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| Section | Weight | Objectives |
|---|---|---|
| Topic 1: Data Protection and Availability | 20% | - Replication and erasure coding
|
| Topic 2: Installation and Deployment | 15% | - Planning and preparation
|
| Topic 3: StorageGRID Architecture and Components | 20% | - System architecture overview
|
| Topic 4: Configuration and Management | 25% | - Bucket and object management
|
| Topic 5: Monitoring, Troubleshooting and Maintenance | 20% | - Troubleshooting common issues
|
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NEW QUESTION # 19
An enterprise is expanding a single-site StorageGRID deployment and is adding new nodes on a new subnet.
What is a requirement for configuring the Grid Network?
Answer: D
Explanation:
When an existing StorageGRID deployment is expanded with nodes whose Grid Network IP addresses are on a subnet that has not previously been used, that subnet must be added to the Grid Network subnet list before the expansion is started. StorageGRID maintains this list so that every grid node can correctly route internal Grid Network traffic to the other participating subnets. NetApp StorageGRID 12.0 documentation explicitly states that if any new node uses a new Grid Network subnet, the administrator must add that subnet first; otherwise, the expansion must be cancelled, the subnet added, and the expansion restarted.
The configuration is performed in Grid Manager # Maintenance # Network # Grid Network, where the administrator selects Add another subnet and enters the network in CIDR notation. StorageGRID then distributes the routing configuration throughout the grid.
Option A is incorrect because routes do not need to be configured manually on every node. Option B is incorrect because a StorageGRID Gateway Node provides client load-balancing functions and is not an IP router between Grid Network subnets. Option D is also incorrect; StorageGRID explicitly supports multiple Grid Network subnets, provided they are routable through the configured Grid Network gateway.
Reference topics: StorageGRID Expansion # Grid Network # Grid Network Subnet List # Adding Nodes on New Subnets # Grid Network Routing
NEW QUESTION # 20
A customer wants to expand their existing StorageGRID system, which currently serves only cold data via FabricPool, to maximize usable object storage in a single-site installation.
Which actions achieve this?
Answer: D
Explanation:
For a capacity-focused FabricPool repository containing predominantly cold object data, the most efficient expansion method is to add a data-only Storage Node. StorageGRID 12.0 supports combined, metadata-only, and data-only Storage Nodes. A data-only node is dedicated to object-data storage and does not participate in Cassandra metadata storage, making it particularly appropriate when the primary objective is to maximize usable object capacity rather than increase metadata capacity. NetApp specifically describes data-only, high- capacity Storage Nodes as appropriate when dedicated capacity is required.
After the node is added, erasure-coded data can be rebalanced so that existing EC fragments are redistributed across the original and newly added Storage Nodes. NetApp states that EC rebalancing redistributes erasure- coded fragments among Storage Nodes at the site, allowing newly added capacity to be utilized by an existing EC protection scheme.
Option D adds usable capacity, but a combined node also provides metadata/Cassandra functionality that is unnecessary when the goal is specifically to maximize object-data capacity for a cold FabricPool workload.
Options B and C are not supported StorageGRID capacity-expansion strategies; appliance RAID/DDP configuration and SANtricity LUN sizing must not be arbitrarily changed to enlarge StorageGRID object storage.
Reference topics: StorageGRID Expansion # Data-only Storage Nodes # Object Capacity # Erasure Coding # EC Rebalancing # FabricPool Capacity Planning
NEW QUESTION # 21
A company is scaling its StorageGRID environment to support a massive increase in object count, aiming for trillions of objects over the next few years. They need an appliance model that can handle this significant increase in scale and performance demands.
Which NetApp StorageGRID appliance model takes advantage of the increased scaling limits?
Answer: C
Explanation:
The SG6160 is the best match for environments designed for very large-scale StorageGRID deployments.
StorageGRID 12.0 substantially increases overall platform scalability, supporting up to one trillion objects, more than twice the previous platform limit. This increase is enabled in part by a newer Cassandra version that stores object metadata more efficiently, allowing considerably larger object populations to be maintained.
The SG6160 is NetApp's higher-scale disk-based StorageGRID appliance. Its SG6100-CN compute controller provides 48 CPU cores and 256 GB of RAM, providing substantially more compute and memory resources for StorageGRID services than capacity-oriented SG5800 models. It also supports a 60-drive base shelf plus as many as two 60-drive expansion shelves, for a maximum of 180 drives per appliance. NetApp specifically positions the SG6160 and its expansion configuration for large-scale deployments, transactional small-object workloads, and data lakes.
The SG5812 and SG5860 are positioned primarily as cost-optimized secondary-storage platforms. The SG1100 is a services appliance used for Admin Node and Gateway Node functions and does not provide object-storage capacity.
Therefore, D. SG6160 is the appropriate selection for this scale-oriented requirement.
Reference topics: StorageGRID 12.0 Scalability # One-Trillion-Object Limit # Cassandra Metadata Scaling
# SG6100 Series # SG6160 Large-Scale Deployments
NEW QUESTION # 22
A customer owns a StorageGRID system that contains NetApp SG6160 and SG1100 appliances. The grid shows low utilization in terms of used space and performance.
Which two additional workloads are valid? (Choose two.)
Answer: A,C
Explanation:
The two valid additional workloads are file/data tiering and backup solutions. StorageGRID is an S3- compatible object-storage platform, and NetApp explicitly positions it for workloads such as data tiering, backup and disaster recovery, archive, analytics, and application object storage. NetApp FabricPool can automatically tier inactive data from ONTAP performance tiers to StorageGRID, which directly supports the file/data-tiering use case.
StorageGRID is also a well-established target for enterprise backup applications. NetApp documents integrations in which backup products use StorageGRID either as a primary object-storage backup destination or as a secondary/long-term retention tier. Its scalability, S3 interface, ILM capabilities, and high-throughput architecture make unused capacity and performance resources suitable for additional backup workloads.
Options A and D are not appropriate as stated. Production databases generally require transactional block or file storage characteristics, while virtualization datastores normally depend on block or NAS protocols such as SAN, NFS, or VMFS. StorageGRID instead exposes object storage through the S3 API and is not intended to act as a conventional database volume or hypervisor datastore.
Therefore, the correct choices are B and C.
Reference topics: StorageGRID Use Cases # FabricPool/Data Tiering # Backup and Recovery # S3 Object Storage # NetApp Solutions Integration
NEW QUESTION # 23
What is a purpose of the webhook integration feature in NetApp StorageGRID?
Answer: C
Explanation:
StorageGRID supports webhook endpoints as destinations for S3 bucket event notifications. The purpose is to allow external applications, automation systems, or data-processing workflows to react when configured S3 events occur, such as object creation or deletion. NetApp documents that a tenant can configure an external or locally hosted webhook endpoint that accepts HTTP POST notification requests. Platform-service messages are generated from StorageGRID and delivered to the configured endpoint, enabling event-driven application integration.
This makes B the correct answer. For example, after an object is uploaded to a bucket, StorageGRID can generate a notification that is delivered to a webhook. The receiving application can then start processing, indexing, transformation, compliance validation, or another automated workflow without continuously polling the bucket.
Option A describes Cloud Storage Pools/ILM-based external storage placement, not webhook integration.
Option C describes ONTAP SnapMirror orchestration, which is not the function of StorageGRID webhook notifications. Option D is also incorrect: webhook-based S3 event notifications are a tenant platform service, not a replacement for Grid-level alerting technologies such as SNMP, email notifications, and StorageGRID monitoring.
NetApp identifies platform services as including CloudMirror replication, bucket event notifications, and search integration, with webhook endpoints supported specifically for event-notification delivery.
Reference topics: Tenant Manager # Platform Services # S3 Event Notifications # Webhook Endpoints # HTTP/HTTPS POST # Event-Driven Integration
NEW QUESTION # 24
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