| Which data link layer protocol is used to carry frames across a Frame Relay link? | |||||||||||||
| | HDLC | ||||||||||||
| | PPP | ||||||||||||
| | LAPD | ||||||||||||
| | LAPF | ||||||||||||
| | Frame Relay | ||||||||||||
| Which of the following statements are true about a basic Frame Relay WAN connection between a customer and the service provider? (Choose two.) |
| ||||||||||||
| | DTE devices such as routers and FRADs transmit user data. |
| |||||||||||
| | DTE devices such as Frame Relay switches transport the data between DTE devices. |
| |||||||||||
| | An Ethernet connection between the router and the frame relay switch allow access to the frame relay network. |
| |||||||||||
| | Serial connections between the customer and the frame relay network are used to transport data. |
| |||||||||||
| | The Frame Relay WAN is a mesh of interconnected routers |
| |||||||||||
| How does Frame Relay technology process frames that contain errors? (Choose two.) |
| ||||||||||||
| | Frame Relay services depend on the upper layer protocols to handle error recovery. |
| |||||||||||
| | It requires the receiving device to request that the sender retransmit erroneous frames. |
| |||||||||||
| | FECN, BECN, and DE bits are set in the frames to minimize errors. |
| |||||||||||
| | The receiving device drops any frames that contain errors without notifying the sender. |
| |||||||||||
| | The frame relay switch notifies the sender that errors were detected. |
| |||||||||||
| Which features make Frame Relay technology a cost-effective alternative to a mesh of dedicated leased lines? (Choose three.) |
| ||||||||||||
| | allows a single interface to support multiple PVCs |
| |||||||||||
| | minimizes the equipment required to be purchased by the customer |
| |||||||||||
| | requires one router interface for each PVC |
| |||||||||||
| | provides the customer with redundancy if a single interface goes down |
| |||||||||||
| | allows the customer to pay for the average bandwidth requirement rather than the maximum bandwidth requirement |
| |||||||||||
| Which methods are used to minimize heavy traffic on a Frame Relay network? (Choose two.) |
| ||||||||||||
| | FRADs or routers set ECN bits to request that the Frame Relay switch reduce the flow of frames on the link. |
| |||||||||||
| | Windowing is used to reduce the size of the frames sent across the link. |
| |||||||||||
| | The Frame Relay switch will drop packets that have the DE bit set. |
| |||||||||||
| | When a switch sees its queue increasing, it notifies DTEs to reduce the flow of traffic. |
| |||||||||||
| | When congestion occurs, all frames are dropped until the congestion clears. |
| |||||||||||
| What does a DLCI of 1023 indicate about a frame? |
| ||||||||||||
| | The LMI type is ANSI. |
| |||||||||||
| | The LMI type is IETF. |
| |||||||||||
| | The LMI type is Cisco. |
| |||||||||||
| | The LMI type is Q933a. |
| |||||||||||
| | The encapsulation is Cisco. |
| |||||||||||
| | The encapsulation is IETF |
| |||||||||||
| Which of the following allow the router to map data link layer addresses to network layer addresses in a Frame Relay network? (Choose two.) |
| ||||||||||||
| | ARP |
| |||||||||||
| | RARP |
| |||||||||||
| | Proxy ARP |
| |||||||||||
| | Inverse ARP |
| |||||||||||
| | LMI status messages |
| |||||||||||
| | ICMP |
| |||||||||||
|
|
| ||||||||||||
| | 110 |
| |||||||||||
| | 115 |
| |||||||||||
| | 220 |
| |||||||||||
| | 225 |
| |||||||||||
| What is created between two DTEs in a Frame Relay network? |
| ||||||||||||
| | switched parallel circuit |
| |||||||||||
| | permanent virtual circuit |
| |||||||||||
| | limited access circuit |
| |||||||||||
| | ISDN circuit |
| |||||||||||
| | Frame Relay circuit |
| |||||||||||
| Which bits are set in the data frames to request that a device reduce the flow of data sent to or from a Frame Relay switch? |
| ||||||||||||
| | EIR bits |
| |||||||||||
| | ECN bits |
| |||||||||||
| | CIR bits |
| |||||||||||
| | DE bits |
| |||||||||||
| | Window bits |
| |||||||||||
|
|
| ||||||||||||
| | Router(config)# ip route 192.168.192.4 255.255.255.0 17 broadcast |
| |||||||||||
| | Router(config-if)# frame-relay lmi-type cisco 17 |
| |||||||||||
| | Router(config-if)# frame-relay map ip 192.168.192.4 17 broadcast |
| |||||||||||
| | Router(config-if)# ip address 192.168.192.4 255.255.255.0 DLCI 17 static |
| |||||||||||
| | Router(config-if)# interface S0/0.1 point-to-point |
| |||||||||||
| | Router(config-if)# encapsulation frame-relay cisco |
| |||||||||||
| Which of the following occurs when the command frame-relay map ip 10.1.1.1 22 is configured on the router? (Choose two.) |
| ||||||||||||
| | DLCI 22 will replace the MAC address in the ARP table for entry 10.1.1.1 |
| |||||||||||
| | The remote circuit with DLCI 22 can receive a ping. |
| |||||||||||
| | Inverse-ARP will be used to add an entry for 10.1.1.1 into the frame-relay map table using DLCI 22. |
| |||||||||||
| | Pings to 10.1.1.1 will be sent on the circuit labeled DLCI 22. |
| |||||||||||
| | The router will use DLCI 22 to forward data to 10.1.1.1. |
| |||||||||||
|
|
| ||||||||||||
| | The cable between the CSU/DSU and the router is disconnected. |
| |||||||||||
| | The serial 0/0 interface is shutdown. |
| |||||||||||
| | The router is not configured for the same frame-relay PVC as the switch. |
| |||||||||||
| | The LMI type on the frame-relay switch is NOT ANSI. |
| |||||||||||
| | The address of the frame-relay switch is not in the routing table |
| |||||||||||
|
|
| ||||||||||||
| | The output in the debug frame-relay lmi command will indicate status 0x2 for DLCI 18. |
| |||||||||||
| | DLCI 16 was correctly programmed on the switch, but the remote router may be misconfigured. |
| |||||||||||
| | The frame relay switch is sending LMI status messages about DLCI 16 to the Singapore router. |
| |||||||||||
| | Congestion has been experienced on DLCI 18. |
| |||||||||||
| | Some packets have been set to be dropped if congestion is experienced on the PVC. |
| |||||||||||
|
| ||||||||||||
| What is the purpose of the FCS field in a Frame Relay frame? |
| ||||||||||||
| | It serves to distinguish one frame from the next. |
| |||||||||||
| | It is used to signal network congestion. |
| |||||||||||
| | It is used to detect if the frame has been corrupted and should be discarded. |
| |||||||||||
| | It determines which VC should be used for transmission |
| |||||||||||
| Why are full mesh topologies seldom found in large Frame Relay networks? |
| ||||||||||||
| | Additional hardware is required to achieve the mesh. |
| |||||||||||
| | The additional virtual circuits slow the link access speeds. |
| |||||||||||
| | The required number of links becomes prohibitive. |
| |||||||||||
| | Additional interfaces are required since each can only support 10 virtual circuits. |
| |||||||||||
| | The speed of transmission slows in inverse proportion to the square of the number of links. |
| |||||||||||
| Why keepalive mechanism added as an extention to the Local Management Interface in a Frame Relay network? |
| ||||||||||||
| | to identify which routers were experiencing congestion |
| |||||||||||
| | to verify the status of PVCs in the frame relay network |
| |||||||||||
| | to dynamically map a MAC address to an IP address in a Frame Relay network |
| |||||||||||
| | to signal to the router the status of the routing protocols configured in the Frame Relay network |
| |||||||||||
| Which of the following DLCIs are reserved? |
| ||||||||||||
| | 16 |
| |||||||||||
| | 127 |
| |||||||||||
| | 255 |
| |||||||||||
| | 1023 |
| |||||||||||
| | 2048 |
| |||||||||||
| Which statement identifies a reason for using point-to-point subinterfaces in Frame Relay networks? |
| ||||||||||||
| | Subinterfaces overcome routing update and split-horizon issues that occur with multipoint logical interfaces on a single physical interface. |
| |||||||||||
| | A point-to-point subinterface does not require an IP address and therefore saves address space. |
| |||||||||||
| | Point-to-point subinterfaces provide greater reliability and reachability in Frame Relay networks by requiring a mesh topology for network configurations. |
| |||||||||||
| | Point-to-point subinterfaces increase the number of DLCIs that can be configured in a Frame Relay network. |
| |||||||||||
| Which of the following statements regarding multipoint subinterfaces are true? (Choose two.) |
| ||||||||||||
| | A single multipoint subinterface is used to establish PVC connections to multiple physical interfaces on remote routers. |
| |||||||||||
| | Each multipoint link is in its own subnet. |
| |||||||||||
| | The physical interface does not have an IP address. |
| |||||||||||
| | Split-horizon is disabled allowing routing updates to be re-transmitted on every subinterface. |
| |||||||||||
Wednesday, June 4, 2008
CISCO SEMESTER 4: MODULE 5
Labels:
MODULE 4,
MODULE 5,
SEMESTER 1,
SEMESTER 4
Subscribe to:
Post Comments (Atom)




No comments:
Post a Comment