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NEW QUESTION: 1
Refer to the exhibit.
A network administrator implemented MPLS LDP changes on PE-A LSR device. The engineer must ensure there are no LDP peer are fully operational. Which LDP feature must the engineer apply to the existing configuration to eliminate the problem?
A. Configure MPLS LDP NSR for all LDP sessions.
B. Disable IP CEF on routers LDP and enable
C. Configure MPLS LDP IGP synchronization on the network.
D. Enable LDP session protection under the routing protocol.
Answer: A
Explanation:
Explanation
https://www.cisco.com/c/en/us/td/docs/ios-xml/ios/msp/configuration/xe-3s/mp-ha-xe-3s-book/mp-nsr-ldp-supp.
NEW QUESTION: 2
You have an Azure subscription named Subscription1.
Subscription1 contains the virtual machines in the following table:
Subscription1 contains a virtual network named VNet1 that has the subnets in the following table.
VM3 has multiple network adapters, including a network adapter named NIC3. IP forwarding is enabled on NIC3. Routing is enabled on VM3.
You create a route table named RT1 that contains the routers in the following table.
You apply RT1 to Subnet1 and Subnet2.
For each of the following statements, select Yes if the statement is true. Otherwise, select No.
NOTE: Each correct selection is worth one point.
Answer:
Explanation:
Explanation
IP forwarding enables the virtual machine a network interface is attached to:
* Receive network traffic not destined for one of the IP addresses assigned to any of the IP configurations assigned to the network interface.
* Send network traffic with a different source IP address than the one assigned to one of a network interface's IP configurations.
The setting must be enabled for every network interface that is attached to the virtual machine that receives traffic that the virtual machine needs to forward. A virtual machine can forward traffic whether it has multiple network interfaces or a single network interface attached to it.
Box 1: Yes
The routing table allows connections from VM3 to VM1 and VM2. And as IP forwarding is enabled on VM3, VM3 can connect to VM1.
Box 2: No
VM3, which has IP forwarding, must be turned on, in order for VM2 to connect to VM1.
Box 3: Yes
The routing table allows connections from VM1 and VM2 to VM3. IP forwarding on VM3 allows VM1 to connect to VM2 via VM3.
References:
https://docs.microsoft.com/en-us/azure/virtual-network/virtual-networks-udr-overview
https://www.quora.com/What-is-IP-forwarding
NEW QUESTION: 3
Modified deficit round robin supports which of these functionalities?
A. weighted fair queues
B. LLQ
C. round-robin service of output queues
D. priority queue
Answer: C,D
Explanation:
Modified deficit round robin (MDRR)-MDRR, a traffic class prioritization mechanism used only on GSR platforms, incorporates emission priority as a facet of quality of service. MDRR is similar in function to WFQ on non-GSR platforms. In MDRR, IP traffic is mapped to different classes of service queues. A group of queues is assigned to each traffic destination. On the transmit side of the platform, a group of queues is defined on a per-interface basis; on the receive side of the platform, a group of queues is defined on a per-destination basis. IP packets are then mapped to these queues, based on their IP precedence value. These queues are serviced on a round-robin basis, except for a queue that has been defined to run in either of two ways: a) strict priority mode, or b) alternate priority mode. In strict priority mode, the high priority queue is serviced whenever it is not empty; this ensures the lowest possible delay for high priority traffic. In this mode, however, the possibility exists that other traffic might not be serviced for long periods of time if the high priority queue is consuming most of the available bandwidth. In alternate priority mode, the traffic queues are serviced in turn, alternating between the high priority queue and the remaining queues.
Reference http://www.cisco.com/en/US/docs/ios/12_0st/12_0st10/feature/guide/10st_cos.pdf