Cohesity Certified Protection Associate - MultiCloud (COH150) Practice Test

CCPA-MultiCloud test Format | Course Contents | Course Outline | test Syllabus | test Objectives

Exam Code: COH150
Speciality: Specialty Cohesity Certified Protection Associate - Multicloud
Exam Name: Cohesity Certified Protection Associate - Multicloud
Exam Duration: 90 minutes
Expiration: 2 years
Language: English
Passing Score: 58%

Domain 1: Cohesity Cloud Concepts (21.67%)

- Describe the supported delivery models for the Cohesity platform (e.g.- on-premises- cloud-native).
- Identify Cohesity cloud solutions (e.g.- CloudArchive- CloudTier- CloudSpin).
- Describe the use cases for Cohesity cloud solutions (e.g.- DR- cost optimization).
- Identify native Cohesity cloud features (e.g.- integration with AWS- Azure- GCP).
- Identify the difference between archiving and tiering with Cohesity.
- Describe cloning and moving VMs to the public cloud using CloudSpin.
- Identify cloud-based disaster recovery features.
- Describe the use cases for CloudArchive.

Key Terminologies:
- Delivery models (e.g.- Virtual Edition- Cloud Edition)
- cloud solutions (e.g.- CloudArchive for long-term retention- CloudTier for cold data offload)
- archiving (permanent offload for compliance)
- tiering (temporary offload for performance/cost)
- CloudSpin (VM migration/cloning to cloud)
- disaster recovery (DR- failover to cloud)

Domain 2: Archiving with Cohesity (20%)

- Describe how Cohesity’s archive function can support disaster recovery.
- Identify the workflows used when working with CloudArchive (e.g.- policy setup- target selection).
- Describe the options for CloudArchive External Targets (e.g.- AWS S3- Azure Blob).
- Describe the recovery options available for organizations that use CloudArchive (e.g.- full/granular restore).
- Describe the disaster recovery process using CloudRetrieve.
- Identify CloudArchive Direct configuration options (e.g.- direct-to-cloud archiving).

Key Terminologies:
- CloudArchive (archiving service to external targets)
- workflows (step-by-step processes)
- External Targets (storage destinations like public clouds)
- CloudRetrieve (search/recovery from archived data)
- CloudArchive Direct (bypassing local storage)

Domain 3: Tiering with Cohesity (10%)

- Describe the benefits of tiering to the cloud using CloudTier (e.g.- cost savings- scalability).
- Describe CloudTier configuration options (e.g.- thresholds for data movement).
- Describe how to configure an external target for CloudTier.
- Identify the workflows used when working with CloudTier.
- Describe the options available for CloudTier (e.g.- encryption- compression).

Key Terminologies:
- CloudTier (automated data movement to cloud)
- configuration options (e.g.- age-based policies)
- external target (cloud storage for tiered data)

Domain 4: Cloud-native Backups with Cohesity (15%)

- Describe how to configure Cohesity for native operation in AWS- Azure- or GCP (e.g.- instance setup).
- Describe how networking with Cohesity running native in the cloud is different than on-premises (e.g.- VPCs- security groups).
- Identify supported cloud-native backup operations (e.g.- snapshot management- app protection).

Key Terminologies:
- Native operation (running Cohesity directly in cloud)
- networking (cloud-specific configs like subnets)
- cloud-native backup (protecting cloud workloads)

Domain 5: Cloud Migration with Cohesity (8.33%)

- Identify the use cases for moving VMs to and from the public cloud using CloudSpin (e.g.- DR testing- migration).
- Describe CloudSpin configuration operations (e.g.- policy setup).
- Describe how to perform a CloudSpin operation.
- Describe how to use the dev/test clone feature using CloudSpin.

Key Terminologies:
- CloudSpin (as above)
- configuration operations (setup steps)
- dev/test clone (non-prod VM copies in cloud)

Domain 6: Deployment Considerations (25%)

- Describe different types of cloud storage supported by CloudArchive (e.g.- standard- glacier).
- Deployment prerequisites for configuring CloudArchive with public cloud providers (e.g.- IAM roles).
- Identify requirements for deploying and running Cohesity natively in public cloud providers such as AWS- Azure- and GCP (e.g.- instance types).
- Identify the additional features that are available when you have deployed the Cohesity platform both on-premises and in the cloud (e.g.- hybrid replication).
- Identify the registration requirements for cloud sources (e.g.- API keys).
- Identify the SaaS applications that can be protected using the Cohesity platform (e.g.- Microsoft 365- Salesforce).

Key Terminologies:
- Cloud storage types (e.g.- S3 Standard- Azure Cool)
- deployment prerequisites (e.g.- permissions)
- hybrid deployment (on-prem + cloud)
- registration requirements (e.g.- credentials)
- SaaS applications (cloud-based apps for protection)

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COHESITY
CCPA MultiCloud COH150
Cohesity Certified Protection Associate - MultiCloud
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Question: 1118
Which command would you use to check the status of a CloudArchive job in Cohesity?
A. list-cloudarchive-jobs
B. get-cloudarchive-status
C. show-cloudarchive-job-status
D. check-cloudarchive-job
Answer: A
Explanation: The command `list-cloudarchive-jobs` allows users to view the status of
CloudArchive jobs and their details in Cohesity.
Question: 1119
You are reviewing a CloudSpin operation that failed due to insufficient permissions.
What action should be taken to resolve this issue?
A. Increase the storage capacity in the cloud
B. Restart the CloudSpin service
C. Review and modify user access permissions
D. Change the destination cloud provider
Answer: C
Explanation: To resolve permission issues that caused the CloudSpin operation to fail, it
is important to review and modify user access permissions to ensure that the necessary
rights are granted for the operation.
Question: 1120
An e-commerce company operating a hybrid multicloud setup with Cohesity clusters on-
premises and in Azure faces a regional outage in their primary data center, requiring
invocation of DRaaS to spin up EC2 instances from replicated snapshots while adhering
to PCI DSS requirements for immutable backups. Which SiteContinuity parameters and
settings must be applied in the DR plan to ensure pay-as-you-go AWS infrastructure
activation and rapid recovery of 200 Kubernetes pods?
A. Set up DRaaS failover orchestration with AWS Auto Scaling Groups parameterized
for pod deployment, enabling immutable WORM snapshots with 90-day retention via
FortKnox integration
B. Configure near-sync replication policies in SiteContinuity with RTO sliders set to 10
minutes, using CloudReplicate to propagate changes to Azure as a tertiary site for PCI
compliance auditing
C. Activate SaaS-based automated failback with ML-driven recommendations for clean
recovery points, specifying EC2 instance types (e.g., m5.4xlarge) and integrating with
Azure Site Recovery for hybrid validation
D. Enable CDP with log consolidation every 30 seconds and post-failover Bash scripts to
orchestrate Kubernetes pod restarts using kubectl apply commands on EKS clusters
Answer: A, D
Explanation: DRaaS in SiteContinuity leverages pay-as-you-go AWS EC2 via Auto
Scaling Groups for dynamic pod scaling, with FortKnox ensuring PCI DSS immutable
WORM snapshots for 90-day retention during failover. CDP with 30-second log
consolidation provides near-zero RPO for Kubernetes data, while Bash scripts automate
post-failover kubectl commands to restart 200 pods efficiently, minimizing downtime in
hybrid environments.
Question: 1121
In a scenario where data is tiered to an external cloud storage, which of the following
statements is true regarding data retrieval?
A. Retrieving data from the cloud incurs additional costs and may take time.
B. Data retrieval from the cloud is instant and does not incur any delays.
C. Data cannot be retrieved once it is tiered to the cloud.
D. All data in the cloud is automatically replicated back to the on-premises system.
Answer: A
Explanation: When data is tiered to an external cloud storage, retrieving that data can
incur additional costs and may take time, as it involves moving data back from the cloud
to the on-premises environment.
Question: 1122
Which feature of CloudSpin allows users to create multiple copies of a VM for testing
and development purposes?
A. Snapshot management
B. Backup scheduling
C. Dev/test clone
D. Policy enforcement
Answer: C
Explanation: The dev/test clone feature of CloudSpin allows users to create multiple
copies of a VM for testing and development purposes, enabling safe experimentation
without affecting the original VM.
Question: 1123
A Cohesity setup for climate modeling tiers sim outputs to Azure Geo Zone Redundant
Cool at 79% utilization with 110-day coldness, but model iterations fail from 7-hour
rehydrations. Which zonal configs would minimize, supporting climate-scale sims and
GZRS resilience?
A. Enable zone-aware prefetch with --zone-prefetch enabled --zones 1,2,3
B. Drop coldness to 95 days and use LRS for intra-zone speed
C. Configure GZRS with standard rehydration only
D. Pre-tier models to Hot during iteration phases
Answer: A, B
Explanation: Zone-aware --zone-prefetch enabled --zones 1,2,3 anticipates rehydrations
for faster iterations, scaling with GZRS. 95-day coldness with LRS boosts speed for
modeling. GZRS standard is default, and pre-tiering to Hot increases costs unnecessarily.
Question: 1124
DR process for CloudRetrieve from Azure Archive to AWS cluster, 320TB load. Steps
for zero-downtime failover simulation?
A. Simulate: --dry-run-retrieve=true with load balancer attach
B. Orchestrate: Runbook --failover-zero-dt=true --test-mode
C. Sync: --delta-sync=true pre-full for ongoing changes
D. Validate: --ha-check=true post-sim for cluster health
Answer: B, C, D
Explanation: Runbook --failover-zero-dt=true simulates in test-mode. --delta-sync=true
minimizes data gap. --ha-check validates health post. Dry-run tests retrieve but not full
failover.
Question: 1125
What is a critical aspect to consider when using CloudSpin for data recovery in a
multicloud environment?
A. Data must be restored to the original location
B. It only supports AWS cloud services
C. Data encryption is not supported
D. Recovery time objectives (RTO) can be significantly reduced
Answer: D
Explanation: CloudSpin can significantly reduce recovery time objectives (RTO) by
enabling quick restoration of virtual machines in a multicloud environment.
Question: 1126
In a scenario where a VM is cloned for development purposes using CloudSpin, which of
the following should be considered regarding the original VM's data?
A. The cloned VM will have access to the original VM's data.
B. The cloned VM will not affect the original VM's performance.
C. The data in the cloned VM will be automatically encrypted.
D. The original VM's data will be deleted after cloning.
Answer: B
Explanation: The cloned VM will not affect the original VM's performance, allowing
development work to proceed without impacting production workloads.
Question: 1127
In a scenario where a financial services firm experiences a ransomware attack on their
primary VMware vSphere cluster, they initiate a failover to AWS using Cohesity
SiteContinuity for DR. The cluster has replicated snapshots with near-sync replication
enabled, and the DR plan includes automated orchestration for 50 critical VMs. Which of
the following steps must be executed in sequence during the failover process to ensure
minimal data loss and seamless transition to Amazon EC2 instances?
A. Activate the DR plan in the SiteContinuity GUI, triggering format conversion from
VMDK to AMI
B. Manually provision EC2 instances in the AWS account prior to failover initiation
C. Validate the recoverability index using ML-based recommendations on the replicated
snapshots
D. Enable continuous data protection (CDP) post-failover to capture any delta changes
during the outage
Answer: A,C,D
Explanation: Activating the DR plan in the SiteContinuity GUI automatically triggers the
failover orchestration, including seamless format conversion from VMDK to AMI for
compatibility with Amazon EC2, ensuring the VMs spin up ready-to-run in the cloud.
Validating the recoverability index with machine learning-based recommendations
identifies the cleanest point-in-time snapshot for failover, minimizing data loss to near-
zero RPO. Enabling continuous data protection (CDP) post-failover ensures ongoing
capture of any incremental changes during the outage, facilitating efficient failback
without data gaps. Manual provisioning of EC2 instances is unnecessary as
SiteContinuity automates the spin-up using pay-as-you-go AWS infrastructure in the
customer's account.
Question: 1128
In R&D, a pharma company sets up dev/test clones of 110 lab VMs in Azure from GCP
for drug simulation. Which steps integrate with Azure Batch for HPC jobs?
A. Clone with --batchPoolId sim-pool --vmSize Standard_D4s_v3 --nodeCount 20 --
taskJson /path/to/sim-task.json
B. Register Azure Batch with --accountName batch-pharma --key primary --endpoint
https://batch-pharma.eastus.batch.azure.com
C. Configure policy with --hpcIntegration true --jobQueue high_priority --dataTransfer
azcopy --masking proprietary_compounds
D. Runbook with --submitBatch az batch job create --poolId sim-pool
Answer: A, B
Explanation: Cloning to --batchPoolId with --vmSize and --nodeCount schedules HPC
simulations. Registering Batch account with --accountName and --endpoint enables API-
driven job submission.
Question: 1129
During an unplanned outage in a retail chain's data center, the Cohesity team executes a
CloudSpin operation to recover 40 POS VMs to Azure Stack HCI. The VMs have custom
drivers and require guest customization. What sequential steps ensure a successful
operation with RTO under 20 minutes?
A. Trigger failover from Cohesity UI selecting Azure Stack target, auto-converting
VMDK to VHDX with --customize-guest=true for driver injection
B. Pre-run 'cohesity-cli agent install --target=azurestack --physical' on recovery VMs,
then monitor via dashboard with threshold alerts for 95% completion
C. Validate network mappings in the wizard to bridge POS VLANs, executing post-spin
PowerShell scripts for license reactivation via Azure Automation
D. Initiate manual replication sync with 'cohesity-cli replicate force --job=', importing
VHDX directly to HCI storage pools before launch
Answer: A, C
Explanation: UI-triggered failover with guest customization handles driver issues for
quick VMDK-to-VHDX conversion. Network mapping and post-spin PowerShell ensure
connectivity and licensing, achieving sub-20-minute RTO for POS recovery.
Question: 1130
A user is tasked with ensuring that all data sent to the cloud is both compressed and
encrypted. What should they do first?
A. Enable data encryption
B. Enable data compression
C. Set a data retention policy
D. Configure a protection policy
Answer: D
Explanation: Configuring a protection policy is the first step, which allows the user to
enable both data compression and encryption settings for the data being sent to the cloud.
Question: 1131
What is a key consideration when choosing between CloudRetrieve and traditional
recovery methods?
A. Cost of storage
B. Data type compatibility
C. Speed of recovery
D. User training requirements
Answer: C
Explanation: The speed of recovery is a key consideration when choosing between
CloudRetrieve and traditional recovery methods, as CloudRetrieve typically offers faster
access to archived data.
Question: 1132
An organization is planning to use Cohesity to manage their backup and archive
strategies in a multi-cloud environment. What is a significant advantage of using Cloud
Edition in this scenario?
A. Increased hardware maintenance
B. Seamless integration with public clouds
C. Limited scalability
D. Higher operational costs
Answer: B
Explanation: The Cloud Edition offers seamless integration with public cloud services,
making it advantageous for organizations managing backup and archive strategies in a
multi-cloud environment.
Question: 1133
Which of the following best describes the role of age-based policies in managing data
tiers?
A. They restrict access to data
B. They dictate when data should be moved to lower-cost storage
C. They determine how often data is backed up
D. They enhance data encryption
Answer: B
Explanation: Age-based policies dictate when data should be moved to lower-cost
storage, allowing organizations to manage their storage resources effectively based on
data age.
Question: 1134
When configuring an external target for tiered data, which of the following cloud storage
types is NOT typically supported by Cohesity?
A. Amazon S3
B. Microsoft Azure Blob Storage
C. Google Drive
D. IBM Cloud Object Storage
Answer: C
Explanation: Cohesity typically supports cloud storage types such as Amazon S3,
Microsoft Azure Blob Storage, and IBM Cloud Object Storage, but Google Drive is not
typically supported for tiered data.
Question: 1135
In a DevOps pipeline, CloudTier offloads container images to MinIO S3 after builds, but
CI/CD pulls fail due to recall queues. Which options resolve?
A. Prioritize recall queues with "priority: HIGH" in policy for build views.
B. Use multi-threaded recall with "threads: 16" for image layers.
C. Disable encryption for internal MinIO to speed transit.
D. Enable prefetch caching for frequent image tags.
Answer: A, B
Explanation: High-priority queues in policies fast-track CI/CD recalls. 16-thread multi-
recall handles layered images concurrently, reducing pipeline delays.
Question: 1136
For a retail chain's CloudArchive Direct setup archiving POS data directly to GCP
Coldline, the config includes no local backups and metadata indexing. What External
Target options support hybrid full/granular restores to either AWS or on-premises
clusters?
A. Target Protocol: S3-Compatible with multi-region replication enabled
B. Metadata Retention: Infinite with index format JSON for cross-cloud search
C. Recovery Endpoint: Configure IAM for AWS STS assume-role in retrieve policy
D. Tiering Policy: Auto-transition to Archive after 30 days with recall fee optimization
Answer: A, B, C
Explanation: S3-Compatible protocol for GCP Coldline allows multi-region replication,
supporting restores to AWS or on-premises. Infinite metadata retention with JSON
indexing enables consistent search across environments. IAM configuration for AWS
STS assume-role in the retrieve policy secures cross-cloud access for full or granular
operations. Tiering optimizes costs but does not impact restore endpoints.
Question: 1137
What is the primary benefit of using External Targets for archiving in Cohesity?
A. Enhanced security features
B. Cost-effective storage
C. Improved data retrieval speed
D. Automatic backup scheduling
Answer: B
Explanation: External Targets allow organizations to utilize cost-effective storage
solutions, such as public clouds, for archiving data, which can significantly reduce
overall storage costs.
Question: 1138
In a telecom provider's setup, Cohesity archives call detail records (CDRs) from
Cassandra clusters to external Wasabi targets with v2 incremental forever, incorporating
AI-driven anomaly detection for fraud. The workflow runs bi-hourly with 99.999%
durability SLA. Which features optimize for high-volume CDRs and detection?
A. Target config: --wasabi true --v2 forever --anomaly-ai enabled, durability 99.999
B. Policy: bihourly-run, retain 2y, ai-scan post-archive with fraud-pattern thresholds at
0.1%
C. CLI: `policy_ai --source cassandra --target wasabi://cdr-bucket --incremental v2 --ai-
fraud true --threshold 0.1 --durability 5nines`
D. Set metadata enrichment for CDR timestamps, integrating with external SIEM via
webhook alerts on anomalies
Answer: A, C
Explanation: The target config --wasabi true --v2 forever --anomaly-ai enabled and
99.999 durability supports high-volume CDR archival with built-in AI for fraud patterns
in incremental workflows. The CLI `policy_ai --source cassandra --target wasabi://cdr-
bucket --incremental v2 --ai-fraud true --threshold 0.1 --durability 5nines` tunes bi-hourly
runs and 0.1% thresholds, ensuring SLA compliance and proactive detection.
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