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Palo Alto Networks Systems Engineer Professional - Software Firewall Sample Questions (Q87-Q92):
NEW QUESTION # 87
Which two statements describe the functionality of the VM-Series firewall plugin? (Choose two.)
Answer: C,D
Explanation:
The VM-Series plugin enables integration between Panorama and VM-Series firewalls.
Why C and D are correct:
C . To use Panorama to configure public cloud VM-Series firewall integrations, the VM-Series firewall plugin must be installed on Panorama: The plugin on Panorama provides the necessary functionality for managing VM-Series deployments in cloud environments.
D . The VM-Series firewall plugin on Panorama is not built in and must be installed to enable communication and manage the environment: The plugin is a separate installation on Panorama.
Why A and B are incorrect:
A . The installed VM-Series firewall plugin on the VM-Series firewall can only be upgraded or deleted: There is no VM-Series plugin installed on the VM-Series firewall itself. The plugin resides on Panorama.
B . The Panorama plugin must be installed on the VM-Series firewall to enable communication with Panorama: As stated above, the plugin is installed on Panorama, not on the VM-Series firewall. Communication is established through API calls.
Palo Alto Networks Reference:
Panorama Administrator's Guide: This guide details plugin management and specifically mentions the VM-Series plugin for cloud integrations.
VM-Series Deployment Guides: These guides explain how to connect VM-Series firewalls to Panorama.
NEW QUESTION # 88
A company that purchased software NGFW credits from Palo Alto Networks has made a decision on the number of virtual machines (VMs) and licenses they wish to deploy in AWS cloud.
How are the VM licenses created?
Answer: A
Explanation:
The question focuses on how VM licenses are created when a company has purchased software NGFW credits and wants to deploy VM-Series firewalls in AWS.
* D. Access the Palo Alto Networks Customer Support Portal and create a software NGFW credits deployment profile. This is the correct answer. The process starts in the Palo Alto Networks Customer Support Portal. You create a deployment profile that specifies the number and type of VM-Series licenses you want to deploy. This profile is then used to activate the licenses on the actual VM-Series instances in AWS.
Why other options are incorrect:
* A. Access the AWS Marketplace and use the software NGFW credits to purchase the VMs. You do deploy the VM-Series instances from the AWS Marketplace (or through other deployment methods like CloudFormation templates), but you don't "purchase" the licenses there. The credits are managed separately through the Palo Alto Networks Customer Support Portal. The Marketplace deployment is for the VM instance itself, not the license.
* B. Access the Palo Alto Networks Application Hub and create a new VM profile. The Application Hub is not directly involved in the license creation process. It's more focused on application-level security and content updates.
* C. Access the Palo Alto Networks Customer Support Portal and request the creation of a new software NGFW serial number. You don't request individual serial numbers for each VM. The deployment profile manages the allocation of licenses from your pool of credits. While each VM will have a serial number once deployed, you don't request them individually during this stage. The deployment profile ties the licenses to the deployment, not individual serial numbers ahead of deployment.
Palo Alto Networks References:
The Palo Alto Networks Customer Support Portal documentation and the VM-Series Deployment Guide are the primary references. Search the support portal (live.paloaltonetworks.com) for "software NGFW credits,"
"deployment profile," or "VM-Series licensing."
The documentation will describe the following general process:
* Purchase software NGFW credits.
* Log in to the Palo Alto Networks Customer Support Portal.
* Create a deployment profile, specifying the number and type of VM-Series licenses (e.g., VM-Series for AWS, VM-Series for Azure, etc.) you want to allocate from your credits.
* Deploy the VM-Series instances in your cloud environment (e.g., from the AWS Marketplace).
* Activate the licenses on the VM-Series instances using the deployment profile.
This process confirms that creating a deployment profile in the customer support portal is the correct way to manage and allocate software NGFW licenses.
NEW QUESTION # 89
Which two statements accurately describe cloud-native load balancing with Palo Alto Networks VM-Series firewalls and/or Cloud NGFW in public cloud environments? (Choose two.)
Answer: A,D
Explanation:
Cloud-native load balancing with Palo Alto Networks firewalls in public clouds involves understanding the distinct approaches for VM-Series and Cloud NGFW:
A . Cloud NGFW's distributed architecture model requires deployment of a single centralized firewall and will force all traffic to the firewall across pre-built VPN tunnels: This is incorrect. Cloud NGFW uses a distributed architecture where traffic is steered to the nearest Cloud NGFW instance, often using Gateway Load Balancers (GWLBs) or similar services. It does not rely on a single centralized firewall or force all traffic through VPN tunnels.
B . VM-Series firewall deployments in the public cloud will require the deployment of a cloud-native load balancer if high availability (HA) or redundancy is needed: This is correct. VM-Series firewalls, when deployed for HA or redundancy, require a cloud-native load balancer (e.g., AWS ALB/NLB/GWLB, Azure Load Balancer) to distribute traffic across the active firewall instances. This ensures that if one firewall fails, traffic is automatically directed to a healthy instance.
C . Cloud NGFW in AWS or Azure has load balancing built into the underlying solution and does not require the deployment of a separate load balancer: This is also correct. Cloud NGFW integrates with cloud-native load balancing services (e.g., Gateway Load Balancer in AWS) as part of its architecture. This provides automatic scaling and high availability without requiring you to manage a separate load balancer.
D . VM-Series firewall load balancing is automated and is handled by the internal mechanics of the NGFW software without the need for a load balancer: This is incorrect. VM-Series firewalls do not have built-in load balancing capabilities for HA. A cloud-native load balancer is essential for distributing traffic and ensuring redundancy.
Reference:
Cloud NGFW documentation: Look for sections on architecture, traffic steering, and integration with cloud-native load balancing services (like AWS Gateway Load Balancer).
VM-Series deployment guides for each cloud provider: These guides explain how to deploy VM-Series firewalls for HA using cloud-native load balancers.
These resources confirm that VM-Series requires external load balancers for HA, while Cloud NGFW has load balancing integrated into its design.
NEW QUESTION # 90
Why are VM-Series firewalls now grouped by four tiers?
Answer: D
Explanation:
The VM-Series tiering simplifies the product portfolio.
* Why B is correct: The four-tier model (VE, VE-Lite, VE-Standard, VE-High) simplifies the selection process for customers by grouping VM-Series models based on performance and resource allocation.
This makes it easier to choose the appropriate VM-Series instance based on their needs without having to navigate a long list of individual models.
* Why A, C, and D are incorrect:
* A. To obscure the supported hypervisor manufacturer into generic terms: The tiering is not related to obscuring hypervisor information. The documentation clearly states supported hypervisors.
* C. To define the maximum limits for key criteria based on allocated memory: While memory is a factor in performance, the tiers are based on a broader set of resource allocations (vCPUs, memory, throughput) and features, not just memory.
* D. To define the priority level of support customers expect when opening a TAC case:
Support priority is based on support contracts, not the VM-Series tier.
Palo Alto Networks References: VM-Series datasheets and the VM-Series deployment guides explain the tiering model and its purpose of simplifying the portfolio.
NEW QUESTION # 91
Which two products can be deployed using Terraform for automation and integration? (Choose two.)
Answer: C,D
Explanation:
Comprehensive and Detailed In-Depth Step-by-Step Explanation:Terraform is an Infrastructure-as-Code (IaC) tool that automates the provisioning and configuration of infrastructure, including Palo Alto Networks firewalls. The Palo Alto Networks Systems Engineer Professional - Software Firewall documentation specifies which firewall products support Terraform integration for deployment and automation in cloud and virtualized environments.
* VM-Series firewall (Option B): Terraform can be used to deploy VM-Series firewalls in public clouds (e.g., AWS, Azure, GCP), private clouds, or on-premises virtualized environments. Palo Alto Networks provides Terraform modules and scripts (available on GitHub) to automate VM-Series deployment, configuration, and integration with cloud-native services, ensuring scalability and repeatability. The documentation highlights Terraform as a key automation tool for VM-Series, aligning with DevOps practices.
* CN-Series firewall (Option C): CN-Series firewalls, designed for containerized environments, can be deployed using Terraform in conjunction with Kubernetes. Terraform scripts automate the provisioning of infrastructure (e.g., Kubernetes clusters in AWS, Azure, or GCP) and integrate with CN-Series for securing container workloads. The documentation notes Terraform's role in automating CN-Series deployments, leveraging Kubernetes manifests and cloud-native integrations.
Options A (PA-Series firewall) and D (Cloud NGFW) are incorrect. PA-Series firewalls are physical appliances, not virtual or software-based, and do not support Terraform deployment, as Terraform focuses on cloud and virtualized infrastructure, not hardware. Cloud NGFW is a cloud-native managed service in AWS and Azure, and while it can be managed or deployed through automation, it does not use Terraform directly for deployment, as it relies on cloud provider APIs and native scaling mechanisms, not IaC tools like Terraform.
References: Palo Alto Networks Systems Engineer Professional - Software Firewall, Section: Automation and Integration, Terraform Documentation for VM-Series and CN-Series, GitHub Repository for Palo Alto Networks.
NEW QUESTION # 92
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