2024 Latest ECP-206 DUMPS Q&As with Explanations Verified & Correct Answers [Q15-Q32]

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2024 Latest ECP-206 DUMPS Q&As with Explanations Verified & Correct Answers

ECP-206 dumps Exam Material with 62 Questions

NEW QUESTION # 15
P routers forward packets based on the ______.

  • A. inner label
  • B. flow label
  • C. LSP label
  • D. VPN label

Answer: C

Explanation:
Explanation
P routers forward packets based on the LSP label. The LSP label is the label that corresponds to the label-switched path (LSP) that is established between two PE routers in an MPLS network. The LSP label is also called the outer label or the transport label, because it is used to transport packets across the MPLS core network. P routers are also called LSRs (label switch routers) or transit routers, because they switch packets based on their labels or remove the labels. P routers do not need to look at the IP header or any other information in the packet, except for the top label in the label stack. P routers perform one of three possible operations on labels: swap, pop, or PHP (penultimate hop popping). In a swap operation, the label is swapped with a new label, and the packet is forwarded along the path associated with the new label. In a pop operation, the label is removed from the packet, and the packet is forwarded based on its IP header or another label in the stack. In a PHP operation, the label is removed from the packet at the last P router before reaching the egress PE router, and the packet is forwarded without any label to the egress PE router.
The LSP label is different from other types of labels that may be used in MPLS networks, such as VPN labels or service labels. These labels are used to identify different VPNs or services that run over MPLS networks, such as Layer 2 VPNs, Layer 3 VPNs, traffic engineering, or QoS. These labels are also called inner labels or payload labels, because they are related to the payload of the packet. These labels are not used by P routers for forwarding decisions, but only by PE routers for delivering packets to their destinations.
Therefore, the answer is C.
References: Ericsson IP Networking - Routing Protocols, MPLS Fundamentals: Forwarding Labeled Packets - Cisco Press, MPLS Labels and Devices - NetworkLessons.com, Multiprotocol Label Switching - Wikipedia, VPN Packet Forwarding > MPLS/VPN Architecture Overview | Cisco Press, Basic concepts - Hewlett Packard Enterprise


NEW QUESTION # 16
What network information is, without additional configuration, shared between two iBGP neighbors by default?

  • A. BGP routes learned from eBGP neighbors
  • B. BGP routes learned from an OSPF neighbor
  • C. IP address information from all directly connected interfaces
  • D. IP address information of loopback interfaces

Answer: A

Explanation:
Explanation
iBGP works by exchanging routing information between two or more routers within an AS. Each router sends its own routing table to its neighbors, which contains information about the networks it knows and how they can be reached from that router. By default, iBGP neighbors only share BGP routes learned from eBGP neighbors, which are routers in different ASes. This is because iBGP assumes that all routers within an AS have consistent internal routing information provided by an IGP, such as OSPF or IS-IS. Therefore, iBGP neighbors do not need to share IP address information of loopbackinterfaces or directly connected interfaces, unless explicitly configured to do so by using commands such as neighbor update-source or network.
References: iBGP Ultimate Guide | How iBGP Is Different From eBGP, Ericsson IP Networking - Routing Protocols


NEW QUESTION # 17
Which statement is true about LDP?

  • A. LDP performs routing functions along with IGP.
  • B. LDP and IGP both exchange their databases every 60 seconds.
  • C. LDP relies on IGP for all routing-related decisions.
  • D. LDP and IGP both exchange their databases every 30 seconds.

Answer: C

Explanation:
Explanation
LDP relies on IGP for all routing-related decisions. LDP is a protocol that distributes labels in an MPLS environment, but it does not perform any routing functions. LDP uses the underlying routing information provided by an IGP, such as OSPF or IS-IS, to forward label packets. LDP and IGP do not exchange their databases at regular intervals, but rather use hello messages to maintain adjacencies and sessions. References: Ericsson IP Networking - Routing Protocols, Label Distribution Protocol - Wikipedia


NEW QUESTION # 18
Which two statements are true about router node hardening? (Choose two.)

  • A. LDAP, using the TLS protocol, should be implemented for remote logging.
  • B. IPsec should be implemented to secure IGP routing protocols.
  • C. Enabling syslog ensures system events are logged to a remote server.
  • D. Any unnecessary services should be disabled within each context.

Answer: C,D

Explanation:
Explanation
Two statements that are true about router node hardening are:
Any unnecessary services should be disabled within each context. Router node hardening is a process of securing a router from unauthorized access and attacks by applying various configurations and policies.
One of these configurations is to disable any services that are not needed for the router's functionality or purpose, such as telnet, ftp, http, etc. This reduces the attack surface of the router and prevents potential exploits of these services91.
Enabling syslog ensures system events are logged to a remote server. Syslog is a protocol that allows a router to send system messages and events to a remote server for logging and analysis. By enabling syslog on a router, network administrators can monitor the router's activity and performance, troubleshoot problems, detect anomalies, and audit security events101.
References: Cisco Router Hardening Step-by-Step | SANS Institute, Security Hardening Checklist Guide for Cisco Routers/Switches in 10 Steps, CCNA SEC: Router Hardening - Cisco Press


NEW QUESTION # 19
Which two statements are true about the Ericsson Router 6000 series? (Choose two.)

  • A. The Router 6000 uses the same building practice and accessories as the Ericsson Radio System.
  • B. The Router 6000 products range from all-outdoor small site routers to large aggregation routers.
  • C. The Router 6000 is solely built as a radio cell site router.
  • D. The Router 6000 can host containerized applications such as firewalls.

Answer: A,B

Explanation:
Explanation
Two statements that are true about the Ericsson Router 6000 series are:
The Router 6000 uses the same building practice and accessories as the Ericsson Radio System. The Ericsson Radio System is a modular and scalableradio access network solution that supports multiple standards, bands, and layers. The Router 6000 series is fully integrated into the Ericsson Radio System, using the same building practice and accessories such as mounting kits, cables, power supplies, etc. This simplifies installation, operation, and maintenance of both radio and transport equipment78.
The Router 6000 products range from all-outdoor small site routers to large aggregation routers. The Router 6000 series consists of three main products: the Router 6672 for access, the Router 6675 for pre-aggregation, and the Router 6274 for metro aggregation. The Router 6672 is an all-outdoor small cell site router with high-capacity and low-power consumption. The Router 6675 is a combined access and E-RAN switch with hardware-accelerated IPSec and high-accuracy internal clock. The Router 6274 is a high-capacity metro aggregation router with SDN functionality and flexible interface options78.
References: Router 6000 Series - Ericsson, New Ericsson Router 6000 series couples radio and IP transport for 5G future - Global Brands Magazine


NEW QUESTION # 20
For IP destinations not found in the IS-IS Level 1 database, the Level 1 router must forward packets to the nearest Level 1-Level 2 router with which set?

  • A. attach bit
  • B. options bit
  • C. status bit
  • D. overload bit

Answer: A

Explanation:
Explanation
For IP destinations not found in the IS-IS Level 1 database, the Level 1 router must forward packets to the nearest Level 1-Level 2 router with the attach bit set. The attach bit is a flag in the IS-IS Level 1 LSP that indicates that the router is also a Level 2 router and can reach destinations outside the Level 1 area. The Level
1 router will install a default route pointing to the nearest Level 1-Level 2 router with the attach bit set. This way, the Level 1 router can forward packets to other areas without having to maintain a full Level 2 database. References: Ericsson IP Networking - Routing Protocols, Configure Attach Bit Set - Cisco


NEW QUESTION # 21
Which two statements are true about priority queuing (PQ)? (Choose two.)

  • A. Traffic in the highest priority queue will experience the least amount of jitter and delay compared to traffic in the other queues.
  • B. Traffic in all queues are always guaranteed a minimum bandwidth.
  • C. Traffic in the highest priority queue is only reserved for voice traffic.
  • D. Traffic in lower priority queues can be starved of bandwidth.

Answer: A,D

Explanation:
Explanation
Priority queuing (PQ) is a queuing method that establishes four interface output queues that serve different priority levels: high, medium, normal, and low. Traffic in the highest priority queue will experience the least amount of jitter and delay compared to traffic in the other queues, because PQ always services the higher-priority queues first. However, this can also cause traffic in lower priority queues to be starved of bandwidth, especially if the highest priority queue is oversubscribed. Traffic in the highest priority queue is not only reserved for voice traffic, but can also include network control and routing traffic. Traffic in all queues are not always guaranteed a minimum bandwidth, because PQ does not provide any bandwidth reservation mechanism. References: Quality of Service (QoS) Queues and Queuing Explained, Chapter:
Configuring Priority Queueing - Cisco


NEW QUESTION # 22
Which operating system is used in Ericsson Router 6000 products?

  • A. IPOS
  • B. ERS
  • C. Junos
  • D. ERS
  • E. SE-OS

Answer: B

Explanation:
Explanation
The operating system used in Ericsson Router 6000 products is ERS (Ericsson Router Software). ERS is based on IPOS (IP Operating System), which is a common operating system for Ericsson's IP portfolio. ERS provides advanced features and functionality for IP transport, such as MPLS, Segment Routing, QoS, IPSec, synchronization, SDN, and more. ERS also supports seamless integration with Ericsson Radio System and Ericsson Network Manager.
References: Router 6000 Series - Ericsson, Router 6675 Datasheet - Winncom


NEW QUESTION # 23
Review the exhibit.

In the exhibit, which action is performed by router R3 for traffic arriving from router R2 towards router R4?

  • A. PHP
  • B. pop
  • C. push
  • D. swap

Answer: A

Explanation:
Explanation
In the exhibit, the action performed by router R3 for traffic arriving from router R2 towards router R4 is PHP, which stands for penultimate hop popping. PHP is a process in which the penultimate hop router (the router before the egress router) removes the top label from an MPLS packet before forwarding it to the egress router.
This reduces the label stack depth of the packet and relieves the egress router from performing a label lookup operation. In the exhibit, router R3 is the penultimate hop for traffic arriving from router R2 towards router R4. Router R3 will perform a PHP operation, removing the top label from the incoming packet before forwarding it to router R478.
References: PHP Tutorial - W3Schools, PHP: Downloads


NEW QUESTION # 24
What is the correct abbreviation for the IP address: BFEA:DACA:0000:0000:9390:0000:0000:D91?

  • A. BFEA:DACA::9390:0:0:D91
  • B. BFEA:DACA::D91/6
  • C. BFEA:DACA::9390:0:D91
  • D. BFEA:DACA::9390::D91

Answer: C

Explanation:
Explanation
The correct abbreviation for the IP address BFEA:DACA:0000:0000:9390:0000:0000:D91 is BFEA:DACA::9390:0:D91. IPv6 addresses are represented in hexadecimal notation, with eight 16-bit segments separated by colons. To simplify the address representation, IPv6 supports two types of abbreviations. The first abbreviation allows us to skip leading zeros within a segment, while the second abbreviation allows us to drop one or more consecutive segments that contain only zeros, using a double colon (::) instead. However, the double colon can be used only once in an address, to avoid ambiguity34.
References: IPv6 Address Types, Notation, and Structure Explained, IPv6 address - Wikipedia


NEW QUESTION # 25
What is the purpose of the RT attribute?

  • A. to request BGP neighbors to avoid routing through a private AS
  • B. to identify the destination VPN on the efress PE
  • C. to indicate an MPLS LSP as the next hop routing target
  • D. to prevent OSPF routing loops in an L3VPN environment

Answer: B

Explanation:
Explanation
The purpose of the RT attribute is to identify the destination VPN on the egress PE. RT stands for route target, which is a BGP extended community attribute that is used in MPLS VPNs. RT is attached to VPN routes by the ingress PE router and is used to control the import and export of routes between different VPNs. The egress PE router uses the RT value to determine which VPN routes belong to which VPN customers and installs them in the appropriate VRF table56.
References: IP Routing: BGP Configuration Guide - BGP-RT and VPN ... - Cisco, <rt>: The Ruby Text element - MDN Web Docs


NEW QUESTION # 26
In a company network, a host sends an Ethernet frame destined to the address FF:FF:FF:FF:FF:FF.
What will an Ethernet switch do with this frame?

  • A. It will send the frame only to management port.
  • B. It will forward the frame to all ports.
  • C. It will drop it.
  • D. It will forward the frame to only one port.

Answer: B

Explanation:
Explanation
An Ethernet switch will forward the frame to all ports when the destination address is FF:FF:FF:FF:FF:FF.
This is because this address is the broadcast MAC address, which means that the frame is intended for all devices on the same LAN segment. The switch does not need to look up its MAC address table to find a matching entry for this address, but simply floods the frame out of all ports except the one where it received the frame. This way, the frame reaches every device on the LAN segment, regardless of their MAC addresses. References: Ethernet - Wireshark, Broadcast MAC Address - omnisecu.com


NEW QUESTION # 27
What is used for Ethernet loop avoidance?

  • A. Split-Horizon
  • B. Spanning-Tree
  • C. Time-to-Live (TTL)
  • D. Poison-Reverse

Answer: B

Explanation:
Explanation
Spanning-Tree is used for Ethernet loop avoidance. Spanning-Tree is a protocol that prevents loops in Ethernet networks by creating a logical tree topology of the network switches. Spanning-Tree blocks some of the redundant links between switches to ensure that there is only one active path between any two nodes in thenetwork. Spanning-Tree also detects and recovers from link failures by activating alternative paths when needed56.
References: Network loops and loop avoidance - Medium, Spanning Tree Protocol - Wikipedia


NEW QUESTION # 28
Which operating system is used in Ericsson Router 6000 products?

  • A. IPOS
  • B. ERS
  • C. Junos
  • D. ERS
  • E. SE-OS

Answer: B

Explanation:
Explanation
The operating system used in Ericsson Router 6000 products is ERS (Ericsson Router Software). ERS is based on IPOS (IP Operating System), which is a common operating system for Ericsson's IP portfolio. ERS provides advanced features and functionality for IP transport, such as MPLS, Segment Routing, QoS, IPSec, synchronization, SDN, and more. ERS also supports seamless integration with Ericsson Radio System and Ericsson Network Manager.
References: Router 6000 Series - Ericsson, Router 6675 Datasheet - Winncom


NEW QUESTION # 29
Review the exhibit.

Given the routing table shown in the exhibit, what is the next-hop to reach the host 192.168.1.129?

  • A. 10.126.131.248
  • B. 10.126.131.250
  • C. 10.126.131.251
  • D. 10.126.131.252

Answer: B

Explanation:
Explanation
The next-hop to reach the host 192.168.1.129 is 10.126.131.250. This can be determined by looking at the routing table in the exhibit. The host 192.168.1.129 falls within the range of the network 192.168.1.64/26, which has a next-hop of 10.126.131.250. References: Ericsson IP Networking - IP Addressing, Software Installation and Upgrade Overview (Junos OS)


NEW QUESTION # 30
In an Ethernet frame carrying a VLAN tag, where does the VLAN tag appear?

  • A. before the type field
  • B. after the type field
  • C. before the length field
  • D. after the length field

Answer: A

Explanation:
Explanation
In an Ethernet frame carrying a VLAN tag, the VLAN tag appears before the type field. A VLAN tag is a
4-byte field that is inserted into an Ethernet frame to indicate the VLAN membership and priority of the frame.
The VLAN tag consists of two subfields: the tag protocol identifier (TPID) and the tag control information (TCI). The TPID subfield is a 16-bit field that identifies the frame as an IEEE 802.1Q-tagged frame, with a value of 0x8100. The TCI subfield is a 16-bit field that contains the priority code point (PCP), the drop eligible indicator (DEI), and the VLAN identifier (VID). The VLAN tag appears between the source MAC address and the type fields of the original frame, shifting the type field by four bytes. The type field indicates the type of the payload, such as IP or ARP .
References: [IEEE 802.1Q - Wikipedia], [VLAN Tagging Explained with DTP Protocol - GeeksforGeeks]


NEW QUESTION # 31
Which network is reserved as a private network according to RFC1918?

  • A. 172.15.1.0/24
  • B. 172.16.1.0/9
  • C. 193.168.1.0/24
  • D. 10.254.1.0/24

Answer: D

Explanation:
Explanation
According to RFC1918, there are three network blocks reserved as private networks that are not allocated to any specific organization and are not routable on the public Internet. These are:
10.0.0.0/8 (10.0.0.0 - 10.255.255.255)
172.16.0.0/12 (172.16.0.0 - 172.31.255.255)
192.168.0.0/16 (192.168.0.0 - 192.168.255.255)
Out of these, only option B (10.254.1.0/24) falls within one of the private network blocks (10.0.0.0/8). Option A (172.16.1.0/9) is not valid because it exceeds the /12 prefix length of the private network block (172.16.0.0/12). Option C (193.168.1.0/24) is not valid because it does not belong to any of the private network blocks, and is actually assigned to RIPE NCC as a public network block . Option D (172.15.1.0/24) is also not valid because it does not belong to any of the private network blocks, and is actually assigned to ARIN as a public network block . References: RFC 1918: Address Allocation for Private Internets, Private network - Wikipedia, [RIPE NCC IPv4 Address Space Chart], [ARIN WHOIS Database Search]


NEW QUESTION # 32
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