NS0-077 exam dump, dumps VCE for NetApp StorageGRID Administrator Exam

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Network Appliance NS0-077 Exam Syllabus Topics:

SectionObjectives
Topic 1: Monitoring and Troubleshooting- System health monitoring
- Performance troubleshooting
- Log analysis and diagnostics
Topic 2: StorageGRID Architecture and Concepts- Grid architecture overview
- Nodes and components
- Data flow and object storage concepts
Topic 3: Security and Compliance- Encryption and key management
- Audit logging and compliance features
Topic 4: Configuration and Management- Information Lifecycle Management (ILM) policies
- Identity federation and access control
- Tenant and bucket management
Topic 5: Installation and Deployment- Initial grid configuration
- System requirements

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Network Appliance NetApp StorageGRID Administrator Exam Sample Questions (Q34-Q39):

NEW QUESTION # 34
You have implemented an Apache Kafka notification in Platform Services. You want to be notified in the event that Platform Services fails to send the data.
Using the storagegrid_platform_services_failed_kafka_notifications metric, which action enables you to receive notifications?

Answer: B

Explanation:
The correct action is to create a custom alert rule that evaluates the
storagegrid_platform_services_failed_kafka_notifications Prometheus metric. StorageGRID collects operational metrics through Prometheus, and NetApp explicitly supports using those metrics as expressions in custom alert rules. When the configured expression crosses the defined threshold, StorageGRID generates an alert at the selected severity level.
For example, the administrator can create a rule under Alerts > Rules > Create custom rule and define an expression based on an increase or nonzero value for the failed Kafka notification metric. The alert can be configured with an appropriate duration and severity. Once triggered, StorageGRID can display the alert in Grid Manager and, when notification services are configured, send email or SNMP notifications to administrators.
Option B is incorrect because Grafana provides visualization of time-series metrics but does not itself establish StorageGRID alert notification logic. Option D allows an administrator to inspect or test the Prometheus metric, but merely querying it does not generate administrative notifications. Option A concerns HTTP/audit information and has no role in metric-based failure alerting.
Therefore, C is the required method for converting the Kafka failure metric into an actionable StorageGRID notification.
Reference topics: Grid Manager # Alerts # Custom Alert Rules # Prometheus Metrics # Platform Services # Kafka Notification Monitoring


NEW QUESTION # 35
Your customer is running a multisite grid and is ingesting log data from a variety of sources. The logs are processed by a Security Information and Event Management (SIEM) solution and stored in the grid for reading purposes only. A log file must be readable from all available nodes in the grid. Ingest into the grid must be possible even when a site is down. Due to the size and importance, the log files are stored in an EC7+5 format across three sites.
Which bucket consistency level and ingest policy must be selected?

Answer: B

Explanation:
The correct combination is read-after-new-write consistency with Balanced ingest. The workload contains log objects that are written once and subsequently read, so read-after-new-write provides the required behavior:
StorageGRID guarantees read-after-write consistency for new objects, while maintaining high availability.
NetApp recommends this consistency setting for most workloads. Because these SIEM log objects are not expected to be updated after creation, the eventual-consistency behavior for updates is not material to this use case.
The ingest requirement is decisive. The EC7+5 placement spans three sites, but clients must remain able to ingest when one site is unavailable. With Strict ingest, StorageGRID must satisfy the ILM placement instructions synchronously before acknowledging the write. If the required EC placement cannot be created because a site is down, the request fails. In contrast, Balanced attempts the specified ILM placement immediately but, when an outage prevents that placement, StorageGRID falls back to dual-commit protection and acknowledges the object. ILM subsequently creates the required EC7+5 placement when resources become available again.
all is inappropriate because it requires every metadata node to receive metadata immediately, reducing availability during failures. Therefore, D satisfies both immediate visibility of newly written logs and continued ingest during a site outage.
Reference topics: S3 Bucket Consistency # Read-after-new-write # ILM Ingest Behavior # Balanced vs Strict
# Erasure Coding # Multisite Availability


NEW QUESTION # 36
You are configuring a two-site StorageGRID solution to be the destination for mission-critical application data. You want the HA group to fail over from one site to the other in the event of a site failure.
How is the HA group configured?

Answer: B

Explanation:
A StorageGRID High Availability (HA) group provides active-backup access by assigning one or more virtual IP (VIP) addresses to the currently active interface. For site-level failover, the HA group includes suitable Admin Node or Gateway Node interfaces from both sites, and those interfaces must participate in a network design that allows the same VIP to move between sites. NetApp's StorageGRID site-failover guidance specifically describes including interfaces from Site 1 and Site 2 and assigning a VIP within the same subnet. If the preferred site's interface becomes unavailable, StorageGRID transfers the VIP to the next available interface at the other site.
Accordingly, the VIP subnet must be available across the participating sites; the same client-facing VIP remains usable after failover. StorageGRID requires the VIP and optional gateway to belong to the configured VIP subnet.
Option B is incorrect because multiple VIPs are not assigned as independent site-specific addresses for HA failover; all configured VIPs reside simultaneously on the active HA interface. Option C is invalid because the HA configuration requires IP addresses, not an FQDN. Option D confuses the optional gateway with the actual VIP.
Reference topics: Grid Manager # High Availability Groups # Multi-site HA # VIP Subnet # Primary and Backup Interfaces # Site Failover


NEW QUESTION # 37
During the design phase of a StorageGRID implementation project covering three geo-distributed sites, a requirement is identified to provide seamless access to object storage based on the proximity of the client to the nearest StorageGRID site.
Which solution meets the requirement?

Answer: C

Explanation:
A Global Server Load Balancer (GSLB) is the appropriate solution when StorageGRID client traffic must be intelligently directed among multiple geographically distributed sites. NetApp states that global load balancing integrates with DNS to provide intelligent routing across StorageGRID sites and can direct clients to the closest destination site, while also detecting site outages and redirecting requests to another available site. This global routing functionality is provided through a supported third-party load-balancing or DNS traffic-management solution.
A typical architecture combines GSLB at the global layer with site-local load balancers or StorageGRID Gateway Node HA groups. When an S3 client resolves the StorageGRID endpoint FQDN, the GSLB selects the appropriate site's virtual IP based on factors such as availability and network latency, thereby providing proximity-based client access.
Option B provides effective local site load balancing, but by itself does not choose the geographically closest site. Option A provides HA for interfaces within an HA group and is not a geographic traffic-management mechanism. Option C provides link-level redundancy and bandwidth aggregation rather than application-level site selection.
Therefore, D is the correct answer.
Reference topics: StorageGRID Load Balancing # Third-Party Load Balancers # Global Server Load Balancing (GSLB) # DNS-Based Site Selection # Geo-Distributed Client Access


NEW QUESTION # 38
To comply with an industry regulation, a bank is establishing a disaster recovery solution across two grids.
The tenant federation was successfully configured. You are required to unidirectionally replicate a critical bucket from Grid-1 to Grid-2 and ensure that all of the content is identical on each grid, to reestablish operations in the event that Grid-1 fails.
After creating a bucket with versioning enabled on each grid, what are the required steps to complete the task?

Answer: D

Explanation:
For unidirectional cross-grid replication, CGR must be enabled on the bucket in the grid that acts as the source. NetApp states that when CGR is enabled on only one grid, objects added to that source bucket are replicated automatically to the corresponding destination bucket on the other grid; objects written to the destination are not replicated back. Because the required direction is Grid-1 # Grid-2, CGR must therefore be enabled on Grid-1.
The administrator then selects the appropriate grid federation connection and sets Replicate delete markers = Yes. When an S3 client deletes an object without specifying a version ID, StorageGRID creates a delete marker. With this option enabled, that marker is replicated to Grid-2 so the object appears deleted on both grids, helping maintain matching bucket state. NetApp documents this as the default behavior.
Option A would configure bidirectional replication, which violates the unidirectional requirement. Option B reverses the required replication direction. Option D is incorrect because the relevant CGR configuration control is Replicate delete markers, not "Replicate metadata." Reference topics: Tenant Manager # Grid Federation # Cross-Grid Replication # Source and Destination Buckets # Versioning # Replicate Delete Markers


NEW QUESTION # 39
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