EXAM N10-008 PATTERN & N10-008 LATEST EXAM EXPERIENCE

Exam N10-008 Pattern & N10-008 Latest Exam Experience

Exam N10-008 Pattern & N10-008 Latest Exam Experience

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Tags: Exam N10-008 Pattern, N10-008 Latest Exam Experience, N10-008 Free Pdf Guide, N10-008 Updated Dumps, N10-008 Hottest Certification

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CompTIA N10-008 Certification is ideal for professionals who are looking to advance their careers in networking. It is a globally recognized certification that is respected by employers in various industries. CompTIA Network+ Certification Exam certification demonstrates that the candidate has the knowledge and skills required to design, configure, and troubleshoot networks in various environments.

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CompTIA N10-008 exam covers a wide range of topics, including network architecture, network security, network operations, network troubleshooting, and network tools. To qualify for this certification, the candidate must have at least nine months of networking experience and possess the necessary knowledge and skills required to pass the exam. The CompTIA N10-008 Exam is ideal for IT professionals who are aspiring to become network administrators or network technicians.

CompTIA Network+ Certification Exam Sample Questions (Q56-Q61):

NEW QUESTION # 56
A customer called the help desk to report a network issue. The customer recently added a hub between the switch and the router in order to duplicate the traffic flow to a logging device. After adding the hub, all the Other network components that were connected to the switch slowed more than expected. Which Of the following is the MOST likely cause Of the issue?

  • A. Flow control failure
  • B. 802.1Q disabled
  • C. Duplex mismatch
  • D. STP malfunction

Answer: C

Explanation:
Explanation
A duplex mismatch is a situation where two devices on a network have different duplex settings, such as full-duplex or half-duplex. Full-duplex means that a device can send and receive data simultaneously, while half-duplex means that a device can only send or receive data at a time. A duplex mismatch can cause performance issues, such as collisions, errors, or slow throughput. In this scenario, the customer added a hub between the switch and the router. A hub is a device that operates at half-duplex and broadcasts all traffic to all ports. A switch and a router are devices that operate at full-duplex and forward traffic to specific ports.
Therefore, adding a hub between the switch and the router can cause a duplex mismatch and slow down all the other network components that were connected to the switch.
References: https://www.comparitech.com/net-admin/hub-vs-switch-vs-router/
https://www.cisco.com/c/en/us/support/docs/lan-switching/ethernet/10561-3.html


NEW QUESTION # 57
An administrator wants to host services on the internet using an internal server. The server is configured with an RFC1918 address, and the administrator wants to make the services that are hosted on the server available on one of the company's public IP addresses. Which of the following should the administrator configure to allow this access?

  • A. EUI-64
  • B. IPv6 tunneling
  • C. Dual stack
  • D. Virtual IP

Answer: D

Explanation:
A virtual IP (VIP) is an IP address that is shared by multiple servers or devices on a network. A VIP can be used to provide load balancing, failover, or high availability for services that are hosted on the network. A VIP can also be used to map an internal server's private IP address to a public IP address, allowing the server to host services on the internet. This is also known as network address translation (NAT) or port forwarding.
The other options are not correct because they are not related to mapping an internal server's IP address to a public IP address. They are:
* IPv6 tunneling is a technique that allows IPv6 packets to be encapsulated and transmitted over an IPv4 network.
* Dual stack is a configuration that allows a device to support both IPv4 and IPv6 protocols simultaneously.
* EUI-64 is a method of generating a 64-bit interface identifier for an IPv6 address based on the 48-bit MAC address of the device.
Reference
1: What is a Virtual IP Address (VIP)? - Definition from Techopedia
2: IPv6 Tunneling - an overview | ScienceDirect Topics
3: Dual Stack Definition
4: [EUI-64 - an overview | ScienceDirect Topics]


NEW QUESTION # 58
A network technician is working at a new office location and needs to connect one laptop to another to transfer files. The laptops are newer models and do not have Ethernet ports. Access points are not available either.
Which Of the following types Of wireless network SSIDs does the network technician need to configure to be able to connect the laptops together?

  • A. Basic Service Set
  • B. Independent Basic Service Set
  • C. Distribution System Service
  • D. Extended Service Set

Answer: B

Explanation:
Explanation
An Independent Basic Service Set (IBSS) is a type of wireless network that does not require an access point or a wired network. An IBSS allows wireless devices to communicate directly with each other using ad hoc mode. An IBSS is also known as an ad hoc network or a peer-to-peer network. A network technician can configure an IBSS to connect two laptops together and transfer files.
References: Network+ Study Guide Objective 1.4: Explain the properties and characteristics of TCP/IP


NEW QUESTION # 59
A network technician is installing new software on a Windows-based server in a different geographical location. Which of the following would be BEST for the technician to use to perform this task?

  • A. DNS
  • B. SSH
  • C. RDP
  • D. FTP

Answer: C

Explanation:
RDP (Remote Desktop Protocol) is the best option for a network technician to use when installing new software on a Windows-based server in a different geographical location. This protocol allows the technician to connect to the server remotely and control it as if they were physically present.
Reference:
Network+ N10-007 Certification Exam Objectives, Objective 2.2: Given a scenario, implement the appropriate network-based security and troubleshoot common connectivity issues.


NEW QUESTION # 60
Which of the following situations would require an engineer to configure subinterfaces?

  • A. In a router-on-a-stick deployment with multiple VLANs
  • B. When configuring VLAN trunk links between switches
  • C. After connecting a router that does not support 802.1Q VLAN tags
  • D. In order to enable inter-VLAN routing on a multilayer switch

Answer: A

Explanation:
A router-on-a-stick is a configuration that allows a single router interface to route traffic between multiple VLANs on a network1. A router-on-a-stick requires sub-interfaces to be configured on the router interface, one for each VLAN. Each sub-interface is assigned a VLAN ID and an IP address that belongs to the corresponding VLAN subnet. The router interface is connected to a switch port that is configured as a trunk port, which allows traffic from multiple VLANs to pass through. The router then performs inter-VLAN routing by forwarding packets between the sub-interfaces based on their destination IP addresses.
Inter-VLAN routing is a process that allows devices on different VLANs to communicate with each other. Inter-VLAN routing can be performed by a router-on-a-stick configuration, as explained above, or by a multilayer switch that has routing capabilities. A multilayer switch does not require sub-interfaces to be configured for inter-VLAN routing; instead, it uses switch virtual interfaces (SVIs) that are associated with each VLAN. An SVI is a logical interface that represents a VLAN on a switch and has an IP address that belongs to the VLAN subnet. The switch then performs inter-VLAN routing by forwarding packets between the SVIs based on their destination IP addresses.
VLAN trunking is a method that allows traffic from multiple VLANs to be carried over a single link between switches or routers. VLAN trunking requires the use of a tagging protocol, such as 802.1Q, that adds a header to each frame that identifies its VLAN ID. VLAN trunking does not require sub-interfaces to be configured on the switches or routers; instead, it uses trunk ports that are configured to allow or deny traffic from specific VLANs. The switches or routers then forward packets between the trunk ports based on their VLAN IDs.
802.1Q is a standard that defines how VLAN tagging and trunking are performed on Ethernet networks. 802.1Q adds a 4-byte header to each frame that contains a 12-bit field for the VLAN ID and a 3-bit field for the priority level. 802.1Q does not require sub-interfaces to be configured on the switches or routers; instead, it uses trunk ports that are configured to support 802.1Q tagging and untagging. The switches or routers then forward packets between the trunk ports based on their VLAN IDs and priority levels.


NEW QUESTION # 61
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