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  • Real HPE7-V01 Exam Questions are the Best Preparation Material [Q18-Q42]

Real HPE7-V01 Exam Questions are the Best Preparation Material [Q18-Q42]

Posted on October 1, 2026 By freedumps No Comments on Real HPE7-V01 Exam Questions are the Best Preparation Material [Q18-Q42]
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Real HPE7-V01 Exam Questions are the Best Preparation Material

Practice on 2026 LATEST HPE7-V01 Exam Updated 52 Questions

NEW QUESTION 18
You are validating the hardware architecture for an AI solution.
Your customer has requested that you focus on possible upgrades for their HPE ProLiant Compute DL384 Gen12 server.
Which of the following statements is correct?

 
 
 
 
The correct answer is B. The HPE ProLiant Compute DL384 Gen12 is an AI-optimized server platform built around NVIDIA Grace Hopper Superchip architecture. In this class of design, the CPU/GPU complex and high-bandwidth memory are integrated as part of the Superchip module rather than being expanded like conventional DIMM-based system memory. The HPE DL384 Gen12 data sheet describes the platform as using NVIDIA GH200 NVL2 Superchips and highlights coherent memory and memory bandwidth characteristics, which is exactly why the memory configuration is treated as tied to the Superchip selection. Option A is incorrect because the DL384 Gen12 architecture is not upgraded by freely adding more GB200 accelerators; it is based on a defined Grace Hopper Superchip platform. Option C is incorrect because EDSFF drive support is a platform/backplane architecture consideration, not simply a RAID-controller dependency. Option D is also not the governing rule for
400Gb NIC support. Reference/topics: AI server architecture, DL384 Gen12, NVIDIA GH200/NVL2, Superchip memory architecture, hardware validation.

NEW QUESTION 19
You are designing a solution for a customer that will support a virtualization workload based on HPE Synergy. Your customer has the following requirements:
* Dual-socket HPE Synergy compute nodes running ESXi 8.x with maximum memory supported
* Each node should have access to shared storage from HPE Alletra Storage MP B10000
* All virtual machines should be protected against host failure
* All virtual machines with vGPU must be protected with Fault Tolerance
* All compute nodes should boot from drives located in the D3940 Storage Modules protected with RAID 1
* All frames should be managed as one logical enclosure to simplify management
* All compute nodes should support two network ports with the maximum Ethernet connectivity speed You are reviewing a proposal that you must verify. The proposal contains:
* 3 HPE Synergy 12000 frames
* 2 HPE Synergy Composer2 modules
* 4 HPE Virtual Connect SE 100Gb F32 Modules for Synergy
* 4 HPE Synergy 50Gb Interconnect Link Modules
* 3 HPE Synergy D3940 Storage Modules, each with 20 SSD drives
* 1152 core vSphere Enterprise Plus subscriptions
* 36 HPE Synergy 480 Gen11 compute nodes
Each SY480 Gen11 is configured with:
* A single Platinum CPU with 32 cores
* HPE Synergy 6820C 25/50Gb Converged Network Adapter
* HPE Synergy 5830C 32Gb Fibre Channel Host Bus Adapter
* HPE MR416i-o Gen11 12G SAS Mezzanine Controller
Which two statements are true regarding the proposal? (Select two.)

 
 
 
 
 
The correct answers are C and D. In a three-frame HPE Synergy logical enclosure using the primary
/satellite fabric model, the HPE Virtual Connect SE 100Gb F32 modules act as the intelligent primary modules and HPE Synergy 50Gb Interconnect Link Modules extend connectivity into satellite frames.
A pair of F32 modules with the required satellite link modules can satisfy the fabric requirement; therefore, the extra two F32 modules can be removed if the design still preserves redundancy and required 25/50Gb downlink connectivity. Option D is also correct because Fibre Channel uplink functionality on the HPE Virtual Connect SE 100Gb F32 module requires a Synergy 32Gb FC Upgrade license. This is necessary when using the Synergy fabric to provide FC access to HPE Alletra Storage MP B10000. Option B is false because the D3940 storage module still requires the appropriate SAS
/RAID path for boot-device protection. Option E is wrong because the stated FT/vGPU requirement makes Standard licensing an unsafe substitution. Reference/topics: HPE Synergy primary/satellite fabric, VC SE 100Gb F32, FC upgrade licensing, D3940 boot design, VMware subscription validation.

NEW QUESTION 20
Your customer is planning to buy a new hardware platform for their HPC application.
They are considering an environment with 150 HPE Cray XD2000 systems with XD225v and XD220v servers.
Your customer has the following requirements for a management platform:
* Supports Ubuntu Linux 24.04 operating system
* Supports bare metal server operating system provisioning
* Has the ability to install operating system in parallel on multiple nodes
* Management platform is highly available
You are exploring HPE Performance Cluster Manager (HPCM) as a solution.
What statement is true in this scenario?

 
 
 
 
The correct answer is A. HPE Performance Cluster Manager is the correct management platform for this HPC-oriented customer because it is designed for large-scale cluster administration, operating system provisioning, image management, monitoring, and lifecycle operations. The key requirement is not only to install an operating system, but to do so across many nodes efficiently. HPE Performance Cluster Manager supports bare-metal Linux provisioning and can provision nodes in parallel, which directly addresses the customer’s requirement for simultaneous operating system deployment across the 150-node environment. HPE’s QuickSpecs state that HPCM can quickly provision a Linux operating system from bare metal and provision nodes in parallel for maximum system performance, including very large clusters. Option B is not the best statement because the design normally uses dedicated management infrastructure and, for high availability, management roles are planned as part of the cluster architecture rather than reserving one arbitrary server node. Option C is false because parallel OS installation is a core HPCM function. Option D is false because Slingshot is not required merely to satisfy the management-platform requirements listed. Reference/topics: HPCM, HPC cluster management, bare-metal provisioning, parallel deployment, high-availability management.

NEW QUESTION 21
Your customer plans to replace a legacy HPE BladeSystem solution with the HPE Synergy platform.
The customer requirements include:
* 30 compute nodes to support their virtualization workloads
* Redundancy within the management subsystem
* An in-frame storage solution to support vSAN
* A guidance/automation technology with HPE Aruba to virtualize WWNs
* Simplified management with a single logical enclosure
You are reviewing the following proposal:
* 3 x HPE Synergy 12000 frames
* 2 x HPE Virtual Connect SE 100Gb F32 Modules for Synergy
* 4 x HPE Synergy 50Gb Interconnect Link Modules
* 3 x HPE D3940 Storage Modules with maximum number of drives
* 6 x HPE Composer2 + 30 x HPE OneView Advanced licenses
* 30 x SY 480 Gen11 compute modules, each with 2 CPUs and appropriate mezzanine cards Which statement about the proposal is true to help meet the customer requirements?

 
 
 
 
The correct answer is C because HPE Synergy D3940 is an in-frame direct-attached storage module, and compute modules access it through HPE Synergy 12Gb SAS Connection Modules. For a redundant in-frame storage design, each Synergy frame that contains a D3940 storage module should include two SAS connection modules to provide redundant paths between the compute modules and the storage module. This is especially important for virtualization and software-defined storage designs such as vSAN, where storage path availability is a core design requirement. Option A is incorrect because HPE OneView Advanced licensing is associated with managed server infrastructure licensing, not separate additional licenses for every Virtual Connect or D3940 module. Option B is not required for this in- frame DAS design; Fibre Channel switches are used for SAN connectivity, not for D3940 SAS connectivity. Option D misstates Composer design: Composer redundancy is planned at the management-appliance level, not as a simple one-per-frame removal rule. This aligns with the course’s Synergy, composable infrastructure, virtualization, and storage-networking design objectives.

NEW QUESTION 22
Which statement about Omnissa Horizon workloads is correct?

 
 
 
 
The correct answer is A. Omnissa Unified Access Gateway is the edge access component used with Horizon to provide secure remote access from an external network to internal Horizon desktops and applications. It is commonly positioned in a DMZ and avoids exposing internal Horizon infrastructure directly to external users. Omnissa documentation describes Unified Access Gateway as enabling secure remote access from external networks to Workspace ONE and Horizon resources, and Horizon installation guidance describes it as the default gateway for secure access to remote desktops and applications from outside the corporate firewall. Option B is incorrect because Horizon support is not limited to a minimum of more than 720 desktops, nor is it only supported through a generic HPE Compute qualification. Option C is technically wrong because Horizon can use supported VMware datastore types such as VMFS, NFS, and vVols depending on the validated design. Option D is also wrong because GPU resources are required only for graphics-accelerated use cases, not for every Horizon cluster. Reference/topics: workload requirement analysis, VDI architecture, HPE compute platform positioning, secure access design.

NEW QUESTION 23
Your customer is planning to deploy several HPE ProLiant DL360 Gen11 servers with Windows Server 2025, for a bare-metal use case with no hypervisors.
The customer is concerned about the time it takes to scan and deploy the servers for new firmware and driver updates.
What HPE management tool can be used in this scenario to apply firmware updates to servers, with direct integration to HPE repositories?

 
 
 
 
The correct answer is B. HPE Compute Ops Management is the correct cloud-based management service for fleet-level HPE ProLiant lifecycle operations, including firmware baseline management and update execution. HPE describes Compute Ops Management as supporting HPE ProLiant ML/DL
/MicroServer Gen10, Gen10 Plus, and Gen11 servers with iLO 5 and later, and includes automatic firmware-baseline update capability. HPE also provides firmware-update workflows for servers managed by Compute Ops Management. This fits the scenario precisely: bare-metal DL360 Gen11 servers, Windows Server installed directly, no hypervisor layer, and a requirement to reduce the operational time required to scan and deploy firmware/driver updates. HPE OneView is better suited for infrastructure managed through OneView domains and profiles, especially composable or converged environments. HPE iLO Amplifier is not the current strategic answer for GreenLake-era ProLiant fleet lifecycle management. Microsoft Endpoint Configuration Manager can manage operating system software, but it is not the HPE-native server firmware lifecycle tool with direct HPE repository integration. Reference/topics: HPE Compute Ops Management, ProLiant Gen11 lifecycle management, firmware baselines, HPE GreenLake cloud operations.

NEW QUESTION 24
Your customer’s environment includes HPE Private Cloud Business Edition with deployed HPE SimpliVity
380 Gen11 nodes.
They have asked you to upgrade the vSphere, OmniStack, and firmware components of the environment in a fully controlled operation.
Which tool should you use?

 
 
 
 
The correct answer is A. In an HPE Private Cloud Business Edition environment, the proper operational model is to use the HPE GreenLake / Data Services Cloud Console workflow for system- level lifecycle activities rather than treating the environment as a standalone SimpliVity-only deployment. HPE documentation for Private Cloud Business Edition identifies Data Services Cloud Console as the interface used to set up, upgrade, and manage PCBE environments, and the “Updating system software” workflow is specifically tied to PCBE administration through DSCC. The customer’s requirement is broader than a single OmniStack upgrade: it includes vSphere, OmniStack, and firmware in a controlled operation. That makes a PCBE site-upgrade workflow the best match. Option B is associated with traditional SimpliVity software and firmware upgrade processes, but it is not the most complete answer for a PCBE-managed environment. Options C and D mix plugin/update- manager concepts and do not represent the correct PCBE lifecycle mechanism. Reference/topics: PCBE lifecycle operations, DSCC, SimpliVity upgrade planning, HPE GreenLake operational management.

NEW QUESTION 25
Your customer wants to implement a disaster recovery solution for their virtualization workload. They also want to implement a protection method that will protect the workload in case of a site failure.
Their existing environment includes the following configurations:
* All ESXi systems are located in the same datacenter
* Virtual machines are protected by an HA cluster
* Some of the VMs are protected with Fault Tolerance
* HPE Synergy 480 Gen11 is the compute platform
* HPE Alletra Storage MP B10000 array for storage
* Orchestrated failover for all VMs using VMware tools
The customer plans to replicate the same setup at the second site. The total number of virtual machines that must be protected is 200. Your customer also expects an RPO of 0.
Which component or configuration is a necessary part of a solution that will meet all customer requirements?

 
 
 
 
The correct answer is C. RPO 0 is the decisive requirement. A zero recovery point objective means the customer cannot lose acknowledged writes if a site fails. That requirement cannot be satisfied by asynchronous replication because asynchronous copy always introduces replication lag. The storage volumes backing the VMware datastores must be synchronously replicated between the two sites so that committed data exists at both locations before the write is considered protected. HPE Alletra Storage MP B10000 is designed for mission-critical block workloads and supports high-availability replication models, including synchronous Remote Copy / Peer Persistence designs for VMware environments. HPE documentation for Active Peer Persistence describes synchronous Remote Copy as the mechanism used for high-availability protection across arrays. Option A is incorrect because stretching or joining HPE Synergy frames across sites is not the mechanism that provides RPO 0.
Option B can help with VMware policy-driven placement, but SPBM alone does not replicate data.
Option D fails the RPO requirement. Reference/topics: DR architecture, RPO 0, synchronous replication, B10000 Remote Copy, VMware datastore protection.

NEW QUESTION 26
Refer to exhibit from a customer’s Aruba CX switch.
show interface vxlan vni vteps
VNI : 150 VLAN : 150
Routing : Disabled VRF : default
Vxlan-status : operational
VTEPs
Origin Source Destination VTEP-STATUS
static 172.17.255.2 172.17.255.1 static operational
Which statement is true in this scenario?

 
 
 
 
The correct answer is A. The switch output clearly identifies the VTEP origin as “static,” and the VNI is mapped to VLAN 150 with routing disabled. In ArubaOS-CX static VXLAN, the administrator manually configures the VXLAN interface, source IP address, VNI, and peer VTEP. Aruba documentation for static VXLAN states that the peer VTEP IP address is explicitly defined with the vtep-peer command. Option B describes EVPN-VXLAN behavior, where BGP EVPN is used as the control plane to advertise MAC/IP and VTEP reachability dynamically. That is not what the output shows; the displayed origin is static. Option C is unsupported by the exhibit because no license state or scale limit is shown. Option D is incorrect because VXLAN interoperability depends on protocol support, configuration, MTU, underlay reachability, and feature compatibility, not on both sites using the exact same CX switch model. Reference/topics: ArubaOS-CX VXLAN, static VTEP configuration, VNI-to-VLAN mapping, underlay/overlay validation.

NEW QUESTION 27
Your customer wants to simplify storage management for their VMware-based environment by configuring HPE Storage Integration Pack for VMware vCenter Server. They want to use HPE OneView for VMware vCenter Server for ESXi deployment.
Currently, they have 30 HPE ProLiant 380 Gen10 Plus deployed with ESXi 7.x and they plan to add 30 additional systems with exactly the same setup. Storage capacity is provided by HPE Alletra and HPE Primera arrays.
Which statement about the configuration and customer requirements is correct?

 
 
 
 
The correct answer is D because HPE OneView for VMware vCenter is an integration that allows VMware administrators to manage supported HPE infrastructure directly from the VMware vCenter environment when the infrastructure is already managed by HPE OneView. It is used to simplify lifecycle operations, hardware visibility, firmware management, and ESXi deployment workflows for HPE ProLiant and HPE Synergy systems. HPE documentation states that HPE OneView for VMware vCenter integrates HPE server, storage, and networking management into the VMware console and supports bare-metal ESXi deployment for HPE ProLiant and Synergy platforms. Option A is incorrect because the VMware integration itself is not treated as a separate per-host commercial product in the way the option implies; the underlying HPE OneView licensing and supported hardware management are the key prerequisites. Option B incorrectly introduces capacity-based licensing for each storage component. Option C is too restrictive and incorrectly ties the integration’s use to a specific vSphere edition statement. This question maps to the course objective of selecting appropriate HPE tools and information resources for VMware-integrated infrastructure management.

NEW QUESTION 28
A customer is about to do a server refresh with the intent of using HPE ProLiant DL360 Gen11 servers, with CPUs exceeding 270 watt power usage. The customer has existing third-party, 42U, air-cooled racks they are planning to reuse.
Which cooling option will allow your customer to install the servers with their existing racks, with the least amount of changes to the setup?

 
 
 
 
The correct answer is B because the CPU power level exceeds the range normally handled by standard or high-performance air-cooling options for this server design. For HPE ProLiant DL360 Gen11 configurations with very high-wattage processors, HPE design guidance identifies closed-loop liquid cooling as the required or appropriate cooling mechanism for processors at or above the higher thermal threshold. The key phrase in the scenario is that the customer wants to reuse existing third- party, 42U, air-cooled racks with the least amount of change. Closed-loop liquid cooling is self- contained inside the server cooling assembly and does not require the customer to deploy facility-level liquid-cooled racks or direct-liquid-cooling infrastructure. Option A introduces a larger rack and facility change, which violates the “least amount of changes” requirement. Option C implies external liquid-cooling infrastructure and is therefore more disruptive. Option D is incorrect because high- performance fans are intended for lower thermal design power ranges and are not sufficient for CPUs exceeding the stated 270-watt threshold. This aligns with the course’s ProLiant Gen11/Gen12 server design and validation objectives.

NEW QUESTION 29
Your customer has a networking environment based on Aruba CX 8325 switches configured with Quality of Service settings that give higher priority to iSCSI traffic between HPE ProLiant servers and HPE Alletra 6000 storage. They are planning to add HPE Synergy frames with HPE Virtual Connect modules that will connect to the same Aruba infrastructure.
The frames will be deployed in different VLANs. They need to update their environment to provide a lossless fabric for RoCE traffic that will traverse between the HPE Synergy frames and through multiple switches.
Your customer has two sets of Synergy frames in different logical enclosures connected with Aruba CX 8325 switches. They want to update their environment to provide lossless traffic for RoCE traffic.
What is the correct environmental or design change that will meet the customer’s new requirement?

 
 
 
 
The correct answer is B. In HPE Synergy, network connectivity for compute modules is defined through HPE OneView server profiles. When RoCE is required, the server profile must explicitly include RoCE connections mapped to the appropriate RoCE network. HPE OneView guidance for adding a RoCE network states that server profiles should be created or edited with at least two RoCE connections mapped to the network. That directly supports the customer’s requirement for resilient, lossless RDMA connectivity between Synergy frames and the Aruba data-center fabric. Option A is incorrect because RoCEv1 is Layer 2 only and is not appropriate for a design traversing multiple switches and VLAN/routed boundaries. Option C is incomplete because operating-system queue creation alone does not establish Synergy Virtual Connect fabric policy or redundant RoCE connectivity. Option D is technically wrong because RoCE traffic should be consistently classified and lossless behavior must be enforced end to end, not split across two different priority values. Reference
/topics: HPE Synergy networking, HPE OneView server profiles, RoCE networks, DCB/lossless Ethernet, Aruba CX data-center fabric.

NEW QUESTION 30
Your customer requires a data protection solution that will support their workloads running on an HPE Alletra MP B10000 storage array.
Your customer requirements include:
* Protecting VMware vSphere workloads
* Covering different hypervisors
* Pay-per-use model
* Near synchronous and block-level replication
Select the most appropriate solution.

 
 
 
 
The correct answer is A. HPE Zerto is the appropriate solution because the requirements describe application and VM-level cyber resilience/disaster recovery, not array management or backup-target hardware. Zerto protects virtualized workloads using near-synchronous, block-level replication and journal-based recovery, which supports very low RPOs and granular recovery points. HPE’s Zerto product material describes near-synchronous replication with recovery points measured in seconds, and HPE GreenLake for Disaster Recovery uses Zerto continuous data protection in a cloud-service model. Option B is incorrect because HPE Data Ops Manager manages HPE block storage operations and data services; it is not the DR engine for cross-hypervisor workload replication. Option C is a storage-server platform and does not provide the requested VM-level replication service. Option D, HPE StoreOnce, is a backup appliance target; it is valuable for backup retention and deduplication but does not provide near-synchronous, block-level VM replication across hypervisors. Reference/topics:
HPE Zerto, HPE GreenLake for Disaster Recovery, VMware workload protection, pay-per-use data protection, block-level replication.

NEW QUESTION 31
Your customer has a combination of HPE and non-HPE equipment.
Which is the correct functionality available in Aruba Fabric Composer for this customer’s environment?

 
 
 
 

NEW QUESTION 32
Your customer is currently using an HPE SimpliVity 380 Gen10 solution and is planning for a generation refresh to an HPE SimpliVity 380 Gen11.
The existing cluster is planned to be maintained as a test and dev platform for another 24-36 months while production workloads are moved to the new environment.
The new solution will be purchased as HPE GreenLake for Private Cloud Business Edition, and the customer would like to include the existing Gen10 cluster within the same management platform.
Which statement is true about combining the management of both the old and new generations?

 
 
 
 
The correct answer is D because existing HPE SimpliVity systems can be brought under HPE GreenLake / Data Services Cloud Console management by using the Data Services Connector. The connector is deployed as a virtual machine, registered with HPE GreenLake, and used to enable or import supported HPE SimpliVity systems into the cloud-managed PCBE operating model. This fits the customer’s transition scenario exactly: production is moving to the new Gen11 PCBE environment, but the older Gen10 SimpliVity cluster remains useful for test and development. Option A is incorrect because the new PCBE platform should not be downgraded to preserve legacy-style management.
Option B is also wrong because the existing cluster does not need to be redeployed as a brand-new PCBE installation. Option C is directionally close but imprecise: the management plane is HPE GreenLake / DSCC using Data Services Connector, not the new PCBE system “managing” the old platform directly. Reference/topics: HPE GreenLake, Private Cloud Business Edition, Data Services Connector, SimpliVity onboarding and lifecycle management.

NEW QUESTION 33
Your customer is considering HPE Alletra 6000 or HPE Alletra Storage MP B10000 for use as a Peer Persistence enabling platform for their critical workloads.
Which statement about these platforms and their benefits is true for Peer Persistence?

 
 
 
 
The correct answer is D. HPE Alletra Storage MP B10000 supports mission-critical Peer Persistence designs using synchronous Remote Copy, and FC can be used as an underlying Remote Copy transport.
HPE material for Active Peer Persistence states that the solution uses Remote Copy synchronous mode, while HPE B10000 training material describes the requirement for synchronous RC links using RCFC or RCIP and cross-site Fibre Channel or iSCSI host SAN connectivity. Options A and B are wrong because Alletra 6000 is associated with Nimble/Alletra 6000 Peer Persistence, not the same Active Peer Persistence model used with Alletra Storage MP B10000, Primera, and Alletra 9000-class arrays.
Option C is not the best answer because Active Peer Persistence is a two-array high-availability model; one-to-many Remote Copy is a replication topology and should not be confused with the active-active peer-persistence protection model. The key validated design differentiator here is that B10000 supports FC-based synchronous replication for high-availability block-storage use cases. Reference/topics: HPE Alletra Storage MP B10000, Active Peer Persistence, Remote Copy, mission-critical storage design.

NEW QUESTION 34
Your customer is expecting to see an increase in the amount of data stored on their HPE Alletra Storage MP B10000.
They are asking to create a plan to support a raw capacity of 450 TB all flash.
Refer to exhibit

What change would you recommend to the configuration to achieve this?

 
 
 
 
The correct answer is C. The exhibit shows an HPE Alletra Storage MP B10000 configuration based on QLC flash, with raw capacity below the customer’s 450 TB target. The correct capacity adjustment is to increase the number of QLC drives in the system while selecting the sparing policy that maximizes available usable capacity for the intended design. Replacing QLC with TLC is not the right direction for a high-capacity all-flash requirement because QLC media is positioned for dense, cost-efficient capacity expansion. Adding host bus adapters does not increase raw storage capacity, so option A is unrelated to the requirement. Replacing controller nodes is also unnecessary because the problem is media capacity, not controller performance. HPE Alletra Storage MP B10000 QuickSpecs identify scale-out capacity characteristics, including maximum raw capacity per shelf, confirming that the platform is intended to scale capacity through shelves and drive population rather than by changing host-connectivity cards. The correct plan is to add QLC capacity to reach the raw-capacity target and adjust sparing appropriately. Reference/topics: B10000 capacity planning, QLC all-flash sizing, sparing policy, GreenLake proposal validation.

NEW QUESTION 35
Your customer has a combination of HPE and non-HPE equipment.
Which is the correct functionality available in Aruba Fabric Composer for this customer’s environment?

 
 
 
 
The correct answer is D. Aruba Fabric Composer is a data-center fabric automation and visibility platform for ArubaOS-CX network fabrics, and it can integrate with external virtualization managers such as VMware vSphere. In a mixed HPE and non-HPE environment, this matters because the compute hardware vendor is not the deciding factor for visibility into VMware-owned networking constructs. Aruba Fabric Composer can recognize VLAN groups owned or managed by external resources such as VMware vSphere, and the user guide explicitly describes VMware vSphere as an external manager that can own and manage VLAN groups. Option A is wrong because HPE Alletra Storage MP B10000 array management belongs to HPE storage management services such as DSCC
/Data Ops Manager, not Aruba Fabric Composer. Option B is wrong because SAN zoning is Fibre Channel fabric work, not a function of ArubaOS-CX Ethernet switching. Option C is also incorrect because Pensando Distributed Services Cards are not managed through Aruba Fabric Composer as a general server-card management plane. Reference/topics: Aruba Fabric Composer, VMware integration, VLAN visibility, mixed-infrastructure discovery.

NEW QUESTION 36
Your customer would like to implement Peer Persistence for their HPE Alletra 6000 remote replication configuration.
Which statement is true?

 
 
 
 
The correct answer is D. HPE Alletra 6000 Peer Persistence is built on synchronous replication between two arrays and is designed for zero or near-zero RPO and fast recovery. HPE’s Peer Persistence technical white paper explains that synchronous replication uses LAN or WAN technologies to mirror data between sites and that data is copied across an IP address interface to the second array before the write is acknowledged. That makes high-speed IP connectivity the relevant design foundation for the replication path. Option A is incorrect because Peer Persistence does not require both arrays to operate as upstream for the same volume; source and destination roles are assigned per synchronously replicated volume collection, and different volume collections can reverse the source/destination role.
Option B is imprecise because the replication mechanism is not “always iSCSI”; host access may involve iSCSI or FC, but synchronous replication traffic is array-to-array IP-based. Option C is wrong for the same reason: FC is not the mandatory transport for Alletra 6000 synchronous replication.
Reference/topics: HPE Alletra 6000, NimbleOS Peer Persistence, synchronous replication, IP replication links, ASO design.

NEW QUESTION 37
Your customer has a requirement to support 500K IOP/s write speeds in their environment.

What change should you make to the configuration to achieve this?

 
 
 
 
The correct answer is D because the requirement is not simply additional raw capacity; it is a write- performance target of 500K IOP/s. For HPE Alletra Storage MP B10000 designs, controller-node model selection, node count, shelf count, drive population, and media layout collectively determine whether the configuration can satisfy the performance envelope. Merely increasing the number of drives, as suggested in option C, does not guarantee that the front-end controller resources, CPU, cache, and back-end connectivity can sustain the required write workload. Options A and B use lower or inappropriate node selections for this stated requirement. The B10230 model, combined with additional shelf and drive resources, is the configuration change that aligns the controller and media resources with the required write I/O target. HPE’s course outline places HPE Alletra Storage MP B10000 in both general enterprise solution design and database workload solution design, which is exactly the kind of workload-sensitive sizing exercise represented here. The proposal must be validated against the customer’s required I/O profile, not only against usable capacity.

NEW QUESTION 38
You have proposed that your customer adopts HPE VM Essentials as an alternative hypervisor, but they still want to utilize their existing HPE Synergy 480 Gen10/Plus for existing vSphere workloads.
How can your customer manage both environments from a single management platform?

 
 
 
 
The correct answer is A. HPE VM Essentials is positioned as an HPE virtualization software platform that allows customers to manage both KVM-based HPE VM Essentials environments and VMware- based virtual machines from one operational interface. HPE’s QuickSpecs describe HPE Morpheus VM Essentials Software as a virtualization solution that enables provisioning and management of KVM and VMware-based VMs from a single intuitive interface. This fits the customer’s transition scenario:
they are not replacing everything immediately; they want to introduce HPE VM Essentials while continuing to operate existing vSphere workloads on HPE Synergy. Option B is incorrect because the Data Services Connector is used to connect supported HPE systems and services to Data Services Cloud Console; it is not the management plane for both vCenter and HPE VM Essentials. Option C reverses the integration model by implying that vCenter is the primary manager for both platforms. Option D is not a valid management approach for this mixed virtualization requirement. Reference/topics: HPE VM Essentials, VMware coexistence, hybrid operating model, delivery-model selection.

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