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F5 F5CAB5 Exam Overview:

Certification Vendor:F5
Exam Name:BIG-IP Administration Support and Troubleshooting (F5CAB5)
Exam Number:F5CAB5
Available Languages:English
Exam Duration:30 minutes
Real Exam Qty:25-30
Passing Score:245
Exam Price:USD 50 (online) / USD 65 (test center)
Related Certifications:BIG-IP Administration Control Plane Administration
BIG-IP Administration Data Plane Configuration
BIG-IP Administration Data Plane Concepts
BIG-IP Administration Install, Initial Configuration, and Upgrade
Exam Format:Multiple Choice
Recommended Training:Administering BIG-IP Course
Troubleshooting BIG-IP Training
Exam Registration:F5 Certification Portal
F5 Education Exam Page
Sample Questions:F5 F5CAB5 Sample Questions
Exam Way:Online proctored (Certiverse) or test center proctored (Pearson VUE)
Pre Condition:No formal prerequisites required; part of the F5 Certified Administrator, BIG-IP certification path (5-exam series).
Official Syllabus URL:https://education.f5.com/exams/big-ip-administration-support-and-troubleshooting-f5cab5

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F5 F5CAB5 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Identify the reason a virtual server is not working as expected: This section covers diagnosing virtual server issues including availability status, profile conflicts and misconfigurations, and incorrect IP addresses or ports.
Topic 2
  • Determine resource utilization: This domain covers analyzing system resources including control plane versus data plane usage, CPU statistics per virtual server, interface statistics, and disk and memory utilization.
Topic 3
  • Identify the reason a pool is not working as expected: This domain focuses on troubleshooting pools including health monitor failures, priority group membership, and configured versus availability status of pools and members.
Topic 4
  • Identify network level performance issues: This section focuses on diagnosing network problems including packet capture needs, interface availability, packet drops, speed and duplex settings, and TCP profile optimization.,

F5 BIG-IP Administration Support and Troubleshooting Sample Questions (Q54-Q59):

NEW QUESTION # 54
A BIG-IP Administrator disabled a virtual server with a pool that has a working health monitor.
How does the status icon look for this virtual server?

Answer: B

Explanation:
BIG-IP status icons provide immediate visual feedback regarding the state of an object based on its availability and enabled/disabled status.
Color (Black): The color black indicates that an object has been manually Disabled by an administrator.
Shape (Circle): The circular shape indicates that the object is Available (i.e., its health monitors are passing).
Scenario Result: Since the virtual server is manually disabled (Black) but its associated pool has a working health monitor that is currently passing (Circle), the resulting icon is a Black Circle.


NEW QUESTION # 55
A BIG-IP Administrator notices that one of the servers that runs an application isNOTreceiving any traffic. The BIG-IP Administrator examines the configuration status of the application and observes the displayed monitor configuration and affected pool member status.

What is the possible cause of this issue? (Choose one answer)

Answer: A

Explanation:
The key clue in the exhibit is the pool member's availability showing"Offline (Enabled) - Parent down". In BIG-IP terminology, a pool member inherits the status of itsparent node. If thenodeis marked down (for example, by a node-level monitor or a default "node is down" condition), thenall pool members using that node IPwill also be marked down and will not receive any traffic, even if the application service on the member port might be healthy.
While the HTTPS monitor configuration (send/receive strings) is displayed, the statusspecificallyindicates anode (parent) failure, not a service-level failure. If the problem were the application not matching the receive string, you would typically see the member down due to themember's monitorfailing (and the status would reflect monitor failure details), rather than "parent down." Option D is too broad; BIG-IP can generally reach the subnet (other servers work), and this symptom points to a specific node condition. Option C is incorrect because HTTP/1.1 is commonly used for monitoring and is valid when properly formatted (especially with a Host header). Therefore, the most likely cause is that thenode health monitor is not responding, causing the node-and consequently the member-to be marked down.


NEW QUESTION # 56
A user needs to determine known security vulnerabilities on an existing BIG-IP appliance and how to remediate these vulnerabilities. Which action should the BIG-IP Administrator recommend?

Answer: B

Explanation:
F5 recommends using the iHealth diagnostic tool to identify security vulnerabilities and receive specific remediation guidance.
QKView and iHealth: A QKView file is a comprehensive diagnostic snapshot of the BIG-IP system. When this file is uploaded to the F5 iHealth portal, it is automatically parsed against a database of known issues and security advisories.
Vulnerability Diagnosis: The iHealth platform includes automated checks specifically designed to surface security gaps and "Heuristics" that match the system's current configuration and software version to known CVEs (Common Vulnerabilities and Exposures).
Remediation Guidance: For every identified vulnerability, iHealth provides direct links to the relevant F5 Security Advisory (K-article), which contains detailed remediation steps, such as specific software versions that contain a fix or temporary mitigation commands.
UCS vs. QKView: While a UCS (User Configuration Set) file is a backup of the system configuration, it is not the format used by the iHealth diagnostic engine for automated vulnerability scanning; the QKView is the required format for this process.


NEW QUESTION # 57
Refer to the exhibit.

An LTM device has a virtual server mapped to www.f5.com . Users report that when they connect to www.f5.com they are unable to receive content. What is the likely cause of the issue? (Choose one answer)

Answer: D

Explanation:
Based on the configuration screens provided in the exhibit, the primary reason for the connectivity failure is the disabled ARP setting on the Virtual Address.
Virtual Address ARP Setting: In a standard BIG-IP deployment, the Address Resolution Protocol (ARP) must be enabled for the Virtual Address (192.168.238.111 in this case). When enabled, the BIG-IP system responds to ARP requests from the local network gateway or adjacent devices for that specific IP address.
Exhibit Analysis: Looking at the "Virtual Address List >> 192.168.238.111" properties section, the ARP checkbox is unselected (unchecked). Because ARP is disabled, the upstream router or client cannot resolve the MAC address for 192.168.238.111, and the traffic never reaches the BIG-IP LTM.
Availability Indicators: Note the yellow circle (status indicator) on both the Virtual Server and the Pool Members. In F5 BIG-IP, a yellow status typically indicates that the object is "Available" (Enabled) but its monitors are not currently identifying it as "Up" (which would be a green circle), or it is in a "Monitor Unknown" state. However, even if a pool is available, the traffic must first reach the Virtual Server, which is prevented here by the lack of ARP.
Incorrect Options Analysis:
Priority Group Activation (A): The exhibit shows this is "Disabled". While this affects how load balancing picks members between groups, it does not prevent all content from being received; the system would simply use all members in the pool.
Route Advertising (C): While "Route Advertisement" is also unchecked, this is generally only required if the BIG-IP needs to dynamically propagate the Virtual Address route via protocols like BGP or OSPF. For local segment connectivity, ARP is the fundamental requirement.


NEW QUESTION # 58
A BIG-IP Administrator uses backend servers to host multiple services per server. There are multiple virtual servers and pools defined, referencing the same backend servers. Which load balancing algorithm is most appropriate to have an equal number of connections on each backend server?17

Answer: D

Explanation:
When load balancing is not working as 23expected and connections appear skewed across physical hardware, the administrator must distinguish between "member"24 and "node" level balancing. A "member" refers to a specific IP and Port combination (e.g., 10.1.1.1:80), whereas a "node" refers to the underlying IP address (10.1.1.1) regardless of the port25. If a single server hosts multiple services (Web, FTP, API) across different pools, using "Least Connections (member)" would only balance connections within each individual pool26. This could lead to a scenario where one server is overwhelmed because it is winning the "least connections" count in three different pools simultaneously. By selecting "Least Connections (node)," the BIG-IP tracks the total number of concurrent connections to the physical IP address across all pools it belongs to27. This ensures that the administrator can maintain an equal distribution of work across the hardware, preventing performance degradation on backend servers that host multiple application services.


NEW QUESTION # 59
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