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| Certification Vendor: | Palo Alto Networks |
|---|---|
| Exam Name: | Palo Alto Networks Cybersecurity Practitioner Exam |
| Exam Number: | Cybersecurity-Practitioner |
| Exam Duration: | 90 minutes |
| Real Exam Qty: | 60–70 |
| Exam Format: | Multiple-choice, Matching, Ordering |
| Available Languages: | English |
| Passing Score: | 70% (scaled score approx. 860 on 300–1000 scale) |
| Exam Price: | $150 USD |
| Certificate Validity Period: | 2 years |
| Related Certifications: | Security Operations Professional Cybersecurity Apprentice |
| Recommended Training: | Palo Alto Networks Official Training |
| Exam Registration: | Pearson VUE Registration |
| Sample Questions: | Palo Alto Networks Cybersecurity-Practitioner Sample Questions |
| Exam Way: | In-person only at Pearson VUE test centers; online proctoring not available |
| Pre Condition: | No formal prerequisites; recommended for individuals entering cybersecurity or new to Palo Alto technologies |
| Official Syllabus URL: | https://www.paloaltonetworks.com/services/education/certification/cybersecurity-practitioner |
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NEW QUESTION # 180
Which type of attack obscures its presence while attempting to spread to multiple hosts in a network?
Answer: B
Explanation:
Advanced malware is designed to evade detection and persist within a system, often using stealthy techniques to spread laterally across multiple hosts in a network without triggering alerts, making it especially dangerous and difficult to remove.
NEW QUESTION # 181
Which of the following is a service that allows you to control permissions assigned to users in order for them to access and utilize cloud resources?
Answer: D
Explanation:
Identity and access management (IAM) is a software service or framework that allows organizations to define user or group identities within software environments, then associate permissions with them. The identities and permissions are usually spelled out in a text file, which is referred to as an IAM policy.
NEW QUESTION # 182
What is a characteristic of the National Institute Standards and Technology (NIST) defined cloud computing model?
Answer: B
Explanation:
According to the NIST definition, cloud computing is a model for enabling ubiquitous, convenient, on-demand network access to a shared pool of configurable computing resources (e.g., networks, servers, storage, applications, and services) that can be rapidly provisioned and released with minimal management effort or service provider interaction1. One of the essential characteristics of cloud computing is on-demand self-service, which means that users can request and obtain computing resources as needed, without requiring human intervention from the service provider2. On-demand network services are an example of this characteristic, as they allow users to access network resources such as bandwidth, routing, firewall, or load balancing, on demand and in a scalable manner3. Reference:
The NIST definition of cloud computing
SP 800-145, The NIST Definition of Cloud Computing | CSRC
On-Demand Network Services - Palo Alto Networks
NEW QUESTION # 183
What differentiates Docker from a bare metal hypervisor?
Answer: A
Explanation:
Docker and bare metal hypervisor are two different types of virtualization technologies that have different functioning mechanisms, architectures, and use cases. Docker is a containerization technology that allows users to create, deploy, and run applications using containers. Containers are isolated environments that share the same host operating system kernel, but have their own libraries, dependencies, and resources. Docker can run multiple containers on the same host, without requiring a separate operating system for each container12. Bare metal hypervisor, also known as type 1 hypervisor, is a software that runs directly on the hardware and creates virtual machines. Virtual machines are complete operating systems that have their own kernel, drivers, and resources. Bare metal hypervisor can run multiple virtual machines on the same host, each with a different operating system and dedicated resources3 .
The main difference between Docker and bare metal hypervisor is the level of abstraction they provide. Docker uses OS-level virtualization, which means it creates containers on top of the host operating system. Bare metal hypervisor uses hardware virtualization, which means it runs independently from the host operating system and creates virtual machines on the hardware layer. This difference has implications for the performance, efficiency, and portability of the virtualized environments. Docker containers are generally faster, lighter, and more scalable than virtual machines, as they do not have the overhead of running a separate operating system for each container. However, Docker containers are more limited and can run only on Linux, certain Windows servers and IBM mainframes if hosted on bare metal. Virtual machines, on the other hand, are more flexible and secure, as they can run any operating system and isolate the guest operating system from the host operating system. However, virtual machines are more resource-intensive and slower than containers, as they have to emulate the hardware and run a full operating system for each virtual machine12.
:
Docker vs VMWare: How Do They Stack Up? | UpGuard
Hypervisor vs. Docker: Complete Comparison of the Two - HitechNectar
Beginners Track - Docker On Bare Metal | dockerlabs
[Getting Started: Layer 3 Subinterfaces - Palo Alto Networks Knowledge Base]
NEW QUESTION # 184
Which VM-Series virtual firewall cloud deployment use case reduces your environment's attack surface?
Answer: A
Explanation:
Micro-segmentation is a VM-Series virtual firewall cloud deployment use case that reduces your environment's attack surface. Micro-segmentation is the process of dividing a network into smaller segments, each with its own security policies and controls. This helps to isolate and protect workloads from lateral movement and unauthorized access, as well as to enforce granular trust zones and application dependencies. Micro-segmentation can be applied to virtualized data centers, private clouds, and public clouds, using software-defined solutions such as VMware NSX, Cisco ACI, and Azure Virtual WAN. Reference: Micro-Segmentation - Palo Alto Networks, VM-Series Deployment Guide - Palo Alto Networks, VM-Series on VMware NSX - Palo Alto Networks, VM-Series on Cisco ACI - Palo Alto Networks, VM-Series on Azure Virtual WAN - Palo Alto Networks
NEW QUESTION # 185
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