Free PDF Quiz 2024 F5 302: Authoritative New BIG-IP DNS Specialist Test Materials

Free PDF Quiz 2024 F5 302: Authoritative New BIG-IP DNS Specialist Test Materials

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Earning the F5 302 certification demonstrates your expertise in managing and configuring DNS services using F5 BIG-IP products. BIG-IP DNS Specialist certification is recognized globally and is highly valued by organizations that use F5 technologies. By passing 302 exam, you will become a certified F5 BIG-IP DNS Specialist, which can help you advance your career and increase your earning potential. With the continued growth of cloud and hybrid environments, the demand for F5-certified professionals is on the rise, making this certification a valuable asset for your career.

F5 302 (BIG-IP DNS Specialist) Certification Exam is an important certification for individuals who specialize in DNS and F5's BIG-IP platform. By passing 302 exam, individuals can demonstrate their knowledge and skills in this area and improve their career prospects in the IT, networking, or security fields.

Earning the F5 302 certification demonstrates to employers and clients that the candidate has the necessary skills and knowledge to deploy and manage F5 BIG-IP DNS systems effectively. BIG-IP DNS Specialist certification is highly valued in the industry and can lead to career advancement opportunities, higher salaries, and increased job security. Moreover, F5 certification holders have access to F5's online community, which provides them with exclusive resources, training, and support to help them stay up-to-date with the latest F5 technologies and best practices.

F5 BIG-IP DNS Specialist Sample Questions (Q153-Q158):

NEW QUESTION # 153
In the TCP Client server Zone transfer what is the Client ?

  • A. It may be the Secondary DNS Server
  • B. It is not the primary master DNS Server
  • C. It may be the Primary master DNS Server

Answer: A,C

Explanation:
In a TCP client-server zone transfer, the client is typically the Secondary DNS Server. The Secondary DNS Server initiates the zone transfer process by requesting a copy of the zone data from the Primary Master DNS Server to ensure it has an up-to-date copy of the zone information.
The Primary Master DNS Server can also act as the client in a TCP client-server zone transfer scenario. The Primary Master DNS Server may initiate the zone transfer process to send a copy of the zone data to a Secondary DNS Server to ensure data consistency and redundancy in the DNS infrastructure.

NEW QUESTION # 154
What is the new configuration change identifier ?

  • A. It is a user name when the F5 GTM Loads the UCS
  • B. It is an PASSWORD Generated when the F5 GTM Loads the UCS
  • C. It is an ID Generated when the F5 GTM Loads the UCS
  • D. It is a generated (Commit ID )

Answer: B,D

Explanation:
The new configuration change identifier is a generated Commit ID that uniquely identifies the changes made to the configuration. This ID is typically assigned when a configuration change is committed and helps track and manage changes effectively.
The new configuration change identifier is an ID generated when the F5 GTM loads the UCS (Unified Configuration State). This identifier helps in identifying the specific configuration state that is being loaded into the system.
Domain
Archiving

NEW QUESTION # 155
What is the iterative Query ?

  • A. The DNS Server will redirect the Requester to other DNS Server that may help in resolving the Query
  • B. This type of Query allows the DNS server to direct the client system to other DNS Server that will help resolving the Query
  • C. The DNS Receiver will continue to query other servers until getting the resolution or even an error message indicating that the FQDN Doesn't exist

Answer: A,B

Explanation:
An iterative query in DNS allows the DNS server to direct the client system to other DNS servers that may have more information to help resolve the query. This process involves the DNS server providing a referral to other servers that can assist in resolving the query, making it a collaborative effort to find the necessary information.
In an iterative query scenario, the DNS server will redirect the requester to other DNS servers that may have additional information to help in resolving the query. This redirection process allows for a more efficient and distributed approach to resolving DNS queries by leveraging the resources and knowledge of multiple servers in the DNS infrastructure.
Domain
DNS Data flow

NEW QUESTION # 156
Regarding to the iQuery Statistics :
What will the following identify
The "Bytes In"?

  • A. The amount of data Backed up
  • B. The amount of data in bytes received by the BIG-IP DNS
  • C. over the iQuery connection from the specified server.

Answer: B

Explanation:
The "Bytes In" statistic in iQuery Statistics identifies the amount of data in bytes received by the BIG-IP DNS over the iQuery connection from the specified server. This metric helps monitor the incoming data flow and can be crucial in troubleshooting network performance issues related to data transfer.
Domain
iQuery Synchronization issue

NEW QUESTION # 157
What is the Recursive Query ?

  • A. The Local DNS has a commitment to respond to the Client system with either the final resolution or an error message
  • B. The DNS Server will redirect the Requester to other DNS Server that may help in resolving the Query
  • C. The Local DNS Will not direct the Client to any other DNS Server for the purpose of the Resolution
  • D. The Local DNS will handle the resolution process by itself or delegate a forwarder server to do that but in all cases the client system will receive the final resolution for the Local DNS

Answer: A,C,D

Explanation:
In a Recursive Query, the Local DNS server takes full responsibility for resolving the query and does not redirect the client to any other DNS server for resolution. This ensures that the client receives the final resolution directly from the Local DNS server without involving other servers in the process.
A key characteristic of a Recursive Query is that the Local DNS server is committed to providing the client system with either the final resolution to the query or an error message if the resolution cannot be achieved.
This ensures that the client receives a definitive response from the Local DNS server.
In a Recursive Query scenario, the Local DNS server is responsible for handling the resolution process either on its own or by delegating the task to a forwarder server. However, regardless of the approach taken, the client system will always receive the final resolution from the Local DNS server, ensuring a complete resolution process.
Domain
DNS Data flow

NEW QUESTION # 158
......

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