6V0-22.25 Study Materials - 6V0-22.25 PDF

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VMware 6V0-22.25 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Planning and Designing: Covers the planning and design considerations for deploying Avi Load Balancer in an environment.
Topic 2
  • Administrative and Operational Tasks: Covers day-to-day administrative tasks, specifically the process of creating and managing virtual services.
Topic 3
  • Architecture and Technologies: Covers the core components of the Avi architecture including the Controller, Service Engines, load balancing characteristics at L4
  • L7, HA modes, algorithms, health monitors, application profiles, policy engine, WAF, and certificate management.

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VMware Avi Load Balancer 30.x Administrator Sample Questions (Q44-Q49):

NEW QUESTION # 44
What is the primary difference in how a Virtual Service recovers from a Service Engine failure in an N+M setup versus an Active/Active setup?
# N+M (SE Group HA)
- SE-1 (Active, hosts VS-A) fails.
- Controller moves VS-A to SE-3 (Standby).
# Active/Active (VS HA)
- VS-A is on SE-1, SE-2.
- SE-1 fails.
- VS-A continues running on SE-2.

Answer: A


NEW QUESTION # 45
The "N" in N+M Elastic HA refers to which Service Engine Group parameter?

Answer: A

Explanation:
In Avi Load Balancer Elastic HA N+M mode, the Service Engine Group maintains a defined active scale and buffer capacity for redundancy and placement flexibility. VMware Avi documentation explains that in N+M mode, N represents the minimum number of Service Engines required for a Virtual Service, while M represents the spare or buffer capacity that Avi attempts to maintain across the Service Engine Group. This means N is related to the minimum active scale for the Virtual Service, not the total maximum number of Service Engines in the group, not the number of buffer Service Engines, and not the maximum number of Virtual Services per Service Engine. Therefore, the correct parameter for N is Minimum scale per Virtual Service.


NEW QUESTION # 46
Which three statements are true for Connection Multiplexing? Choose three.

Answer: C,D,E

Explanation:
Connection Multiplexing is an HTTP application-profile feature that allows Avi to reuse server-side TCP connections for multiple client requests. Because it is an HTTP request-switching and server TCP connection reuse function, it does not apply to UDP traffic. Avi documentation states that connection multiplexing controls HTTP/1.0 and HTTP/1.1 request switching and reuse of server TCP connections. The main performance benefit is that it reduces the number of server-side TCP connections, lowering connection setup overhead on backend servers. It is not compatible with NTLM authentication because NTLM depends on connection-oriented authentication semantics; reusing server connections for different client requests can break that assumption. Therefore, the true statements are that it does not support UDP, is not compatible with NTLM, and reduces server-side connections.


NEW QUESTION # 47
Which scripting language is used to build a DataScript?

Answer: C

Explanation:
Avi DataScripts are used to customize traffic handling beyond standard profile and policy capabilities.
VMware Avi DataScript documentation states that DataScripts are lightweight scripts coded in Lua . The DataScript language is built on an embedded Lua interpreter with Avi-specific libraries and functions added for load-balancing use cases. This allows administrators to inspect HTTP requests and responses, manipulate headers, perform content switching, redirect traffic, select pools, and log custom information. TCL is commonly associated with some legacy load balancer scripting environments, but it is not Avi DataScript's language. Python may be used for external automation through APIs, and Node.js is unrelated to Avi DataScript syntax. Therefore, the correct scripting language for Avi DataScripts is Lua .


NEW QUESTION # 48
What feature allows multiple tenants to share the same Avi infrastructure?

Answer: A


NEW QUESTION # 49
......

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