer: A,E | Question 4 Answer: A,D | Question 5 Answer: A,B,D |
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