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N10-009 exam dumps: questions 101 to 200 of 329

Page 2 of the free N10-009 question bank for the Network+ exam. Questions 101 to 200 are listed below, the first 5 in full with answers and explanations. Back to page 1 for the exam overview and FAQ.

Question bank last updated June 2026

Free N10-009 practice questions

Questions 101 to 105 of 329

Pick an answer before you open the explanation. Each question also has its own page with a permalink.

N10-009 Question 101

Single answerForm factors: Small form-factor pluggable (SFP), Quad small form-factor pluggable (QSFP)

A network administrator is upgrading the uplinks between a top-of-rack switch and the data center core. The new core switch has QSFP+ ports available, while the existing top-of-rack switch has SFP+ 10 GbE uplink ports. The administrator needs to provide four separate 10 GbE connections from a single port on the core switch to the top-of-rack switch, using supported modular interfaces rather than replacing either switch. Which solution should the administrator choose?

  1. A

    Install a QSFP+ to 4x SFP+ breakout cable on the core switch and connect the four 10 GbE lanes to the SFP+ ports on the top-of-rack switch

  2. B

    Install a standard SFP transceiver in the QSFP+ port on the core switch and connect it directly to one SFP+ port on the top-of-rack switch

  3. C

    Use a QSFP28 transceiver in the core switch port because QSFP28 is backward compatible with all SFP+ interfaces

  4. D

    Use an RJ45 copper transceiver in the QSFP+ port and split it into four Ethernet patch cables to the top-of-rack switch

Show answer and explanation

Correct answer: A

Explanation

The best solution is to use a QSFP+ to 4x SFP+ breakout cable, assuming both the core switch and its operating system support breakout mode on that port. In practical deployments, QSFP+ commonly supports 40 GbE, which can be divided into four 10 GbE lanes for connectivity to SFP+ interfaces. This is a standard use case in data centers where higher-density aggregation switches connect to access or top-of-rack switches with 10 GbE uplinks. By contrast, SFP and QSFP are different physical form factors and are not directly interchangeable. Network+ candidates should recognize both the physical differences and the operational use case: SFP/SFP+ is typically used for single-lane links, while QSFP/QSFP+ supports multi-lane higher-bandwidth connectivity and, on supported platforms, breakout into multiple lower-speed links. Vendor documentation from major switch manufacturers such as Cisco, Juniper, and Arista commonly notes that breakout support is platform- and port-specific, so verifying compatibility is a best practice before deployment.

  • A. Correct.

    Correct. A QSFP+ port can be used for breakout in many supported switch platforms, allowing one 40 GbE QSFP+ interface to split into four independent 10 GbE links. This is a common data center design when a higher-density core switch must connect to multiple SFP+ interfaces on another switch. The key is that the switch hardware and software must support breakout mode, and the correct breakout cable or optics must be used.

  • B. Incorrect.

    Incorrect. A standard SFP transceiver does not fit into a QSFP+ port because the form factors are physically different. Even though both are pluggable optics, QSFP+ and SFP/SFP+ are not interchangeable modules. This option reflects a common misconception that any pluggable optic can be inserted into any modular port.

  • C. Incorrect.

    Incorrect. QSFP28 is a 100 GbE form factor and is not universally backward compatible with SFP+ interfaces. A QSFP28 module also does not solve the requirement to present four separate 10 GbE links to SFP+ ports unless the specific hardware supports an appropriate breakout configuration. Assuming all newer form factors are automatically compatible with older ones is a common error.

  • D. Incorrect.

    Incorrect. QSFP+ ports are not designed to be converted into four separate RJ45 Ethernet patch cable connections with a simple split. Ethernet links require supported transceivers, signaling standards, and switch support. Passive cable splitting of one switched uplink into multiple independent RJ45 links is not how modular Ethernet uplinks work.

N10-009 Question 102

Single answer

A network technician is upgrading a data center link from several individual duplex fiber patch cables to a high-density backbone between two top-of-rack patch panels. The new hardware is designed to carry multiple fiber strands in a single connector to reduce cable bulk and speed deployment. Which connector type should the technician choose?

  1. A

    LC

  2. B

    SC

  3. C

    ST

  4. D

    MPO

  5. E

    RJ45

Show answer and explanation

Correct answer: D

Explanation

The key phrase in the scenario is that the technician needs to carry multiple fiber strands in a single connector for a high-density backbone. That requirement points to MPO, which is widely used in modern data centers for structured fiber trunking and breakout/cassette systems. By contrast, LC, SC, and ST are all fiber connector types, but they are used for individual fiber terminations rather than bundling many fibers into one connector body. RJ45 is a copper connector and is not relevant for fiber backbones. This aligns with common industry cabling practices and structured cabling guidance, such as TIA-568 family standards and manufacturer documentation for data center fiber cabling systems, where MPO is identified for multi-fiber, high-density applications.

  • A. Incorrect.

    LC is incorrect. LC (Local Connector) is a small form-factor fiber connector commonly used for duplex fiber connections in switches, SFP/SFP+ transceivers, and patch panels. It is popular in high-density environments because of its small size, but each LC connector typically terminates a single fiber, with duplex links commonly using a paired LC arrangement. It does not provide the multi-fiber trunk capability described in the scenario.

  • B. Incorrect.

    SC is incorrect. SC (Subscriber Connector or sometimes referred to as Standard Connector) is a fiber connector with a push-pull design and is commonly used for single-fiber terminations, often in duplex pairs. While reliable and widely deployed, SC is larger than LC and is not the connector typically selected when the goal is to carry many fiber strands through one physical connector for backbone density.

  • C. Incorrect.

    ST is incorrect. ST (Straight Tip) is a fiber connector that uses a bayonet-style twist lock. It is more commonly associated with older fiber installations. Like SC and LC, ST is used for individual fiber terminations rather than consolidating many fibers into one connector body. A candidate might choose ST because it is a known fiber connector, but it does not match the high-density multi-fiber requirement.

  • D. Correct.

    MPO is correct. MPO (Multi-fiber Push On) is specifically designed to terminate multiple fiber strands in a single connector, making it well suited for data center backbones, cassette-based deployments, and high-density trunk cabling. This directly matches the requirement to replace multiple duplex patch cables with a connector that reduces cable bulk and speeds deployment.

  • E. Incorrect.

    RJ45 is incorrect. RJ45 is an 8P8C modular connector commonly used for twisted-pair Ethernet cabling, not fiber-optic trunk connections. It would be appropriate for copper Ethernet links, but it cannot carry the multi-strand fiber backbone described in the scenario.

N10-009 Question 103

Single answer

A network administrator is upgrading a data center link between two 40GbE switches. The new transceivers use parallel optics and require a single connector that can carry multiple fiber strands in one plug. The administrator also wants to avoid using several separate duplex fiber patch cables. Which connector type should the administrator select?

  1. A

    LC

  2. B

    SC

  3. C

    ST

  4. D

    MPO

  5. E

    RJ45

Show answer and explanation

Correct answer: D

Explanation

The correct answer is MPO. In real-world data center deployments, 40GbE and some 100GbE implementations commonly use parallel optics that transmit and receive over multiple fiber strands simultaneously. MPO connectors support this by packaging multiple fibers into a single high-density connector, reducing cable bulk compared with using multiple separate duplex assemblies. By contrast, LC, SC, and ST are fiber connector types intended for one or two fibers per connectorized link, with LC being especially common for duplex optics. RJ45 is used for copper Ethernet, not fiber. This aligns with common structured cabling and transceiver practices documented by cabling manufacturers and Ethernet physical media standards used in data centers.

  • A. Incorrect.

    LC is incorrect. LC is a small form-factor fiber connector commonly used for duplex fiber links, especially with SFP/SFP+ optics. While very common in enterprise networks, it is designed for one fiber pair per connector assembly rather than a single multi-fiber connector for parallel optics used in many 40GbE deployments.

  • B. Incorrect.

    SC is incorrect. SC is a square, push-pull fiber connector often found in older enterprise fiber installations. It can support high-speed fiber links, but it does not provide the multi-fiber array format typically used for parallel-optics 40GbE connections.

  • C. Incorrect.

    ST is incorrect. ST is a bayonet-style fiber connector more commonly associated with older fiber installations. It is not the standard choice for modern high-density parallel-optics 40GbE switch uplinks that require multiple fibers in a single connector.

  • D. Correct.

    MPO is correct. MPO (Multi-fiber Push On) is designed to terminate multiple fiber strands in one connector and is widely used in high-density data center environments. It is commonly associated with parallel-optics applications such as 40GbE and 100GbE, where multiple transmit and receive fibers are bundled into a single connector.

  • E. Incorrect.

    RJ45 is incorrect. RJ45 is an 8P8C modular connector used for twisted-pair Ethernet cabling such as Cat 5e, Cat 6, and Cat 6A. It is not a fiber connector and cannot be used with fiber transceivers that require parallel optical connections.

N10-009 Question 104

Single answer1.6 Compare and contrast network topologies, architectures, and types.

A manufacturing company is renovating a large warehouse and needs to add network connectivity for handheld scanners, security cameras, and a small number of office workstations on a new mezzanine. Running new copper cabling to every device is expensive because the ceiling space is limited. The network administrator proposes installing several wireless access points that connect back to the wired network, while office workstations in the mezzanine will still use wired drops to a central switch. Which topology and architecture best describe this design?

  1. A

    Bus topology with peer-to-peer architecture

  2. B

    Star topology with client-server architecture

  3. C

    Ring topology with peer-to-peer architecture

  4. D

    Mesh topology with client-server architecture

Show answer and explanation

Correct answer: B

Explanation

This scenario tests the difference between topology and architecture. Topology refers to how devices are interconnected, while architecture refers to how hosts interact logically. In modern Ethernet LANs, the most common physical topology is a star, with endpoints connecting to a central switch or, in the case of wireless devices, to an access point that uplinks into the wired infrastructure. This remains effectively a star topology from an access-layer perspective. The architecture is client-server because enterprise endpoints typically depend on centralized resources such as DHCP, DNS, directory services, NVR platforms for cameras, and application servers. This aligns with standard networking design guidance used in enterprise LANs and reflected in CompTIA Network+ objectives covering topologies, architectures, and network types.

  • A. Incorrect.

    Incorrect. A bus topology uses a single shared backbone segment, which is not how modern Ethernet and WLAN deployments are typically designed. The scenario describes endpoints connecting through access points and a central switch, not a shared coaxial bus. Peer-to-peer architecture is also not indicated because enterprise devices such as scanners, cameras, and workstations usually rely on centralized services such as authentication, file access, and management.

  • B. Correct.

    Correct. The physical design described is a star topology because devices connect through centralized infrastructure components, specifically wireless access points and a central switch. Even though some endpoints are wireless, they still associate to an access point that uplinks to the network, preserving a star-style layout. The architecture is best described as client-server because the endpoints are expected to consume centralized network services rather than operate as equals in a peer-to-peer model.

  • C. Incorrect.

    Incorrect. A ring topology requires devices or network nodes to be connected in a circular path, which is not shown in this scenario. Modern enterprise access-layer networks are not commonly deployed as rings for endpoint connectivity. Peer-to-peer is also not supported by the scenario because the organization is using managed infrastructure and likely centralized services.

  • D. Incorrect.

    Incorrect. A full or partial mesh topology involves nodes having multiple interconnections for redundancy, which is common in backbone, WAN, or wireless backhaul designs, not in a basic warehouse access network for endpoints. The scenario does not describe multiple redundant links among access points or switches. While client-server architecture could exist in the environment, the topology itself is not mesh.

N10-009 Question 105

Single answer1.6 Compare and contrast network topologies, architectures, and types.

A manufacturing company is opening a temporary remote job site for 40 engineers and contractors. The site has no existing cabling, must be operational within two days, and users need access to file shares, VoIP, and cloud-based project management tools. The company also wants to avoid relying on a single wireless access point because metal equipment on the site creates interference and coverage gaps. Which network design is the BEST fit for this environment?

  1. A

    Deploy an ad hoc wireless network so client devices can connect directly to each other without centralized infrastructure

  2. B

    Deploy a wired bus topology with all workstations sharing a single backbone cable to minimize installation time and cost

  3. C

    Deploy an infrastructure wireless network using multiple centrally managed access points connected back to a switch

  4. D

    Deploy a ring topology so traffic can continue circulating even if one workstation is powered off

Show answer and explanation

Correct answer: C

Explanation

The key requirement is to choose a topology and architecture that matches a temporary business site needing fast deployment, reliable access, and resilient wireless coverage. The best answer is an infrastructure wireless network with multiple centrally managed APs uplinked to a switch. In Network+ terms, this combines a wireless infrastructure architecture with a practical star-based access design on the wired side. It supports centralized authentication and management, better roaming, improved performance, and easier troubleshooting than ad hoc wireless. It also avoids outdated topologies such as bus and ring, which are not standard for modern enterprise LAN deployments. This aligns with common enterprise networking best practices and vendor design guidance from major wireless vendors, which recommend managed multi-AP infrastructure designs for business environments requiring coverage, capacity, and security.

  • A. Incorrect.

    Incorrect. An ad hoc wireless network is a peer-to-peer wireless arrangement in which devices communicate directly without an access point. While it can be quick for very small, temporary connections, it is not appropriate for 40 users needing reliable access to file shares, VoIP, and cloud services. It also lacks the centralized management, scalability, security controls, and roaming behavior expected in a business environment.

  • B. Incorrect.

    Incorrect. A bus topology uses a shared backbone cable and is largely obsolete in modern Ethernet deployments. It does not provide the reliability or performance needed for voice and business applications, and a fault or signal issue on the backbone can affect all connected devices. Modern enterprise wired networks use switched star topologies rather than bus designs.

  • C. Correct.

    Correct. An infrastructure wireless design with multiple access points connected to a switch is the best choice for a temporary site that needs to be deployed quickly while still supporting business applications. Multiple APs improve coverage and capacity, and centrally managed APs allow better channel planning and power adjustment to address interference from metal equipment. This is a practical example of using a wireless infrastructure architecture rather than a peer-to-peer or legacy topology.

  • D. Incorrect.

    Incorrect. Ring topology is not the best fit for this scenario. Traditional ring networks are uncommon in modern enterprise access networks, and they do not address the stated need for rapid deployment, wireless coverage, and support for mobile users. The option also suggests workstation participation in the ring, which is not how current business LANs are typically designed.

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N10-009 practice questions 101 to 200 of 329

Every question has a page with the answer and explanation. Numbers are stable, so you can bookmark or share them. The bank is split into 4 pages of up to 100 questions.

  1. 101.A network administrator is upgrading the uplinks between a top-of-rack switch and the data center core. The...
  2. 102.A network technician is upgrading a data center link from several individual duplex fiber patch cables to a...
  3. 103.A network administrator is upgrading a data center link between two 40GbE switches. The new transceivers use...
  4. 104.A manufacturing company is renovating a large warehouse and needs to add network connectivity for handheld...
  5. 105.A manufacturing company is opening a temporary remote job site for 40 engineers and contractors. The site has...
  6. 106.A company is building a new virtualized data center for an internal private cloud. The environment will host...
  7. 107.A company is building a new virtualized data center to host hundreds of east-west traffic flows between...
  8. 108.A company is redesigning its campus network for a three-story office building using the three-tier...
  9. 109.A company is redesigning its campus network for three office floors. Users on each floor connect to local...
  10. 110.A company is moving into a new three-story office with about 120 employees. The network administrator wants a...
  11. 111.A company is moving into a new three-floor office with about 120 employees. The network administrator wants a...
  12. 112.A company hosts several application servers and database servers in its on-premises data center. Users from...
  13. 113.A company hosts a customer-facing web application in its data center. Users on the internet connect to a...
  14. 114.A network administrator is redesigning the addressing scheme for a branch office. The office has 5...
  15. 115.A network administrator is configuring a new IPv4 subnet for a branch office. The office has 50 employee...
  16. 116.A technician is troubleshooting a user workstation that cannot access internal file shares or the internet....
  17. 117.A technician is troubleshooting a user's Windows laptop that cannot access the company intranet or the...
  18. 118.A network administrator is redesigning addressing for a small campus using the 192.168.50.0/24 network. The...
  19. 119.A network administrator is assigned the CIDR block 10.20.40.0/24 for a new branch office. The office has...
  20. 120.A network administrator is reviewing firewall logs and notices traffic being sent to 239.1.1.1 during a video...
  21. 121.A network technician is reviewing firewall logs for a training lab after several students reported unusual...
  22. 122.A retail company is redesigning its network for a new group of small pop-up stores. Each site has only a...
  23. 123.A manufacturing company is deploying hundreds of wireless temperature and vibration sensors across a...
  24. 124.A retail company is replacing traditional branch routers with an SD-WAN solution across 60 stores. Each store...
  25. 125.A retail company is replacing traditional branch routers with an SD-WAN solution at 60 small stores. Each...
  26. 126.A company is connecting two data centers over an IP-based data center interconnect (DCI). Several legacy...
  27. 127.A company is expanding a private cloud across two data centers and must move several virtual machines between...
  28. 128.A company is replacing its traditional VPN with a zero trust architecture (ZTA) solution for internal web...
  29. 129.A company is replacing its legacy VPN with a zero trust architecture (ZTA) solution for internal web...
  30. 130.A company has moved most of its applications to SaaS platforms and now has a largely remote workforce. Users...
  31. 131.A company has moved most of its applications to SaaS platforms and now supports a large remote workforce....
  32. 132.A network operations team uses infrastructure as code to manage configurations on hundreds of branch routers...
  33. 133.A network team manages switch and router configurations across multiple branch offices using infrastructure...
  34. 134.A network operations team stores firewall policies, switch configurations, and router templates in a...
  35. 135.A network operations team stores router and firewall configuration templates in a Git-based central...
  36. 136.A company has exhausted its public IPv4 address space and is rolling out IPv6 across its internal network....
  37. 137.A company has run out of available IPv4 addresses for new client devices. The network team enables IPv6 on...
  38. 138.A company is merging two branch offices into its WAN. The network team wants routing to adapt automatically...
  39. 139.A company has a headquarters location and 18 branch offices connected over WAN links. The network team wants...
  40. 140.A small branch office has a single router connected to the headquarters router over a point-to-point WAN...
  41. 141.A network administrator connects a small branch office to headquarters using a single WAN router. The branch...
  42. 142.A midsize company has two internet connections: one to ISP-A and one to ISP-B. The company also runs OSPF...
  43. 143.A company is merging with another organization and needs to exchange route information between the two...
  44. 144.A branch office router has two paths to reach the 10.50.20.0/24 network. One path is a static route pointing...
  45. 145.A network administrator is troubleshooting why traffic from a branch office to the 10.50.20.0/24 server...
  46. 146.A small company has 45 employee workstations on a private IPv4 network using addresses in the 192.168.50.0/24...
  47. 147.A small company has 120 internal workstations using private IPv4 addresses. The ISP has provided only one...
  48. 148.A network administrator is configuring gateway redundancy for a user VLAN with two Layer 3 switches. Hosts on...
  49. 149.A network administrator is configuring two Layer 3 switches to provide gateway redundancy for users on VLAN...
  50. 150.A network administrator is troubleshooting connectivity between VLAN 10 and a remote branch office. The...
  51. 151.A network administrator is troubleshooting traffic from the 10.20.30.0/24 VLAN, which reaches other internal...
  52. 152.A network administrator is replacing an unmanaged switch in a small office with a managed Layer 2 switch. The...
  53. 153.A network administrator is replacing an unmanaged switch with a managed Layer 2 switch in a small office. The...
  54. 154.A network administrator creates VLAN 20 for the accounting department on a Layer 2 switch and assigns several...
  55. 155.A network administrator is deploying a new VLAN for the accounting department on a Layer 3 switch. Users in...
  56. 156.A network administrator is deploying new IP phones with built-in two-port switches so that each user's PC...
  57. 157.A network administrator is deploying IP phones with built-in PC pass-through ports on an access switch. Users...
  58. 158.A network administrator is upgrading wireless coverage in a crowded office that occupies one floor of a...
  59. 159.A healthcare clinic is expanding into a newly renovated wing where staff will use wireless tablets for access...
  60. 160.A network administrator is redesigning Wi-Fi in a European office that uses several 5 GHz access points....
  61. 161.A network administrator is troubleshooting poor Wi-Fi performance in a European office. The 2.4 GHz WLAN uses...
  62. 162.A network administrator is upgrading wireless access in a modern office. The environment includes older...
  63. 163.A company upgrades its office wireless network with new tri-band access points that support 2.4GHz, 5GHz, and...
  64. 164.A network administrator is troubleshooting Wi-Fi roaming issues in a warehouse. Three access points are...
  65. 165.A network administrator is troubleshooting roaming issues in a corporate office with three wireless access...
  66. 166.A construction company is deploying temporary network connectivity at a remote job site. There is no existing...
  67. 167.A construction company is deploying temporary network connectivity at a large outdoor job site. There is no...
  68. 168.A company is replacing its wireless infrastructure in a mixed-device environment. The security team wants the...
  69. 169.A company is upgrading its wireless network in a shared office building. The security team wants to reduce...
  70. 170.A hotel deploys a guest Wi-Fi SSID that uses a captive portal to require users to accept terms of service...
  71. 171.A hotel provides a guest Wi-Fi SSID that uses a captive portal to display the acceptable use policy and...
  72. 172.A company is replacing its single wireless password on the corporate SSID after discovering that several...
  73. 173.A company with 250 employees is replacing its office Wi-Fi. Management wants each employee to sign in with...
  74. 174.A network technician is asked to extend wireless connectivity from the main office building to a warehouse...
  75. 175.A network technician is asked to extend Wi-Fi from the main office to a detached warehouse located 250 meters...
  76. 176.A company is opening a temporary training facility with six wireless access points. The site has a small IT...
  77. 177.A company is moving from a single office with three standalone wireless access points to a new campus with 40...
  78. 178.A network technician is installing copper Ethernet cabling for several wall-mounted wireless access points in...
  79. 179.A network technician is installing copper Ethernet cabling for several desktop workstations in a...
  80. 180.A network administrator is upgrading a three-floor office building. The ISP demarcation point, edge router,...
  81. 181.A network administrator is upgrading access-layer switching in a three-story office building. The building...
  82. 182.A hospital is upgrading a wiring closet that contains copper terminations for office drops and fiber uplinks...
  83. 183.A hospital is renovating an IDF that serves several patient-care areas. The network administrator must reduce...
  84. 184.A network administrator is installing a new rack of equipment in a small server room. The rack will contain a...
  85. 185.A network administrator is adding two new PoE access switches to a small server room. The rack already...
  86. 186.A company has experienced two environmental incidents in its small server room over the last year. During the...
  87. 187.A company is converting a small office storage room into a network closet for switches, patch panels, and a...
  88. 188.A network administrator needs to upgrade firmware on several core switches during a planned maintenance...
  89. 189.A network administrator needs to replace a failed core switch in the middle of the business day. The...
  90. 190.A network administrator is troubleshooting a connectivity issue after a branch office move. Users can reach...
  91. 191.A network administrator is preparing for a weekend change window to replace a failed access switch in a...
  92. 192.A network administrator is preparing for a scheduled replacement of several aging access switches at a branch...
  93. 193.A network administrator is preparing for a planned replacement of several aging access switches across three...
  94. 194.A company is opening a new floor in its office and plans to support VoIP handsets, laptops, and barcode...
  95. 195.A company is opening a new floor in its office and has committed in a customer-facing SLA to provide at least...
  96. 196.A company is preparing for a security audit and discovers that several branch-office routers are still in...
  97. 197.A company is replacing several branch-office routers after the vendor announced the hardware is end-of-life...
  98. 198.A network administrator receives a request from the facilities team to activate two unused switch ports for...
  99. 199.A network administrator receives an email from the facilities manager asking for two new Ethernet drops to be...
  100. 200.A network administrator applied a security hardening update to a core switch late at night. The next morning,...