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NEW QUESTION # 35
An architect is updating an existing design to include a new vSphere cluster to meet the following customer requirements:
The solution must provide automatic load redistribution of workloads across all resources in the cluster The solution must consider the usage patterns of workloads when performing load redistribution The solution must provide capacity to reserve resources equal to two ESXi hosts for failover in the event of a host failure The architect has also collected the following assumptions and constraints during the design workshops:
A001 - Budget is available for additional hardware and software if required to meet the solution requirements A002 - Capacity is available to allow the deployment of additional tooling to manage the solution C001 - All management workloads must be deployed to the existing vSphere management cluster Which three design decisions should the architect include to meet the documented requirements? (Choose three.)
- A. The solution will deploy VMware Aria Operations to monitor the vSphere environment.
- B. The solution will deploy a Distributed Resource Scheduler (DRS) enabled cluster with sufficient capacity to meet the workload demands.
- C. The solution will enable the Predictive DRS option to avoid host over-commitment.
- D. The solution will enable the Memory Metric for Load Balancing option to avoid host over-commitment.
- E. The solution will deploy a vSphere Distributed Power Management (DPM) enabled cluster with sufficient capacity to meet the workload demands.
- F. The solution will enable the VM Distribution option to avoid host over-commitment.
Answer: A,B,C
Explanation:
Based on VMware vSphere 8.x Advanced documentation and the provided requirements, the architect is updating an existing vSphere design to include a new cluster that meets specific customer requirements:
automatic load redistribution of workloads across all resources in the cluster, consideration of workload usage patterns during redistribution, and capacity to reserve resources equivalent to two ESXi hosts for failover in the event of a host failure. The architect must also consider the assumptions (budget and capacity for additional hardware/software and tooling) and constraints (management workloads in the existing vSphere management cluster).
Requirements Analysis:
* Automatic load redistribution of workloads across all resources in the cluster: The solution must dynamically balance workloads (VMs) across ESXi hosts to optimize resource utilization and prevent over-commitment, typically achieved using vSphere Distributed Resource Scheduler (DRS).
* Consider usage patterns of workloads during load redistribution: The load balancing mechanism must account for historical or predicted resource usage (e.g., CPU, memory, or storage trends) to make informed migration decisions, requiring advanced analytics or predictive capabilities.
* Capacity to reserve resources equal to two ESXi hosts for failover: The cluster must maintain sufficient spare capacity to handle the failure of two hosts without impacting running workloads, implying a high-availability (HA) configuration with reserved resources.
* Assumptions:
* A001: Budget is available for additional hardware/software, allowing flexibility to add hosts, licenses, or tools like VMware Aria Operations.
* A002: Capacity exists for additional management tooling, supporting deployment of monitoring or analytics solutions.
* Constraint:
* C001: Management workloads must remain in the existing management cluster, meaning the new cluster is for compute workloads, and management tools must integrate with the existing vCenter.
Evaluation of Options:
* A. The solution will enable the Predictive DRS option to avoid host over-commitment:
* Why correct: Predictive DRS, available in vSphere 8 with VMware Aria Operations integration, uses historical and real-time workload usage patterns (e.g., CPU, memory, and network trends) to proactively redistribute VMs before resource contention occurs. This meets the requirement to consider workload usage patterns during load redistribution, as Predictive DRS leverages Aria Operations analytics to forecast demand and optimize VM placement. It complements standard DRS by preventing over-commitment, aligning with the goal of automatic load balancing.: VMware vSphere 8 documentation highlights Predictive DRS as an advanced feature requiring Aria Operations to enhance load balancing with predictive analytics.
B: The solution will enable the Memory Metric for Load Balancing option to avoid host over- commitment:
Why incorrect: The Memory Metric for Load Balancing option in DRS focuses primarily on balancing memory usage across hosts. While useful, it does not inherently consider broader workload usage patterns (e.
g., CPU, storage, or network trends) as required. Predictive DRS (option A) is more comprehensive, using Aria Operations to analyze multiple metrics, making this option redundant and less aligned with the requirement for usage pattern consideration.
C: The solution will deploy VMware Aria Operations to monitor the vSphere environment:
Why correct: VMware Aria Operations (formerly vRealize Operations) provides advanced monitoring, analytics, and capacity planning for vSphere environments. It is essential for Predictive DRS (option A), as it supplies the usage pattern data needed for proactive load balancing. Aria Operations also supports capacity management to ensure the cluster reserves resources for two host failures, meeting the failover requirement.
The assumption of available budget and capacity for tooling (A001, A002) supports deploying Aria Operations, and its integration with the existing management cluster (C001) ensures centralized monitoring.
Reference: VMware vSphere 8 documentation recommends Aria Operations for workload optimization, capacity planning, and enabling Predictive DRS.
D: The solution will enable the VM Distribution option to avoid host over-commitment:
Why incorrect: The VM Distribution option in DRS ensures VMs are spread across hosts to avoid concentrating too many VMs on a single host. While this aids in basic load distribution, it does not consider workload usage patterns (e.g., resource consumption trends) or provide predictive balancing. It is less sophisticated than Predictive DRS and does not fully meet the requirement for usage-pattern-based redistribution.
E: The solution will deploy a Distributed Resource Scheduler (DRS) enabled cluster with sufficient capacity to meet the workload demands:
Why correct: DRS is the core vSphere feature for automatic load redistribution, dynamically migrating VMs across hosts to balance CPU and memory resources. Enabling DRS on the new cluster ensures workloads are redistributed automatically, meeting the first requirement. Configuring the cluster with sufficient capacity (e.
g., N+2 host resources) addresses the failover requirement, reserving resources equivalent to two ESXi hosts.
The budget for additional hardware (A001) supports adding hosts to meet this capacity need. DRS also integrates with Predictive DRS and Aria Operations for enhanced balancing.
Reference: VMware vSphere 8 documentation emphasizes DRS for automatic load balancing and cluster capacity management.
F: The solution will deploy a vSphere Distributed Power Management (DPM) enabled cluster with sufficient capacity to meet the workload demands:
Why incorrect: Distributed Power Management (DPM) optimizes power consumption by powering off unused hosts during low demand and powering them back on as needed. While DPM can work with DRS, it focuses on power efficiency, not load redistribution based on usage patterns or failover capacity. Enabling DPM could introduce latency during host power-on, potentially conflicting with the requirement for immediate failover capacity equivalent to two hosts. DPM is irrelevant to the stated requirements.
Why A, C, and E are the Best Choices:
A (Predictive DRS): Addresses the requirement to consider workload usage patterns by using Aria Operations analytics to proactively balance VMs based on predicted resource demands, preventing over- commitment.
C (VMware Aria Operations): Provides the monitoring and analytics foundation for Predictive DRS and capacity planning, ensuring the cluster reserves resources for two host failures. It aligns with the assumptions of budget and tooling capacity.
E (DRS-enabled cluster): Enables automatic load redistribution across all cluster resources and supports capacity reservation for failover (N+2 design). It is the core mechanism for meeting the load balancing and failover requirements.
Example Configuration:
Cluster: Deploy a new vSphere cluster with DRS enabled, sized with N+2 hosts to reserve capacity for two host failures (e.g., if 10 hosts are needed for workloads, deploy 12).
Predictive DRS: Enable Predictive DRS in the DRS settings, integrated with Aria Operations to analyze workload usage patterns and proactively migrate VMs.
Aria Operations: Deploy Aria Operations in the existing management cluster (per C001), configured to monitor the new cluster, provide capacity analytics, and feed data to Predictive DRS.
HA: Configure vSphere HA with admission control to reserve capacity for two host failures, ensuring failover requirements are met.
Addressing Assumptions and Constraints:
A001 (Budget): Supports purchasing additional hosts for N+2 capacity and Aria Operations licensing.
A002 (Tooling capacity): Allows deployment of Aria Operations for monitoring and analytics.
C001 (Management workloads): Aria Operations is deployed in the existing management cluster, ensuring the new cluster is dedicated to compute workloads.
NEW QUESTION # 36
An architect is tasked with designing a repeatable edge hosting solution using VMware technologies that can be deployed to existing hotels across the world and operate independently of other locations.
During interviews with stakeholders, the architect notes the following information:
There are 123 hotels in total.
All hotels have a minimum of two 1 Gbps connections for guest Internet access.
The company operates hotels in four countries: Canada, USA, Cuba and Mexico.
The company is rebranding the hotels located in Mexico.
Which of these is a business factor that will impact this design?
- A. There are 123 hotels in total
- B. The company is rebranding the hotels located in Mexico.
- C. The company operates hotels in four countries: Canada, USA, Cuba and Mexico.
- D. All hotels have a minimum of two 1 Gbps connections for guest Internet access.
Answer: B
Explanation:
This is a business factor that will impact the design because rebranding the hotels in Mexico could lead to changes in the company's requirements, such as the need for new branding, updated infrastructure, or integration of new services. These factors will influence the design decisions related to the edge hosting solution, potentially requiring special configurations or considerations for these locations.
NEW QUESTION # 37
Which requirement would be classified as a functional requirement within the design documentation?
- A. Virtual machines must be restarted within 30 minutes of a host failure.
- B. The system must perform virtual machine backups through an API.
- C. The system must be able to scale to support 500 concurrent virtual machines.
- D. Virtual machines must be patched within one month of the patch release date.
Answer: C
NEW QUESTION # 38
An architect is designing a solution for an environment with a limited number of operating system licenses.
How should the architect design the virtual infrastructure to meet the operating system license requirements?
- A. Create rules to restrict placement of virtual machines to specified hosts.
- B. Place the hosts into a single cluster and enable automated placement of virtual machines.
- C. Create a resource pool and only put the virtual machines that need the operating system licenses within the pool.
- D. Use standalone ESXi hosts and only apply the operating system licenses to those hosts.
Answer: A
NEW QUESTION # 39
A company has a requirement that all production applications must have a maximum tolerable downtime (MTD) of one hour per month.
Which statement would be included in the physical design to support this requirement?
- A. vSphere Fault Tolerance (FT) will not be enabled for the production applications.
- B. Server hardware has already been purchased for the production applications.
- C. vSphere HA Host Failure Response will be set to Restart VMs.
- D. vSphere HA will be enabled on all clusters.
Answer: C
Explanation:
To meet the requirement of a maximum tolerable downtime (MTD) of one hour per month for production applications, the solution must ensure high availability and quick recovery of virtual machines (VMs) in the event of a host failure. Enabling vSphere High Availability (HA) with the Host Failure Response set to Restart VMs will automatically restart VMs on other hosts within the cluster inthe event of a host failure. This minimizes downtime and helps meet the MTD requirement by ensuring minimal disruption to production workloads.
NEW QUESTION # 40
An architect is tasked with designing a solution to monitor the operational state of a VMware Cloud Foundation environment through ad-hoc reporting and custom dashboards, alerts, and notifications.
Using VMware Validated Solutions, which validated solution can the architect leverage to meet this requirement?
- A. Private Cloud Automation for VMware Cloud Foundation
- B. Heath Reporting and Monitoring for VMware Cloud Foundation
- C. VMware Validated Design for VMware Cloud Foundation
- D. Intelligent Operations Management for VMware Cloud Foundation
Answer: B
Explanation:
Based on VMware vSphere 8.x Advanced documentation and VMware Validated Solutions resources, the architect needs a solution to monitor the operational state of a VMware Cloud Foundation (VCF) environment using ad-hoc reporting, custom dashboards, alerts, and notifications. VMware Validated Solutions are pre- tested, well-architected implementations designed to address specific use cases on VCF, providing detailed design, implementation, and operational guidance.
Requirement Analysis:
* Monitor operational state: The solution must provide visibility into the health, performance, and compliance of the VCF environment.
* Ad-hoc reporting and custom dashboards, alerts, notifications: The solution should leverage tools like VMware Aria Operations (formerly vRealize Operations) to deliver customizable monitoring and alerting capabilities.
* VMware Validated Solutions: The solution must be a specific validated solution tailored to VCF monitoring needs.
Evaluation of Options:
* A. Private Cloud Automation for VMware Cloud Foundation:
* Why incorrect: This validated solution focuses on deploying VMware Aria Automation (formerly vRealize Automation) to provide cloud automation services, such as self-service provisioning and orchestration for VCF. It addresses automation and workload deployment, not monitoring or reporting. It does not meet the requirement for ad-hoc reporting, dashboards, alerts, or notifications.: VMware Validated Solutions documentation notes Private Cloud Automation for VCF enables automation, not monitoring.
B: Intelligent Operations Management for VMware Cloud Foundation:
Why incorrect: This validated solution provides a centralized monitoring and alerting platform using VMware Aria Operations to proactively manage system metrics, events, and failures across VCF components.
While it includes dashboards and alerts, its primary focus is on centralized, proactive operations management rather than ad-hoc reporting or custom health monitoring. The Health Reporting and Monitoring solution is more specifically tailored to the requirement for ad-hoc and custom reporting.
Reference: Intelligent Operations Management for VCF focuses on centralized monitoring but is less specific to ad-hoc reporting compared to Health Reporting and Monitoring.
C: VMware Validated Design for VMware Cloud Foundation:
Why incorrect: VMware Validated Designs (VVD) are architectural frameworks for deploying Software- Defined Data Centers (SDDC), not specific validated solutions for VCF. They provide broad design guidance but do not focus on monitoring or delivering ad-hoc reporting, custom dashboards, alerts, or notifications.
This option is not a validated solution and does not meet the specific monitoring requirement.
Reference: VVDs are distinct from Validated Solutions and focus on overall SDDC architecture, not targeted monitoring solutions.
D: Health Reporting and Monitoring for VMware Cloud Foundation:
Why correct: This validated solution is explicitly designed to monitor the operational state of a VCF environment through ad-hoc reporting and custom dashboards, alerts, and notifications using VMware Aria Operations. It extends native Aria Operations dashboards with custom monitoring capabilities, including HTML reports and PowerShell-based reporting modules for operational insights. It directly addresses the requirement for health monitoring, ad-hoc reporting, and customizable alerts, making it the best fit.
Reference: The Health Reporting and Monitoring for VCF validated solution provides guidance on monitoring VCF components using custom dashboards, alerts, notifications, and ad-hoc reports via Aria Operations.
Why D is the Best Choice:
Specificity: Health Reporting and Monitoring for VCF is tailored to monitoring the operational state of VCF, with a focus on ad-hoc reporting and custom dashboards, alerts, and notifications, unlike the broader scope of Intelligent Operations Management.
Toolset: It leverages VMware Aria Operations with custom dashboards and a Python module for health monitoring, directly meeting the requirement for flexible, user-driven reporting and alerting.
Validated Solution: As a VMware Validated Solution, it provides detailed design, implementation, and operational guidance, ensuring a repeatable and tested approach for VCF monitoring.
Clarification on B vs. D:
While Intelligent Operations Management (B) also uses VMware Aria Operations for monitoring, it focuses on centralized, proactive management of system failures and metrics across VCF, with less emphasis on ad- hoc reporting or custom health-focused dashboards. Health Reporting and Monitoring(D) is more specific to the requirement, as it explicitly addresses ad-hoc reporting and custom monitoring extensions, making it the precise match.
Final answer:
Dis the validated solution the architect should leverage to meet the requirement for monitoring the operational state of a VMware Cloud Foundation environment.
NEW QUESTION # 41
The Chief Operating Officer (COO) at an organization raises concerns that their virtual infrastructure environment is vulnerable. Recently, a security-related issue with a virtual machine caused all management services to become unavailable. No budget is available in the short term for additional platform investment. An architect is asked to review the current environment and make recommendations to mitigate concerns.
A virtualization administrator has provided the following details:
- There is a single four node cluster of ESXi servers
- There are two, Layer 2, physical network switches connecting resources
- The data center network is presented as a single /16 subnet
Given the information provided, which functional requirement should the architect include in the design to mitigate the COOs concerns?
- A. The virtual infrastructure environment must connect application virtual machines and management services to new physical network switches
- B. The virtual infrastructure environment must connect application virtual machines and management services to separate VLANs
- C. The virtual infrastructure environment must connect application virtual machines and management services to separate distributed virtual switches (DVS)
- D. The virtual infrastructure environment must connect management services to a vSphere standard switch (VSS)
Answer: B
Explanation:
VLANs let you segment a network into multiple logical broadcast domains at Layer 2 of the network protocol stack.
https://docs.vmware.com/en/VMware-vSphere/7.0/com.vmware.vsphere.networking.doc/GUID- C42AFA4A-1BDA-4ECC-B2D1-6E538771B2C3.html
NEW QUESTION # 42
An architect is tasked with designing a new VMware software-defined data center (SDDC) using VMware vSAN. The architect uses a storage assessment tool to determine the storage requirements for the new vSAN cluster. The new SDDC is going to be deployed into the existing data center and must be connected to a shared core network switch.
The architect decides to use vSAN ReadyNodes with the following configuration:
Two disk groups with:
- Write Intensive NVMe 800 GB drive for cache
- Four 3.84 TB Mixed Use NVMe for capacity
- Four 10 GbE ports
Which element represents a risk that should be included in this design?
- A. The number of 10 GbE capable ports in the vSAN ReadyNode
- B. The use of vSAN ReadyNodes
- C. The existing network is 10 GbE capable
- D. The use of NVMe drives for cache and capacity
Answer: C
NEW QUESTION # 43
What is the purpose of creating a vSphere host logical design?
- A. To ensure the design meets the required industry regulations and standards.
- B. To determine the hardware and infrastructure requirements for vSphere hosts.
- C. To provide an abstract representation of vSphere hosts and their interrelationships.
- D. To identify the specific tasks and operations vSphere hosts should perform.
Answer: C
NEW QUESTION # 44
Which of the listed requirements would be classified as a recoverability non-functional requirement?
- A. The platform must be able to support a maximum tolerable downtime (MTD) of 30 minutes.
- B. Maintenance windows must be scheduled to take place monthly during an established overnight period.
- C. The platform must be available 24 hours a day, 7 days a week with the exception of scheduled downtime.
- D. The platform must be integrated with existing change control policies.
Answer: A
Explanation:
Recoverability - Easy to restore after an outage
Mesurements : MTD, RPO, RTO
NEW QUESTION # 45
What does a single-site deployment design entail?
- A. Deploying vCenter Server on multiple physical servers for load balancing.
- B. Deploying vCenter Server on a single virtual machine.
- C. Deploying vCenter Server in a highly available configuration within a single data center.
- D. Deploying vCenter Server across multiple data centers in different regions.
Answer: C
NEW QUESTION # 46
An architect is reviewing a physical storage design. The customer has specified that storage DRS will be used for ease of operational management for capacity and performance.
Which recommendation should the architect include in the design?
- A. Create larger datastores to balance space with Storage DRS
- B. Create more datastores within each Storage DRS cluster to balance space and performance
- C. Use a larger number of storage profiles (varied disk speeds and RAID levels) to improve performance
- D. Create smaller datastores to balance space with Storage DRS
Answer: B
NEW QUESTION # 47
When performing a vSphere upgrade, what is the best practice to ensure compatibility with existing hardware, software, and third-party plugins?
- A. Upgrade the vCenter Server first, followed by ESXi hosts
- B. Upgrade ESXi hosts first, followed by the vCenter Server
- C. Perform a clean installation of vSphere components on new hardware
- D. Disconnect all third-party plugins before starting the upgrade process
Answer: B
NEW QUESTION # 48
What is the primary purpose of analyzing non-functional requirements for a vSphere design?
- A. To identify the specific tasks and operations the vSphere system should perform.
- B. To evaluate aspects such as security, performance, and disaster recovery for the vSphere design.
- C. To ensure the vSphere system complies with relevant regulations and standards.
- D. To determine the hardware specifications and infrastructure needs.
Answer: B
NEW QUESTION # 49
An architect is designing a new vSphere-based solution for a customer.
During a requirement gathering workshop, the following information is provided:
The solution must have a primary and secondary site.
The solution must support a maximum of 1,000 concurrent workloads.
The profile of the workloads are as follows:
- Production Workloads
-- 300 x Small: 1 vCPU, 2 GB RAM
-- 400 x Medium: 2 vCPU, 6 GB RAM
-- 100 x Large: 4 vCPU, 8 GB RAM
- Development Workloads
-- 200 x Small: 1 vCPU, 2 GB RAM
The corporate security policy states that, during normal operations, production workloads must be physically segregated from development workloads.
All production workloads are split evenly across the primary and secondary site.
All development workloads run only within the secondary site.
In the event of a disaster affecting workloads in the primary site, the secondary site must be capable of running all production and development workloads.
The vCPU to physical core ratio should be a maximum of 10:1 for production workloads and 20:1 for development workloads.
The solution should provide a minimum of N + 1 resiliency at each component level.
The target physical host hardware platform has already been defined by the company's hardware standards and therefore each host has the following configuration:
-- 2 x 24 physical cores
-- 768 GB RAM
-- 2 x 100 GB SSD drives
-- 6 x 10 GbE network cards
What is the minimum number of hosts required to meet the requirements?
- A. 0
- B. 1
- C. 2
- D. 3
Answer: D
Explanation:
1. Production Workloads:
300 x Small: 1 vCPU, 2 GB RAM
400 x Medium: 2 vCPU, 6 GB RAM
100 x Large: 4 vCPU, 8 GB RAM
TotalvCPUsrequired for production:
Small: 300 x 1 = 300 vCPUs
Medium: 400 x 2 = 800 vCPUs
Large: 100 x 4 = 400 vCPUs
Total production vCPUs= 300 + 800 + 400 =1,500 vCPUs
2. Development Workloads:
200 x Small: 1 vCPU, 2 GB RAM
Total vCPUsrequired for development:
Small: 200 x 1 =200 vCPUs
3. Workload Distribution:
Production workloads are split evenly across the primary and secondary site:750 vCPUs per site(1,500/2).
All development workloads run in the secondary site:200 vCPUs.
4. vCPU to Physical Core Ratio:
Production workloads:10:1 ratio(vCPU to core ratio).
Development workloads:20:1 ratio(vCPU to core ratio).
5. Hosts Configuration:
Each host has24 physical coresand768 GB of RAM.
Since the maximum vCPU-to-core ratio for production is 10:1, each host can support240 vCPUs(24 cores x
10).
For development, with a ratio of 20:1, each host can support480 vCPUs(24 cores x 20).
6. Host Calculation:
Production Workloads(750 vCPUs per site):
750 vCPUs for production divided by 240 vCPUs per host =3.125 hosts(rounding up =4 hostsper site for production).
Development Workloads(200 vCPUs):
200 vCPUs divided by 480 vCPUs per host =0.416 hosts(rounding up =1 hostfor development).
7. Resiliency:
N + 1 resiliencymeans we need one extra host per site to provide redundancy.
8. Total Hosts:
4 hostsfor production in the primary site.
4 hostsfor production in the secondary site.
1 hostfor development in the secondary site.
1 additional hostfor N + 1 resiliency in both sites.
Total hosts required= 4 (primary production) + 4 (secondary production) + 1 (secondary development) + 2 (N
+ 1) =12 hosts.
NEW QUESTION # 50
The DevOps team at an organization is preparing to build and package virtual machine (VM) images that will be added to a content library for a new vSphere environment. Users will deploy virtual machines from the content library.
The solutions architect is gathering requirements to help the DevOps team decide between the use of VM templates versus Open Virtualization Format (OVF) templates in the content library.
Which requirement would influence the design decision to use OVF templates in the content library?
- A. Templates must be encrypted.
- B. Templates must be automatically migrated to another ESXi host when a host is inaccessible.
- C. vSphere Storage DRS must be supported.
- D. Templates must be able to support license agreement acceptance during deployment.
Answer: D
NEW QUESTION # 51
An architect is finalizing the design for a new vCenter Server High Availability deployment.
What is one thing the architect must document in the design?
- A. The details of each of the vCenter Server licenses for active, passive and witness nodes
- B. The load balancing algorithm used by the Management Distributed Virtual Switches (DVS)
- C. The SSH configuration settings for the vCenter Server's active node
- D. The vCenter Management Network IPv4 addresses for the witness node vCenter Server
Answer: C
NEW QUESTION # 52
The architect for a large enterprise is tasked with reviewing a proposed design created by a service partner.
Which design elements are expected to be detailed within the physical design section of the documentation?
- A. A design diagram illustrating the configuration and specific attributes, such as IP addresses
- B. An entity relationship diagram describing upstream and downstream dependencies for specific service components
- C. A list of requirements, constraints, and risks
- D. A solution architecture diagram with the components and data flow
Answer: A
Explanation:
The physical design is based on the logical design. The physical design includes specific hardware from specific vendors. This design also lists specific configurations for each of the components that are deployed.
NEW QUESTION # 53
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VMware 3V0-21.23 Exam Syllabus Topics:
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