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Cisco 350-501 Certification Exam is a prerequisite for the Cisco Certified Specialist - Service Provider Core certification. Implementing and Operating Cisco Service Provider Network Core Technologies certification is intended for network engineers, network architects, and network administrators who work in service provider organizations. Implementing and Operating Cisco Service Provider Network Core Technologies certification is also suitable for professionals who want to enhance their skills in service provider network technologies and advance their careers.

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Cisco 350-501 Exam consists of 60-70 questions and has a time limit of 120 minutes. 350-501 exam is available in English and Japanese and can be taken at any Pearson VUE testing center. Candidates can prepare for the exam by attending Cisco's official training courses or by self-study using Cisco's learning resources. 350-501 exam is rigorous, and candidates must have an in-depth understanding of service provider network technologies to pass. Successful candidates will have demonstrated their ability to implement and operate service provider network infrastructure efficiently and effectively, making them valuable assets in the service provider industry.

Target Audience

This Cisco exam is targeted at those individuals who want to validate their improved skills with service provider solutions. It provides the potential candidates with the evaluation of their core knowledge of the domain to grant them the certificate at the end of the certification process. The certificate will prove their skillset that has to include the understanding of service provider infrastructure.

Cisco Implementing and Operating Cisco Service Provider Network Core Technologies Sample Questions (Q106-Q111):

NEW QUESTION # 106
Refer to the exhibit. After a networking team configured this MPLS topology, the supervisor wants to view MPLS labels to verify the path that packets take from router R1 to router R7 The team already Issued an ICMP ping to verify connectivity between the devices. Which task must the team perform to allow the supervisor to view the label switch path?

Answer: B


NEW QUESTION # 107
Refer to the exhibit.

An engineer needs to implement this QoS policy on customer's network due to ongoing slow network issues.
What will be the effect on the network when the engineer implements this configuration?

Answer: B

Explanation:
The configuration applies a QoS policy to the pos0/2/0/0 interface, which affects traffic as it exits the interface. The policy map "ciscopolicy" references the class map "ciscotest", where traffic matching the class map criteria will be remarked. The command set precedence 1 within the class map "ciscotest" indicates that the traffic will be remarked to IP precedence 1. Therefore, the correct effect of this configuration is that traffic identified by the "ciscotest" class map will be remarked from its original IP precedence to IP precedence 1 when it exits the pos0/2/0/0 interface.
This explanation is based on the QoS configuration practices as outlined in the Implementing and Operating Cisco Service Provider Network Core Technologies (SPCOR) course materials.


NEW QUESTION # 108
Refer to the exhibit.

An engineer implemented OSPF neighbor relationship on an IOS device. Which configuration must be applied to get the OR/BOR election removed from interfaces running OSPF?

Answer: A

Explanation:
In OSPF, the election of the designated router (DR) and backup designated router (BDR) is based on the OSPF network type. The network types include:
* Broadcast: This is the default network type for Ethernet interfaces. In a broadcast network, OSPF elects a DR and BDR. All other routers become DROTHERs. To prevent the election of a DR/BDR, you can configure the interface as non-broadcast (NBMA) using the ip ospf network non- broadcast command.
* Point-to-Point: This network type is used for point-to-point links (e.g., serial links). There is no DR
/BDR election in point-to-point networks.
* Point-to-Multipoint: This network type is used for point-to-multipoint links (e.g., Frame Relay). There is no DR/BDR election in point-to-multipoint networks.
* Point-to-Multipoint Non-Broadcast: Similar to point-to-multipoint, but explicitly configured as non- broadcast. There is no DR/BDR election in point-to-multipoint non-broadcast networks.
* Loopback: Loopback interfaces are always treated as point-to-point.
* Virtual-Link: Used for OSPF virtual links.
* Sham-Link: Used for OSPF sham links.
* Demand Circuit: Used for demand circuits (e.g., ISDN).
* Non-Broadcast: Explicitly configured as non-broadcast. There is no DR/BDR election in non- broadcast networks.
:
Implementing and Operating Cisco Service Provider Network Core Technologies (SPCOR) v1.0 Cisco Learning Network Store - SPCOR Training


NEW QUESTION # 109
Refer to Exhibit:

A network engineer must update the routing toward the web server with IP address 35.22.13.1. The primary path must be configured via the neighbor router with ID 1.1.1.1. However, local-preference configuration is not permitted on R1. Which task must the engineer perform on R1 to complete the implementation?

Answer: A


NEW QUESTION # 110
A network engineer must configure a router for Flexible NetFlow IPFIX export. The IP address of the destination server is 172.17.12.1 The source address must be set to the Loopback0 IPv4 address and exported packets must be set to DSCP CS3. The TTL must be 64 and the transport protocol must be set to UDP with destination port 4739.
Which configuration must the engineer apply to the router?

Answer: C


NEW QUESTION # 111
......

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