D-SNC-DY-00 HOT QUESTIONS - D-SNC-DY-00 VALID MOCK TEST

D-SNC-DY-00 Hot Questions - D-SNC-DY-00 Valid Mock Test

D-SNC-DY-00 Hot Questions - D-SNC-DY-00 Valid Mock Test

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Tags: D-SNC-DY-00 Hot Questions, D-SNC-DY-00 Valid Mock Test, D-SNC-DY-00 Study Group, D-SNC-DY-00 Valid Dump, D-SNC-DY-00 Valid Test Book

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EMC D-SNC-DY-00 Exam Syllabus Topics:

TopicDetails
Topic 1
  • SONiC Configuration: This comprehensive topic evaluates your ability to administer and configure critical network components. You will need to manage port groups, configure management access, handle VLANs, and verify advanced features like Link Aggregation Groups and MC-LAG. Proficiency in these Dell EMC D-SNC-DY-00 exam areas is crucial for ensuring robust and scalable network operations.
Topic 2
  • Routing: Here, your routing knowledge will be tested, particularly in administering L3 IP addressing, configuring static routes, and understanding OSPF and BGP operations. As a cloud engineer, you must be adept at managing routing protocols and configurations to maintain efficient network traffic flow.
Topic 3
  • QoS: Your understanding of Quality of Service (QoS) is essential to become a certified Dell cloud engineer. The exam evaluates your ability to configure and verify QoS features. This section tests your ability to ensure optimal network performance, a vital skill in managing cloud environments where service quality is paramount.
Topic 4
  • VXLAN: This topic focuses on your ability to manage VXLAN operations, including configuring and verifying BGP EVPN with both Asymmetric and Symmetric IRB. Understanding VXLAN is essential for enabling scalable and efficient cloud networks, making this topic critical to your D-SNC-DY-00 Exam Success.

EMC Dell SONiC Deploy Exam Sample Questions (Q28-Q33):

NEW QUESTION # 28
How many ports are in each port-group on the S5200 series switches?

  • A. 0
  • B. 1
  • C. 2

Answer: C

Explanation:
Each port-group on the S5200 series switches consists of 4 ports. This grouping allows for efficient management and configuration of the switch ports in sets.
References:
* Dell S5200 Series Switches Documentation
* Dell Technologies InfoHub


NEW QUESTION # 29
Configure the system to meet these requirements.
. Configure R1 with AS 1.
. R1 must use a static neighbor assignment for BGP peering.
. R1 needs to redistribute all current and future connected IPv4 routes.
All the required BGP configurations have already been completed on R2.
R2 resides in BGP AS 2.

Answer:

Explanation:
see the explanation for all step by step solution with all explanation.
Explanation:
Here is the step-by-step configuration for R1:
* Enter BGP Configuration Mode:
R1# configure terminal
R1(config)# router bgp 1
* Configure the BGP Neighbor:
R1(config-router)# neighbor 10.10.12.2 remote-as 2
* Redistribute Connected Routes into BGP:
R1(config-router)# redistribute connected
* Exit BGP Configuration Mode and Save the Configuration:
R1(config-router)# end
R1# write memory
Comprehensive Detailed Step by Step Explanation with References:
* Enter BGP Configuration Mode:
* To configure BGP on R1, you need to enter global configuration mode and then enter BGP
* configuration mode with the AS number. Since R1 is in AS 1, you use the command router bgp 1.
* Configure the BGP Neighbor:
* BGP neighbors must be manually specified. In this case, R1's neighbor is R2, which has an IP address of 10.10.12.2 and resides in AS 2. The command neighbor 10.10.12.2 remote-as 2 establishes this relationship.
* Redistribute Connected Routes into BGP:
* To ensure that all connected routes on R1 are advertised via BGP, you use the redistribute connected command. This ensures that any connected IPv4 routes are redistributed into BGP, meeting the requirement to advertise current and future connected routes.
* Exit BGP Configuration Mode and Save the Configuration:
* Once the configuration is complete, you exit BGP configuration mode by typing end and then save the configuration with the write memory command. This ensures that the changes persist after a reboot.
References:
* Cisco BGP Configuration Guide
* Dell Technologies Networking - SONiC
* Dell Enterprise SONiC Deployment Guide
These steps provide a comprehensive guide to configure R1 to meet the specified requirements for BGP peering and route redistribution.


NEW QUESTION # 30
Which network devices route unencapsulated user traffic in a symmetric IRB overlay network?

  • A. Leaf router and spine router
  • B. Capability extended next hop router and leaf router
  • C. Source VTEP and destination VTEP
  • D. Autonomous system boundary router and source VTEP

Answer: C

Explanation:
In a symmetric Integrated Routing and Bridging (IRB) overlay network, the Source Virtual Tunnel End Point (VTEP) and the Destination VTEP route unencapsulated user traffic. Symmetric IRB ensures that routing occurs at both the ingress and egress VTEPs, allowing for optimized traffic flow and efficient network operations.
References:
* Dell Technologies SONiC documentation
* VXLAN Configuration Guide


NEW QUESTION # 31
An administrator for a service provider uses this command on a switch:

What is the result of running the command?

  • A. Maps the VLAN traffic that a CVLAN identifies to a VNI on a VTEP
  • B. Maps the VLAN traffic that an SVLAN identifies to a VNI on a VTEP
  • C. Maps the VLAN traffic that a TPID identifies to a VNI on a VTEP

Answer: B

Explanation:
The command interface vxlan vtep-stacking followed by map vni 10010 vlan 100 maps the VLAN traffic that an SVLAN identifies to a VNI on a VTEP. In this context, SVLAN (Service VLAN) is being mapped to a VXLAN Network Identifier (VNI) for encapsulation and transport across the VXLAN tunnel.
References:
* Dell Technologies SONiC documentation
* VXLAN Configuration Guide


NEW QUESTION # 32
What is the correct order of steps for data flow in asymmetric IRB frame encapsulation?

Answer:

Explanation:

Explanation:
* Ingress VTEP performs a route lookup that is based on the destination IP address.
* Ingress VTEP encapsulates the packet with VXLAN and sends it on the appropriate VNI segment.
* Egress VTEP determines that the host is local to the VNI and switches the packet.
* Egress VTEP bridges the packet after decapsulation.
Steps and Correct Order:
* Ingress VTEP performs a route lookup that is based on the destination IP address.
* The ingress VTEP (Virtual Tunnel Endpoint) first needs to determine the next hop for the packet.
This involves performing a route lookup using the destination IP address.
* Ingress VTEP encapsulates the packet with VXLAN and sends it on the appropriate VNI segment.
* Once the route lookup is complete, the ingress VTEP encapsulates the packet in a VXLAN header, which includes the appropriate VNI (VXLAN Network Identifier) segment, and forwards it.
* Egress VTEP determines that the host is local to the VNI and switches the packet.
* The egress VTEP receives the encapsulated VXLAN packet, decapsulates it, and then checks its local VNI to determine if the destination host is within the same VNI.
* Egress VTEP bridges the packet after decapsulation.
* After determining the destination host's locality, the egress VTEP bridges the packet to the appropriate interface to deliver it to the final destination.
References:
* Dell Technologies Networking - SONiC
* Dell Enterprise SONiC Deployment Guide
These steps provide a comprehensive guide to understand the correct order of operations in asymmetric IRB (Integrated Routing and Bridging) frame encapsulation within a VXLAN environment.


NEW QUESTION # 33
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