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NEW QUESTION # 60
What are three Palo Alto Networks VM-Series firewall reference architecture deployment models? (Choose three.)
Answer: A,C,D
Explanation:
Palo Alto Networks provides various reference architectures for deploying VM-Series firewalls in different cloud environments. Let's examine the options:
* A: Cloud NGFW for AWS: Combined Model: While Cloud NGFW is an offering, the term
"Combined Model" isn't a standard, documented reference architecture name. Cloud NGFW for AWS focuses on simplified deployment and management but doesn't use this specific terminology for its deployment models.
* B: AWS VM-Series: Isolated Transit Gateway: This is a VALID deployment model. It involves deploying VM-Series firewalls in an isolated VPC connected to AWS Transit Gateway. This provides centralized security inspection for traffic flowing between different VPCs and on-premises networks connected to the Transit Gateway.
NEW QUESTION # 61
A company has used software NGFW credits to deploy several VM-Series firewalls with Advanced URL Filtering in the company's deployment profiles. The IT department has determined that the firewalls no longer need the Advanced URL Filtering license.
How can this license be removed from the hosts?
Answer: C
Explanation:
Software NGFW credits and deployment profiles manage licenses for VM-Series firewalls.
A . Edit the current deployment profile to remove the Advanced URL Filtering license: This is the correct approach. Deployment profiles are used to define the licenses associated with VM-Series firewalls. Modifying the profile directly updates the licensing for all firewalls using that profile.
B . On the firewall, issue this command: > delete url subscription license: This command does not exist. Licenses are managed through the deployment profile, not directly on the firewall via CLI in this context.
C . Add a new deployment profile with all the licenses selected except Advanced URL Filtering: While this would work, it's less efficient than simply editing the existing profile.
D . Delete the current deployment profile from the cloud service provider: This is too drastic. Deleting the profile would remove all licensing and configuration associated with it, not just the Advanced URL Filtering license.
NEW QUESTION # 62
Which tool can be used to deploy a CN-Series firewall?
Answer: D
Explanation:
Comprehensive and Detailed In-Depth Step-by-Step Explanation:The CN-Series firewall is a containerized next-generation firewall designed to secure workloads in containerized environments, particularly those running on Kubernetes. According to the Palo Alto Networks Systems Engineer Professional - Software Firewall documentation, the primary tool for deploying CN-Series firewalls is Kubernetes, as it integrates natively with Kubernetes clusters to provide security for containerized applications.
* Kubernetes (Option B): Kubernetes is the orchestration platform used to deploy, manage, and scale CN- Series firewalls within containerized environments. It allows for dynamic scaling and integration with container workloads, ensuring security policies are applied consistently across pods and services.
Options A (GCP Automated Deployment Services), C (Docker Swarm), and D (Terraform Automated Deployment Services) are incorrect. While GCP Automated Deployment Services and Terraform can be used for automation, they are not specific to CN-Series deployment in the context of Kubernetes. Docker Swarm, while a container orchestration platform, is not supported for CN-Series firewalls, as Palo Alto Networks focuses on Kubernetes for CN-Series deployment.
References: Palo Alto Networks Systems Engineer Professional - Software Firewall, Section: CN-Series Deployment Guide, Kubernetes Integration Documentation.
NEW QUESTION # 63
Which two features offer the ability to manage Cloud NGFW in Azure or AWS? (Choose two.)
Answer: A,C
Explanation:
Comprehensive and Detailed In-Depth Step-by-Step Explanation:The Cloud NGFW (Next-Generation Firewall) for AWS and Azure is a cloud-native security service that requires specific tools for management and configuration. According to the Palo Alto Networks Systems Engineer Professional - Software Firewall documentation, the following features are used to manage Cloud NGFW in these public cloud environments:
* Palo Alto Networks Ansible playbooks (Option B): Ansible is an automation tool that Palo Alto Networks supports for managing Cloud NGFW deployments. Ansible playbooks use the XML API to automate configuration changes, policy enforcement, and monitoring for Cloud NGFW in AWS and Azure. This allows for scalable and repeatable management, reducing manual effort and ensuring consistency across deployments. The documentation highlights Ansible as a key automation tool for cloud-native firewalls, including Cloud NGFW.
* Panorama (Option C): Panorama is Palo Alto Networks' centralized management platform for firewalls, including Cloud NGFW. It provides a unified interface for managing policies, configurations, and logs for Cloud NGFW instances in AWS and Azure. Panorama integrates with the cloud provider's APIs to ensure seamless management, offering features like policy push, logging, and reporting. This is a standard practice for customers requiring centralized control over their cloud security infrastructure.
Options A (Azure Firewall Portal) and D (AWS Firewall Manager) are incorrect. The Azure Firewall Portal is specific to Microsoft Azure's native firewall and does not manage Palo Alto Networks Cloud NGFW.
Similarly, AWS Firewall Manager is a native AWS service for managing AWS WAF and Shield, not Palo Alto Networks Cloud NGFW. These tools are not designed to integrate with or manage Palo Alto Networks' cloud-native firewall solutions.
References: Palo Alto Networks Systems Engineer Professional - Software Firewall, Section: Cloud NGFW Management, Panorama Deployment Guide, Ansible Integration Documentation for Cloud NGFW, AWS
/Azure Integration Guides.
NEW QUESTION # 64
A company wants to make its flexible-license VM-Series firewall, which runs on ESXi, process higher throughput.
Which order of steps should be followed to minimize downtime?
Answer: C
Explanation:
To minimize downtime when increasing throughput on a flexible-license VM-Series firewall running on ESXi, the following steps should be taken:
Increase the vCPU within the deployment profile: This is the first step. By increasing the vCPU allocation in the licensing profile, you prepare the license system for the change. This does not require a VM reboot.
Retrieve or fetch license keys on the VM-Series NGFW: After adjusting the licensing profile, the firewall needs to retrieve the updated license information to reflect the new vCPU allocation. This can be done via the web UI or CLI and usually does not require a reboot.
Power-off the VM and increase the vCPUs within the hypervisor: Now that the license is prepared, the VM can be powered off, and the vCPUs can be increased within the ESXi hypervisor settings.
Power-on the VM-Series NGFW: After increasing the vCPUs in the hypervisor, power on the VM. The firewall will now use the allocated resources and the updated license.
Confirm the correct tier level and vCPU appear on the NGFW dashboard: Finally, verify in the firewall's web UI or CLI that the correct license tier and vCPU count are reflected.
This order minimizes downtime because the licensing changes are handled before the VM is rebooted.
Reference:
While not explicitly documented in a single, numbered step list, the concepts are covered in the VM-Series deployment guides and licensing documentation:
VM-Series Deployment Guides: These guides explain how to configure vCPUs and licensing.
Flex Licensing Documentation: This explains how license allocation works with vCPUs.
These resources confirm that adjusting the license profile before the VM reboot is crucial for minimizing downtime.
NEW QUESTION # 65
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