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ITN Chapter 4 Exam Online

Last Updated on May 20, 2021 by Admin

ITN Chapter 4 Exam Online

ITN -- Chapter 4 Exam

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ITN — Chapter 4 Exam

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  1. Question 1 of 23
    1. Question
    2 points
    What are two reasons for physical layer protocols to use frame encoding techniques? (Choose two.)
    Correct

    Incorrect

    An encoding technique converts a stream of data bits in a predefined code that can be recognized by both the transmitter and the receiver. Using predefined patterns helps to differentiate data bits from control bits and provide better media error detection.

    Hint

    An encoding technique converts a stream of data bits in a predefined code that can be recognized by both the transmitter and the receiver. Using predefined patterns helps to differentiate data bits from control bits and provide better media error detection.

  2. Question 2 of 23
    2. Question
    1 points
    What is indicated by the term throughput?
    Correct

    Incorrect

    Throughput is the measure of the transfer of bits across the media over a given period of time. Throughput is affected by a number of factors such as, EMI and latency, so it rarely matches the specified bandwidth for a network medium. The throughput measurement includes user data bits and other data bits, such as overhead, acknowledging, and encapsulation. The measure of the usable data transferred across the media is called goodput.

    Hint
    Throughput is the measure of the transfer of bits across the media over a given period of time. Throughput is affected by a number of factors such as, EMI and latency, so it rarely matches the specified bandwidth for a network medium. The throughput measurement includes user data bits and other data bits, such as overhead, acknowledging, and encapsulation. The measure of the usable data transferred across the media is called goodput.
  3. Question 3 of 23
    3. Question
    1 points
    What is the definition of bandwidth?
    Correct

    Incorrect

    Bandwidth is the measure of the capacity of a network medium to carry data. It is the amount of data that can move between two points on the network over a specific period of time, typically one second.

    Hint
    Bandwidth is the measure of the capacity of a network medium to carry data. It is the amount of data that can move between two points on the network over a specific period of time, typically one second.
  4. Question 4 of 23
    4. Question
    2 points

    A network administrator notices that some newly installed Ethernet cabling is carrying corrupt and distorted data signals. The new cabling was installed in the ceiling close to fluorescent lights and electrical equipment. Which two factors may interfere with the copper cabling and result in signal distortion and data corruption? (Choose two.)

    Correct

    Incorrect

    EMI and RFI signals can distort and corrupt data signals that are carried by copper media. These distortions usually come from radio waves and electromagnetic devices such as motors and florescent lights. Crosstalk is a disturbance that is caused by adjacent wires bundled too close together with the magnetic field of one wire affecting another. Signal attenuation is caused when an electrical signal begins to deteriorate over the length of a copper cable.

    Hint
    EMI and RFI signals can distort and corrupt data signals that are carried by copper media. These distortions usually come from radio waves and electromagnetic devices such as motors and florescent lights. Crosstalk is a disturbance that is caused by adjacent wires bundled too close together with the magnetic field of one wire affecting another. Signal attenuation is caused when an electrical signal begins to deteriorate over the length of a copper cable.
  5. Question 5 of 23
    5. Question
    1 points
    Which characteristic describes crosstalk?
    Correct

    Incorrect

    EMI and RFI can distort network signals because of interference from fluorescent lights or electric motors. Attenuation results in deterioration of the network signal as it travels along copper cabling. Wireless devices can experience loss of signals because of excessive distances from a access point, but this is not crosstalk. Crosstalk is the disturbance caused by the electric or magnetic fields of the signal carried on an adjacent wire within the same cable.

    Hint
    EMI and RFI can distort network signals because of interference from fluorescent lights or electric motors. Attenuation results in deterioration of the network signal as it travels along copper cabling. Wireless devices can experience loss of signals because of excessive distances from a access point, but this is not crosstalk. Crosstalk is the disturbance caused by the electric or magnetic fields of the signal carried on an adjacent wire within the same cable.
  6. Question 6 of 23
    6. Question
    1 points
    What technique is used with UTP cable to help protect against signal interference from crosstalk?
    Correct

    Incorrect

    To help prevent the effects of crosstalk, UTP cable wires are twisted together into pairs. Twisting the wires together causes the magnetic fields of each wire to cancel each other out.

    Hint
    To help prevent the effects of crosstalk, UTP cable wires are twisted together into pairs. Twisting the wires together causes the magnetic fields of each wire to cancel each other out.
  7. Question 7 of 23
    7. Question
    1 points

    Refer to the exhibit. The PC is connected to the console port of the switch. All the other connections are made through FastEthernet links. Which types of UTP cables can be used to connect the devices?​

    ITN Chapter 4 Exam Answers 001
    ITN Chapter 4 Exam Answers 001

    Correct

    Incorrect

    A straight-through cable is commonly used to interconnect a host to a switch and a switch to a router. A crossover cable is used to interconnect similar devices together like switch to a switch, a host to a host, or a router to a router. If a switch has the MDIX capability, a crossover could be used to connect the switch to the router; however, that option is not available. A rollover cable is used to connect to a router or switch console port.

    Hint
    A straight-through cable is commonly used to interconnect a host to a switch and a switch to a router. A crossover cable is used to interconnect similar devices together like switch to a switch, a host to a host, or a router to a router. If a switch has the MDIX capability, a crossover could be used to connect the switch to the router; however, that option is not available. A rollover cable is used to connect to a router or switch console port.
  8. Question 8 of 23
    8. Question
    1 points

    Refer to the exhibit. What is wrong with the displayed termination?

    ITN Chapter 4 Exam Answers 002
    ITN Chapter 4 Exam Answers 002

    Correct

    Incorrect

    When a cable to an RJ-45 connector is terminated, it is important to ensure that the untwisted wires are not too long and that the flexible plastic sheath surrounding the wires is crimped down and not the bare wires. None of the colored wires should be visible from the bottom of the jack.

    Hint
    When a cable to an RJ-45 connector is terminated, it is important to ensure that the untwisted wires are not too long and that the flexible plastic sheath surrounding the wires is crimped down and not the bare wires. None of the colored wires should be visible from the bottom of the jack.
  9. Question 9 of 23
    9. Question
    1 points
    Which type of connector does a network interface card use?
    Correct

    Incorrect

  10. Question 10 of 23
    10. Question
    1 points
    What is one advantage of using fiber optic cabling rather than copper cabling?
    Correct

    Incorrect

    Copper cabling is usually cheaper and easier to install than fiber optic cabling. However, fiber cables generally have a much greater signaling range than copper.

    Hint
    Copper cabling is usually cheaper and easier to install than fiber optic cabling. However, fiber cables generally have a much greater signaling range than copper.
  11. Question 11 of 23
    11. Question
    1 points
    Why are two strands of fiber used for a single fiber optic connection?
    Correct

    Incorrect

    Light can only travel in one direction down a single strand of fiber. In order to allow for full-duplex communication two strands of fiber must be connected between each device.

    Hint
    Light can only travel in one direction down a single strand of fiber. In order to allow for full-duplex communication two strands of fiber must be connected between each device.
  12. Question 12 of 23
    12. Question
    3 points
    A network administrator is designing the layout of a new wireless network. Which three areas of concern should be accounted for when building a wireless network? (Choose three.)
    Correct

    Incorrect

    The three areas of concern for wireless networks focus on the size of the coverage area, any nearby interference, and providing network security. Extensive cabling is not a concern for wireless networks, as a wireless network will require minimal cabling for providing wireless access to hosts. Mobility options are not a component of the areas of concern for wireless networks.

    Hint
    The three areas of concern for wireless networks focus on the size of the coverage area, any nearby interference, and providing network security. Extensive cabling is not a concern for wireless networks, as a wireless network will require minimal cabling for providing wireless access to hosts. Mobility options are not a component of the areas of concern for wireless networks.
  13. Question 13 of 23
    13. Question
    1 points
    Which layer of the OSI model is responsible for specifying the encapsulation method used for specific types of media?
    Correct

    Incorrect

    Encapsulation is a function of the data link layer. Different media types require different data link layer encapsulation.

    Hint
    Encapsulation is a function of the data link layer. Different media types require different data link layer encapsulation.
  14. Question 14 of 23
    14. Question
    1 points
    What is a role of the Logical Link Control sublayer?
    Correct

    Incorrect

    There are two data link sublayers, MAC and LLC. The LLC sublayer is responsible for communicating with the network layer and for tagging frames to identify what Layer 3 protocol is encapsulated.

    Hint
    There are two data link sublayers, MAC and LLC. The LLC sublayer is responsible for communicating with the network layer and for tagging frames to identify what Layer 3 protocol is encapsulated.
  15. Question 15 of 23
    15. Question
    2 points
    What are two services performed by the data link layer of the OSI model? (Choose two.)
    Correct

    Incorrect

    The data link layer is responsible for the exchange of frames between nodes over a physical network media. Specifically the data link layer performs two basic services:

    • It accepts Layer 3 packets and encapsulates them into frames.
    • It provides media access control and performs error detection.

    Path determination is a service provided at Layer 3. A Layer 2 switch builds a MAC address table as part of its operation, but path determination is not the service that is provided by the data link layer.

    Hint

    The data link layer is responsible for the exchange of frames between nodes over a physical network media. Specifically the data link layer performs two basic services:

    • It accepts Layer 3 packets and encapsulates them into frames.
    • It provides media access control and performs error detection.

    Path determination is a service provided at Layer 3. A Layer 2 switch builds a MAC address table as part of its operation, but path determination is not the service that is provided by the data link layer.

  16. Question 16 of 23
    16. Question
    1 points
    What is true concerning physical and logical topologies?
    Correct

    Incorrect

    Physical topologies show the physical interconnection of devices. Logical topologies show the way the network will transfer data between connected nodes.

    Hint
    Physical topologies show the physical interconnection of devices. Logical topologies show the way the network will transfer data between connected nodes.
  17. Question 17 of 23
    17. Question
    2 points
    What are two examples of hybrid topologies? (Choose two.)
    Correct

    Incorrect

    A hybrid topology is one that is a variation or a combination of other topologies. Both partial mesh and the extended star are examples of hybrid topologies.

    Hint
    A hybrid topology is one that is a variation or a combination of other topologies. Both partial mesh and the extended star are examples of hybrid topologies.
  18. Question 18 of 23
    18. Question
    1 points
    Which method of data transfer allows information to be sent and received at the same time?
    Correct

    Incorrect

  19. Question 19 of 23
    19. Question
    1 points
    Which statement describes an extended star topology?
    Correct

    Incorrect

    In an extended star topology, central intermediate devices interconnect other star topologies.

    Hint
    In an extended star topology, central intermediate devices interconnect other star topologies.
  20. Question 20 of 23
    20. Question
    1 points
    What is contained in the trailer of a data-link frame?
    Correct

    Incorrect

    The trailer in a data-link frame contains error detection information that is pertinent to the frame included in the FCS field. The header contains control information, such as the addressing, while the area that is indicated by the word “data” includes the data, transport layer PDU, and the IP header.

    Hint
    The trailer in a data-link frame contains error detection information that is pertinent to the frame included in the FCS field. The header contains control information, such as the addressing, while the area that is indicated by the word “data” includes the data, transport layer PDU, and the IP header.
  21. Question 21 of 23
    21. Question
    1 points
    As data travels on the media in a stream of 1s and 0s how does a receiving node identify the beginning and end of a frame?​
    Correct

    Incorrect

    When data travels on the media, it is converted into a stream of 1s and 0s. The framing process inserts into the frame start and stop indicator flags so that the destination can detect the beginning and end of the frame.

    Hint
    When data travels on the media, it is converted into a stream of 1s and 0s. The framing process inserts into the frame start and stop indicator flags so that the destination can detect the beginning and end of the frame.
  22. Question 22 of 23
    22. Question
    1 points
    What is the function of the CRC value that is found in the FCS field of a frame?
    Correct

    Incorrect

    The CRC value in the FCS field of the received frame is compared to the computed CRC value of that frame, in order to verify the integrity of the frame. If the two values do not match, then the frame is discarded.

    Hint
    The CRC value in the FCS field of the received frame is compared to the computed CRC value of that frame, in order to verify the integrity of the frame. If the two values do not match, then the frame is discarded.
  23. Question 23 of 23
    23. Question
    6 points

    Match the characteristics to the correct type of fiber. (Not all options are used.)

    Sort elements
    • generally used with LANs
    • several paths of light into the fiber
    • LED as light source
    • laser as light source
    • only on ray of light into the fiber
    • generally used for campus backbone
    • supports full-duplex operation
    • Multimode Fiber
      • Multimode Fiber
        • Multimode Fiber
          • Single-mode Fiber
            • Single-mode Fiber
              • Single-mode Fiber
                Correct

                Incorrect

                Single-mode fiber uses a laser as the light source. Its small core produces a single straight path for light and it is commonly used with campus backbones. Multimode fiber uses LEDs as the light source. Its larger core allows for multiple paths for the light. It is commonly used with LANs.

                Hint
                Single-mode fiber uses a laser as the light source. Its small core produces a single straight path for light and it is commonly used with campus backbones. Multimode fiber uses LEDs as the light source. Its larger core allows for multiple paths for the light. It is commonly used with LANs.
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