HPE Compute Solutions 온라인 연습
최종 업데이트 시간: 2026년04월21일
당신은 온라인 연습 문제를 통해 HP HPE0-S59 시험지식에 대해 자신이 어떻게 알고 있는지 파악한 후 시험 참가 신청 여부를 결정할 수 있다.
시험을 100% 합격하고 시험 준비 시간을 35% 절약하기를 바라며 HPE0-S59 덤프 (최신 실제 시험 문제)를 사용 선택하여 현재 최신 266개의 시험 문제와 답을 포함하십시오.

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Explanation:
To expand an existing logical enclosure based on a single HPE Synergy frame to include a second frame and ensure a highly available master setup, the following steps should be performed:
Modify an existing logical interconnect to include the second HPE Synergy frame: This step involves updating the logical interconnect configuration to encompass the new frame, ensuring network connectivity and consistency across both frames.
Move one of the master modules to the appropriate interconnect bay in the second frame: To achieve a highly available master setup, one of the master modules should be relocated to the second frame, providing redundancy and high availability for the management components.
Reference: HPE Synergy Frame Expansion Guide
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Explanation:
In HPE Synergy configurations, compute nodes must have a second CPU installed to access the second fabric. This requirement is due to the architecture of the Synergy compute nodes, where the second CPU is necessary to enable the additional PCIe lanes required for connectivity to the second fabric.
Reference: HPE Synergy Compute Modules Configuration Guide
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Explanation:
The issue of seeing multiple instances of an FC boot volume in Disk Management, with one online and three offline, is typically caused by the lack of Multi-Path I/O (MPIO) configuration. Installing and configuring MPIO on the Windows system will enable the operating system to recognize multiple paths to the same storage volume and manage them correctly, presenting only one online instance of the volume.
Reference: Microsoft Documentation on MPIO

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Explanation:
Here are the correct matches for each HPE Synergy logical component with their respective definitions:
Enclosure group
Definition: Contains the configuration intended for a set of physical enclosures.
Logical enclosure
Definition: A logical resource that defines a consistent configuration for an enclosure or a set of enclosures making up a logical enclosure.
Logical interconnect
Definition: A single administrative entity that consists of the configuration for a set of interconnects in a single enclosure or a frame link topology.
Logical interconnect group
Definition: Acts as a recipe for creating a group that represents the available networks, uplink sets, and interconnect settings for a set of physical interconnects in a set of enclosures.
Enclosure group: An enclosure group in HPE Synergy defines the configuration settings, including logical interconnect groups and firmware baselines, for a set of physical enclosures.
Logical enclosure: A logical enclosure in HPE Synergy is a resource that includes one or more physical enclosures and their associated logical interconnects, providing a consistent configuration for those enclosures.
Logical interconnect: A logical interconnect represents a set of interconnects within an enclosure, managed as a single entity. It includes the configuration of the interconnects and their connections.
Logical interconnect group: A logical interconnect group (LIG) defines the network configuration, including available networks, uplink sets, and interconnect settings, that can be applied to multiple enclosures.
Reference: HPE Synergy Configuration and Management Guide
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Explanation:
When a logical interconnect group (LIG) that is used to configure logical interconnects in multiple logical enclosures is modified, all logical interconnects configured using this LIG will report inconsistency. This is because the configuration of the logical interconnects will no longer match the new settings defined in the modified LIG, and the inconsistencies must be resolved to ensure the configurations are synchronized.
Reference: HPE OneView Logical Interconnect Groups Guide
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Explanation:
One of the key benefits of using HPE Composer 2 is its enhanced scalability. A pair of HPE Composer 2 modules can manage up to 42 frames, which is double the capacity managed by the previous generation HPE Composer (which manages up to 21 frames). This increased capacity allows for more efficient and large-scale management of HPE Synergy environments.
Reference: HPE Synergy Composer 2 QuickSpecs

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Explanation:
To check the Core Analysis Engine (CAE) Log on the HPE Superdome Flex 280, navigate to the Logs section in the management interface. This section provides access to various logs, including system, security, and diagnostic logs, which encompass the CAE logs necessary for detailed analysis and troubleshooting.
Reference: HPE Superdome Flex 280 Management Guide
The HPE D3940 storage module is designed to provide flexible and scalable storage within the HPE Synergy platform. Up to five D3940 storage modules can be installed in a single HPE Synergy frame when used with Gen10 servers. This configuration allows for high-density storage solutions within a single frame, making it ideal for environments that require substantial storage capacity.
Reference: HPE Synergy Storage Modules QuickSpecs
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Explanation:
The HPE Apollo 2000 Gen10 Plus platform offers flexibility in processor options, supporting both AMD EPYC and Intel Xeon Scalable CPUs. This allows customers to choose the best processor architecture based on their specific workload requirements and performance needs.
Reference: HPE Apollo 2000 Gen10 Plus QuickSpecs
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Explanation:
When a new Ethernet network is created in HPE OneView and is not available in the server profile, it is typically because the network has not been added to the uplink set within the Logical Interconnect Group (LIG). To resolve this issue, the network must be included in the uplink set configuration, and then the logical interconnect configuration must be updated from the LIG to propagate the changes.
Reference: HPE OneView Networking Guide
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Explanation:
HPE Synergy management rings have a maximum capacity for the number of frames they can manage. With 18 frames already managed in 6 logical enclosures, adding 5 more frames would exceed this capacity. Therefore, the customer needs to create a new management ring for the new logical enclosure to ensure proper management and operation.
Reference: HPE Synergy Management Guide
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Explanation:
The HPE Superdome Flex 280 is the appropriate hardware platform for a customer requiring up to 24 TB of physical memory. This system is designed for high scalability and performance, supporting large memory configurations suitable for demanding applications and workloads.
Reference: HPE Superdome Flex 280 QuickSpecs

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Explanation:
To configure HPE OneView for VMware vCenter Server to deploy ESXi systems, follow these steps in the correct order:
Add HPE OneView credentials to the vCenter Server and create OS Deployment Plan.
Add vCenter Server to HPE OneView for VMware vCenter Server.
Upload HPE-friendly ESXi image.
Deploy new ESXi systems using vCenter Server interface.
Add HPE OneView credentials to the vCenter Server and create OS Deployment Plan: Integrate HPE OneView with vCenter Server by adding the necessary credentials and setting up the OS Deployment Plan.
Add vCenter Server to HPE OneView for VMware vCenter Server: Ensure that vCenter Server is added to HPE OneView for VMware vCenter Server to enable communication and management.
Upload HPE-friendly ESXi image: Upload an ESXi image that is optimized for HPE hardware to the vCenter Server for use in the deployment process.
Deploy new ESXi systems using vCenter Server interface: Use the vCenter Server interface to deploy new ESXi systems based on the created server profile template and the uploaded ESXi image.
These steps ensure a seamless deployment and management of ESXi systems using HPE OneView integrated with VMware vCenter Server.
Reference: HPE OneView for VMware vCenter Server User Guide