LATEST NETWORK APPLIANCE NS0-093 EXAM QUESTIONS, NS0-093 TEST QUESTIONS PDF

Latest Network Appliance NS0-093 Exam Questions, NS0-093 Test Questions Pdf

Latest Network Appliance NS0-093 Exam Questions, NS0-093 Test Questions Pdf

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Tags: Latest NS0-093 Exam Questions, NS0-093 Test Questions Pdf, Valid NS0-093 Exam Prep, Unlimited NS0-093 Exam Practice, NS0-093 Valid Test Notes

For the NetApp Accredited Hardware Support Engineer (NS0-093) web-based practice exam no special software installation is required. because it is a browser-based NS0-093 practice test. The web-based NS0-093 practice exam works on all operating systems like Mac, Linux, iOS, Android, and Windows. In the same way, IE, Firefox, Opera and Safari, and all the major browsers support the web-based Network Appliance NS0-093 Practice Test. So it requires no special plugins. The web-based NS0-093 practice exam software is genuine, authentic, and real so feel free to start your practice instantly with NS0-093 practice test.

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.

>> Latest Network Appliance NS0-093 Exam Questions <<

NS0-093 study materials: NetApp Accredited Hardware Support Engineer & NS0-093 exam torrent & NS0-093 actual exam

The iPassleader NetApp Accredited Hardware Support Engineer (NS0-093) exam dumps are being offered in three different formats. The names of these formats are iPassleader NS0-093 PDF questions file, desktop practice test software, and web-based practice test software. All these three iPassleader NS0-093 Exam Dumps formats contain the real Network Appliance NS0-093 exam questions that will help you to streamline the NS0-093 exam preparation process.

Network Appliance NetApp Accredited Hardware Support Engineer Sample Questions (Q16-Q21):

NEW QUESTION # 16
Which two tools can be used to recover an inconsistent aggregate? (Choose two.)

  • A. wafliron
  • B. wafl_check
  • C. file check
  • D. wafl snapiron

Answer: A,B

Explanation:
To recover an inconsistent aggregate, the following tools can be used:
* What it does:This tool is used to perform a consistency check on WAFL metadata. It identifies and attempts to fix WAFL inconsistencies in aggregates.
* When to use:Run wafl_check after identifying WAFL inconsistencies to repair minor metadata issues.
1. wafl_check
* What it does:This tool repairs WAFL inconsistencies by reconstructing metadata. It is more powerful than wafl_check and should only be run under NetApp Support guidance, as improper use can result in data loss.
* When to use:Use wafliron for severe WAFL inconsistencies that cannot be resolved by wafl_check.
2. wafliron
* A. file check:
* This is not a valid NetApp tool.
* C. wafl snapiron:
* While similar in name, snapiron is used for snapshot recovery, not aggregate recovery.
Why Other Options Are Incorrect:
* "ONTAP Aggregate Troubleshooting Guide" details the usage of wafl_check and wafliron.
* NetApp Support documentation provides guidelines for recovering inconsistent aggregates.
References:


NEW QUESTION # 17
On an AFF A700 system, a SAS stack is connected to SAS ports 2a and 2b. The system has an additional 4- port SAS card in slot 9.
How should the cabling the corrected for best practices?

  • A. Use port 2b and 9d.
  • B. Use port 2a and 2c.
  • C. Use port 2a and 9a.
  • D. Use port 2a and 9b.

Answer: C

Explanation:
Best Practices for SAS Cabling in AFF A700 Systems:
* The AFF A700 system has built-in SAS ports (e.g., 2a and 2b) as well as additional SAS ports on optional SAS cards.
* To ensure high availability and redundancy, it is recommended to distribute SAS connections across multiple SAS ports from different controllers or slots.
Why Port 2a and 9a Are Recommended:
* Port 2a is a built-in SAS port on the AFF A700 system.
* Port 9a belongs to the additional SAS card in slot 9.
* By connecting the stack using 2a and 9a, you utilize different SAS domains (built-in controller ports and add-on card ports), providing both path redundancy and load balancing.
NetApp Reference Documentation:
* "NetApp Hardware Universe" and "ONTAP Hardware Installation Guide" highlight that SAS cabling for redundancy should leverage different ports, including those from separate SAS controllers or add-on cards.
* NetApp's best practice guidelines suggest avoiding connections to the same SAS controller or port group for critical stacks.


NEW QUESTION # 18
What is the default amount of time that a volume is available for recovery from the volume recovery queue following a volume deletion?

  • A. 24 hours
  • B. 72 hours
  • C. 48 hours
  • D. 12 hours

Answer: D

Explanation:
When a volume is deleted in a NetApp ONTAP system, it is placed in the Volume Recovery Queue. By default, the volume remains in this recovery queue for 12 hours before being permanently deleted. This allows administrators to recover mistakenly deleted volumes within the set retention period.
Explanation of Default Behavior:
* Volume Recovery Queue:
* This is a feature in NetApp ONTAP that acts as a safety mechanism, providing a grace period for recovering deleted volumes.
* The default retention period for volumes in the recovery queue is 12 hours, as confirmed by the NetApp KB: "How to use the Volume Recovery Queue."
* How to Recover a Deleted Volume:
* Administrators can recover a deleted volume as long as it remains in the recovery queue and the retention period has not expired.
* Use the ONTAP CLI command:
arduino
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cluster::> volume recovery-queue recover -vserver <vserver_name> -volume <volume_name>
* This command restores the volume back to its original state.
* How to Check the Volume Recovery Queue:
* To view volumes in the recovery queue and their expiration times, use:
arduino
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cluster::> volume recovery-queue show
* Changing the Default Retention Period:
* While the default period is 12 hours, it can be adjusted by administrators to fit specific organizational requirements. This is done via system settings or policies.
Why the Other Options Are Incorrect:
* B. 48 hours: Incorrect. The default retention period is not 48 hours; it is 12 hours by default.
* C. 72 hours: Incorrect. While a custom configuration could allow this, it is not the default.
* D. 24 hours: Incorrect. Although this was previously thought to be the default, NetApp documentation explicitly states it is 12 hours.
References:
* NetApp Knowledge Base Article: "How to use the Volume Recovery Queue".
* NetApp ONTAP Documentation: Volume Recovery and Data Management Procedures.


NEW QUESTION # 19
Which LOADER prompt command ensures that POST is done on boot?

  • A. boot_ontap
  • B. setenv POST=true
  • C. bye
  • D. boot_diag

Answer: B

Explanation:
To ensure that POST (Power-On Self-Test) runs on boot, the setenv POST=true command is used at the LOADER prompt. This command enables the system to perform POST diagnostics before proceeding with the boot process.
* POST Purpose: POST checks system hardware components (such as memory, disk, and controllers) for faults before loading the ONTAP kernel.
* How to Use:
* At the LOADER prompt, type:
Key Details:arduino
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setenv POST=true
* Save the configuration and reboot the system.
* B. bye:
* This command restarts the system but does not ensure that POST runs on boot.
* C. boot_diag:
* This command boots the system into diagnostic mode but is not directly related to enabling POST on boot.
* D. boot_ontap:
* This command boots ONTAP but skips POST if it is not explicitly enabled.
Why Other Options Are Incorrect:
* NetApp "ONTAP System Boot and Recovery Guide" describes setenv POST=true for enabling POST diagnostics.
References:


NEW QUESTION # 20
Which two statements are correct when describing L1 and L2 Watch Dog Resets (WDR)? (Choose two.)

  • A. L1 WDR performs a soft reset.
  • B. L2 WDR requests creation of a core dump before reset.
  • C. L1 WDR is initiated after 0.5 seconds from the event.
  • D. L2 WDR is initiated after 2 seconds from the event.

Answer: B,D

Explanation:
* Description:
* L1 WDR is a hardware-initiated reset that occurs when the system detects an unrecoverable error or lockup lasting 0.5 seconds.
* Key Characteristics:
* It performs a hard reset, meaning the system immediately reboots without creating a core dump.
1. L1 Watchdog Reset (WDR):
* Description:
* L2 WDR is initiated when the system fails to recover from a critical fault after 2 seconds.
* Key Characteristics:
* It requests a core dump to capture the system state for diagnostic purposes before performing a reset.
2. L2 Watchdog Reset (WDR):
* B. L1 WDR is initiated after 0.5 seconds from the event:
* This is incorrect because L1 WDR performs a hard reset and does not initiate after 2 seconds.
* C. L1 WDR performs a soft reset:
* This is incorrect because L1 WDR performs a hard reset, not a soft reset.
Why Other Options Are Incorrect:
* "ONTAP Panic Analysis Guide" describes the behavior and timing of L1 and L2 WDR events.
* NetApp Support documentation on system resets explains the differences between L1 and L2 watchdog resets.
References:


NEW QUESTION # 21
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