ACTUAL PSE-SWFW-PRO-24 TEST PREP IS ATTRIBUTIVE PRACTICE QUESTIONS TO HIGH-EFFICIENT LEARNING

Actual PSE-SWFW-Pro-24 Test Prep is Attributive Practice Questions to High-Efficient Learning

Actual PSE-SWFW-Pro-24 Test Prep is Attributive Practice Questions to High-Efficient Learning

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Palo Alto Networks Systems Engineer Professional - Software Firewall Sample Questions (Q57-Q62):

NEW QUESTION # 57
Which two products can be deployed using Terraform for automation and integration? (Choose two.)

  • A. CN-Series firewall
  • B. Cloud NGFW
  • C. VM-Series firewall
  • D. PA-Series firewall

Answer: A,C

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 # 58
Which three methods may be used to deploy CN-Series firewalls? (Choose three.)

  • A. Panorama plugin for Kubernetes
  • B. Helm charts
  • C. YAML file
  • D. Terraform templates
  • E. Docker Swarm

Answer: B,C,D

Explanation:
The CN-Series firewalls are containerized firewalls designed to protect Kubernetes environments. They offer several deployment methods to integrate with Kubernetes orchestration.
* A. Terraform templates: Terraform is an Infrastructure-as-Code (IaC) tool that allows you to define and provision infrastructure using declarative configuration files. 1 Palo Alto Networks provides Terraform modules and examples to deploy CN-Series firewalls, enabling automated and repeatable deployments.
1. prathmeshh.hashnode.dev
prathmeshh.hashnode.dev
* B. Panorama plugin for Kubernetes: While Panorama is used to manage CN-Series firewalls centrally, there isn't a direct "Panorama plugin for Kubernetes" for deploying the firewalls themselves.
Panorama is used for management after they're deployed using other methods.
* C. YAML file: Kubernetes uses YAML files (manifests) to define the desired state of deployments, including pods, services, and other resources. You can deploy CN-Series firewalls by creating YAML files that define the necessary Kubernetes objects, such as Deployments, Services, and ConfigMaps.
This is a core method for Kubernetes deployments.
* D. Helm charts: Helm is a package manager for Kubernetes. Helm charts package Kubernetes resources, including YAML files, into reusable and shareable units. Palo Alto Networks provides Helm charts for deploying CN-Series firewalls, simplifying the deployment process and managing updates.
* E. Docker Swarm: Docker Swarm is a container orchestration tool, but CN-Series firewalls are specifically designed for Kubernetes and are not deployed using Docker Swarm.
References:
The Palo Alto Networks documentation clearly outlines these deployment methods:
* CN-Series Deployment Guide: This is the primary resource for deploying CN-Series firewalls. It provides detailed instructions and examples for using Terraform, YAML files, and Helm charts. You can find this on the Palo Alto Networks support portal by searching for "CN-Series Deployment Guide".


NEW QUESTION # 59
Why should a customer use advanced versions of Cloud-Delivered Security Services (CDSS) subscriptions compared to legacy versions when creating or editing a deployment profile?
(e.g., using Advanced Threat Prevention instead of Threat Prevention.)

  • A. To use external dynamic lists for blocking known malicious threat sources and destinations
  • B. To download and install new threat-related signature databases in real-time
  • C. To improve firewall throughput by inspecting hashes of advanced packet headers
  • D. To use cloud-scale machine learning inline for detection of highly evasive and zero-day threats

Answer: D

Explanation:
Advanced CDSS subscriptions offer enhanced threat prevention capabilities:
A . To improve firewall throughput by inspecting hashes of advanced packet headers: While some security features use hashing, this is not the primary advantage of advanced CDSS.
B . To download and install new threat-related signature databases in real-time: Both standard and advanced CDSS subscriptions receive regular threat updates.
C . To use cloud-scale machine learning inline for detection of highly evasive and zero-day threats: This is a key differentiator of advanced CDSS. It leverages cloud-based machine learning to detect sophisticated threats that traditional signature-based methods might miss.
D . To use external dynamic lists for blocking known malicious threat sources and destinations: Both standard and advanced CDSS can use external dynamic lists.
Reference:
Information about the specific features of advanced CDSS, such as inline machine learning, can be found on the Palo Alto Networks website and in datasheets comparing different CDSS subscription levels.


NEW QUESTION # 60
Where are auth codes registered in the bootstrapping process?

  • A. Palo Alto Networks App Hub
  • B. AutoConfig template
  • C. Palo Alto Networks Support Portal
  • D. ESXi server manifest

Answer: C

Explanation:
Comprehensive and Detailed In-Depth Step-by-Step Explanation:Bootstrapping is an automation method for VM-Series firewalls that simplifies initial deployment, configuration, licensing, and content updates. The Palo Alto Networks Systems Engineer Professional - Software Firewall documentation details the process, including how authentication codes (auth codes) are managed during bootstrapping.
* Palo Alto Networks Support Portal (Option C): Auth codes, which are used to activate licenses for VM- Series firewalls, must be registered in the Palo Alto Networks Customer Support Portal (also referred to as the Support Portal). During the bootstrapping process, the auth codes are included in the bootstrap package (e.g., in the license file or init-cfg.txt) and are validated against the serial number of the firewall. The Support Portal is where customers register auth codes, generate licenses, and manage credit-based licensing, ensuring the firewall is properly licensed during automated deployment. The documentation emphasizes the Support Portal as the central location for auth code registration and licensing management.
Options A (ESXi server manifest), B (AutoConfig template), and D (Palo Alto Networks App Hub) are incorrect. An ESXi server manifest (Option A) is specific to VMware ESXi and does not handle auth code registration for Palo Alto Networks firewalls. An AutoConfig template (Option B) is not a recognized term in the bootstrapping context; the correct file is init-cfg.txt, but it does not register auth codes-it uses them after registration. The Palo Alto Networks App Hub (Option D) focuses on application visibility and control, not licensing or auth code registration, making it irrelevant for this process.
References: Palo Alto Networks Systems Engineer Professional - Software Firewall, Section: Bootstrapping Guide, VM-Series Licensing Documentation, Customer Support Portal Documentation.


NEW QUESTION # 61
Which tool facilitates a customer's migration from existing legacy firewalls to Palo Alto Networks Next- Generation Firewalls (NGFWs)?

  • A. IronSkillet
  • B. AutoFocus
  • C. Expedition
  • D. Policy Optimizer

Answer: C

Explanation:
* Why A is correct: Expedition is a tool specifically designed to automate the migration of configurations from various legacy firewalls to Palo Alto Networks NGFWs. It helps parse existing configurations and translate them into PAN-OS policies.
* Why B, C, and D are incorrect:
* B: Policy Optimizer helps refine existing PAN-OS policies but doesn't handle migration from other vendors.
* C: AutoFocus is a threat intelligence service, not a migration tool.
* D: IronSkillet is a collection of security best-practice configurations for PAN-OS, not a migration tool.
Palo Alto Networks References: The Expedition documentation and datasheets explicitly describe its role in firewall migrations.


NEW QUESTION # 62
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