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The NS0-093 exam covers a range of topics related to NetApp storage systems, including hardware installation, configuration, and maintenance. NS0-093 exam also focuses on troubleshooting and problem-solving skills, which are essential for hardware support engineers who work with complex storage systems. Candidates who pass the exam demonstrate a deep understanding of NetApp storage systems and are well-equipped to provide expert support and maintenance to businesses that rely on these systems.
Earning the Network Appliance NS0-093 certification demonstrates to employers and clients that you have the expertise and skills needed to support NetApp hardware. NetApp Accredited Hardware Support Engineer certification is ideal for hardware support engineers who want to advance their careers and increase their earning potential. Additionally, the certification can help organizations ensure that their hardware support personnel have the necessary skills and knowledge to maintain and troubleshoot their NetApp systems. Overall, the Network Appliance NS0-093 Certification is a valuable credential for anyone who works with NetApp hardware.
Network Appliance NS0-093 is an esteemed certification exam in the field of information technology, designed to validate the knowledge and skills of NetApp accredited hardware support engineers. NetApp Accredited Hardware Support Engineer certification exam aims to provide professionals with extensive knowledge of NetApp storage systems, protocols, and other hardware components. The NS0-093 certification validates an individual's ability to support NetApp storage systems and achieve operational excellence.
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Network Appliance NetApp Accredited Hardware Support Engineer Sample Questions (Q38-Q43):
NEW QUESTION # 38
Which two ONTAP systems support both SSD and SAS disks? (Choose two.)
- A. AFF C190
- B. FAS8200
- C. AFF A220
- D. FAS2750
Answer: B,D
Explanation:
The following ONTAP systems support both SSD and SAS disks:
* Description:
* The FAS2750 is part of NetApp's hybrid storage array product line.
* It supports both SSDs for performance tiers and SAS disks for capacity tiers, making it suitable for mixed workloads.
1. FAS2750
* Description:
* The FAS8200 is an enterprise-level storage system that also supports hybrid configurations with both SSD and SAS drives.
* This system is designed to handle high performance and capacity needs.
2. FAS8200
* A. AFF C190:
* The AFF C190 is an all-flash system and only supports SSDs. It does not support SAS disks.
* C. AFF A220:
* Like the AFF C190, the AFF A220 is also an all-flash system that supports SSDs only.
Why Other Options Are Incorrect:
* NetApp "Hardware Universe" confirms drive support for FAS and AFF systems.
* NetApp product documentation details supported disk types for hybrid and all-flash systems.
References:
NEW QUESTION # 39
Which two of the following methods are valid ways to access a node which is not booting? (Choose two.)
- A. cluster management port
- B. serial console
- C. Service Processor
- D. node management port
Answer: B,C
Explanation:
If a node is not booting, the following methods can be used to access the system for troubleshooting:
* What it does:The SP provides out-of-band management access to the node, even if the node is not booting.
* How to use:
* Connect to the SP using SSH or a direct console connection.
* Use SP commands to gather logs or perform diagnostics.
1. Service Processor (SP)
* What it does:The serial console provides direct access to the node's bootloader or maintenance mode.
* How to use:
* Connect to the serial port using a terminal emulator.
* Use console commands to interact with the system.
2. Serial Console
* A. node management port:
* The node management interface is only accessible if the node is booted and ONTAP is running.
* B. cluster management port:
* The cluster management interface requires the cluster to be operational, which is not possible if the node is not booting.
Why Other Options Are Incorrect:
* NetApp "Service Processor and Serial Console Guide" provides instructions for accessing a non- booting node.
References:
NEW QUESTION # 40
You are using wafliron on an aggregate named homedir on a production system.
When is the data on homedir available?
- A. after the mounting phase of wafliron is complete
- B. when wafliron is started
- C. when the administrator manually onlines the aggregate
- D. after Phase 4 of wafliron is complete
Answer: D
Explanation:
When using wafliron to repair WAFL inconsistencies on an aggregate, the aggregate becomes available after Phase 4 of the wafliron process is complete.
* Phase 1: Initial scan to identify inconsistencies.
* Phase 2: Corrects directory and inode structure issues.
* Phase 3: Repairs blocks and metadata.
* Phase 4: Completes final repairs and verification, after which the aggregate can be made available.
Phases of wafliron:
* A. when the administrator manually onlines the aggregate:
* The aggregate cannot be manually brought online until wafliron completes Phase 4.
* B. when wafliron is started:
* Starting wafliron does not make the aggregate available; repairs need to be completed first.
* D. after the mounting phase of wafliron is complete:
* WAFLiron does not have a specific "mounting phase." Mounting happens after Phase 4 completes.
Why Other Options Are Incorrect:
* "NetApp WAFLiron Troubleshooting Guide" explains the availability of the aggregate after Phase 4.
* NetApp Support documentation outlines the phases of wafliron and aggregate recovery.
References:
NEW QUESTION # 41
What are two valid options for uploading a core file from a node that is running ONTAP 9.12.1 software to NetApp for analysis? (Choose two.)
- A. Download via CIFS and upload to upload.netapp.com.
- B. system node autosupport invoke -diagnostic
- C. system node autosupport invoke-core-upload
- D. Download via Service Processor Infrastructure (SPI) and upload to upload.netapp.com.
Answer: A,C
Explanation:
Options for Uploading Core Files:
* Core files are diagnostic dumps created during system failures for analysis by NetApp Support.
* They can be uploaded via multiple methods, depending on system configuration and access:
Option B (CIFS Download):
* Core files can be downloaded from the node using a CIFS share and then manually uploaded to upload.
netapp.com.
* This method is useful if automated processes are unavailable or connectivity is limited.
Option D (Autosupport Invoke-Core-Upload):
* The command system node autosupport invoke-core-upload automates the process of uploading the core file to NetApp.
* It uses the configured Autosupport mechanism to transfer the file to NetApp Support for analysis.
NetApp Reference Documentation:
* "ONTAP Autosupport Guide" and "ONTAP Troubleshooting Guide" provide instructions for manually and automatically uploading core files.
NEW QUESTION # 42
What should be the first step taken after detecting a NetApp WAFL inconsistency?
- A. Run a dump to null.
- B. Stabilize the system.
- C. Run wafliron.
- D. Force offline the affected aggregate.
Answer: B
Explanation:
When a WAFL inconsistency is detected, the first step is to stabilize the system before attempting any repairs or recovery.
* Stabilize the System:
* Ensure that the system is not experiencing ongoing hardware or software issues.
* Avoid making changes to the affected aggregate or volume until the system is stable.
* Assess the Impact:
* Determine which aggregates or volumes are affected and the severity of the inconsistency.
Steps to Handle WAFL Inconsistency:
* A. Run wafliron:
* Running wafliron should only be done after stabilizing the system and under guidance from NetApp Support.
* C. Force offline the affected aggregate:
* Forcing an aggregate offline without proper assessment can lead to data loss.
* D. Run a dump to null:
* Dumping data is not relevant for resolving a WAFL inconsistency.
Why Other Options Are Incorrect:
* "NetApp WAFL Troubleshooting Guide" specifies that stabilization is the first step after detecting inconsistencies.
* NetApp Support documentation provides guidelines for handling WAFL inconsistencies safely.
References:
NEW QUESTION # 43
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