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NEW QUESTION: 1
Which of the following problems can be solved by IGMP Snooping?
A. Receiver hosts support only IGMPv2 but the SSM model is used on the network.
B. Multicast data packets are broadcast on Layer 2 devices.
C. Validity of IGMP Report messages.
D. A large number of receiver hosts exist on the network and a router receives large quantities of IGMP Report messages.
Answer: B

NEW QUESTION: 2
---
You have a server named Server1 that runs Windows Server 2012 R2. Server1 has the Hyper-V server role installed.
You need to configure storage for a virtual machine to meet the following requirements:
Support up to 3 TB of data on a single hard disk.
Allocate disk space as needed.
Use a portable storage format.
What should you configure?
A. A fixed-size VHDX
B. A dynamically expanding VHD
C. A fixed-size VHD
D. A dynamically expanding VHDX
E. A pass-through disk
Answer: D
Explanation:
Dynamically expanding virtual hard disk uses only as much physical storage
space as it needs to store the actual data that the disk currently contains. The size of the
virtual disk's image file then grows as additional data is written to it.
References:
http://technet.microsoft.com/en-us/library/cc720381(v=ws.10).aspx
Exam Ref 70-410: Installing and Configuring Windows Server 2012 R2: Objective 3.2:
Create and Configure virtual machine storage, Chapter 3: p. 157-158
70-410: Training Guide: Installing and Configuring Windows Server 2012 R2, Chapter 7:
Hyper-V virtualization, Lesson 2: Deploying and Configuring virtual machines, p. 320

NEW QUESTION: 3
Click the exhibit button.
user@PE2# run show 12circuit connections
Layer-2 Circuit Connections:
Legend for connection status (St)
EI - - encapsulation invalid NP - - interface
h/w not present
MM - - mtu mismatch Dn - - down
EM - - encapsulation mismatch Vc-Dn - -
Virtual circuit Down
CM - - control-word mismatch UP - -
operational
VM - - vlan id mismatch CF - - Call admission
control failure
OL - - no outgoing label IB - - TDM
incompatible bitrate
NC - - intf encaps not CCC/TCC TM - - TDM
misconfiguration
BK - - Backup Connection ST - - Standby
Connection
CB - - rcvd cell-bundle size bad SP - - Static
Pseudowire
LD - - local site signaled down RS - - remote
sity standby
RD - - remote site signaled down HS - - Hot-
standby Connection
XX - - unknown
Legend for interface status
UP - - operational
Dn - - down
Neighbor: 10.10.1.1
Interface Type St Time
last up #Up trans
ge-1/1/1.6 (vc 2) rmt VM
[edit protocols 12circuit]
user@PE2# show
neighbor 10.10.1.1. {
interface ge-1/1/1.6 {
virtual-circuit-id 2;
encapsulation-type ethernet-vlan;
}
}
[edit logical-systems jpe interfaces]
user@PE2# show
ge-1/1/1 {
unit 6 {
encapsulation vlan-ccc;
vlan-id 6;
family ccc;
}
}
user@PE1# run show 12circuit connections
logical-system kpe
Layer-2 Circuit Connections:
Legend for connection status (St)
EI - - encapsulation invalid NP - - interface
h/w not present
MM - - mtu mismatch Dn - - down
EM- - encapsulation mismatch VC-Dn - -
Virtual -circuit Down
CM - - control-word mismatch Up - -
operational
VM - - vlan id mismatch CF - - Call admission
control failure
OL - - no outgoing label IB - - TDM
incompatible bitrate
NC - - intf encaps not CCC/TCC TM - - TDM
misconfiguration
BK - - Backup connection ST - - Standby
Connection
CB - - rcvd cell-bundle size bad SP - - Static
Pseudowire
LD - - local site signaled down RS - - remote
site standby
RD - - remote site signaled down HS - - Hot-
standby Connection
XX - - unknown
Legend for interface status
Up - - operational
Dn - - down
Neighbor: 10.10.1.3
Interface Type St Time
last up # Up trans
ge-1/0/1.5 (vc 2) rmt VM
[edit protocols 12circuit]
user@PE1# show
neighbor 10.11.1.1 {
interface ge-1/0/1.5 {
virtual-circuit-id 2;
encapsulation-type ethernet-vlan;
}
}
[edit interfaces]
user@PE1#
ge-1/0/1 (
unit 5 {
encapsulation vlan-ccc;
vlan-id 5;
family ccc;
}
}
An LDP Layer 2 circuit between PE1 and PE2 is not passing traffic. Both PE1 and PE2 show the circuit state as VM - - vlan id mismatch.
Referring to the exhibit, which action will solve this problem?
A. Configure interfaces PE1:ge-1/0/1.5 or PE2:ge-1/1/1.6 with the output-vlan-map swap parameter.
B. Configure interfaces PE1:ge-1/0/1.5 and PE2:ge-1/1/1.6 with the output-vlan-map pop parameter.
C. Configure interfaces PE1:ge-1/0/1.5 and PE2:ge-1/1/1.6 with the output-vlan-map swap parameter.
D. Configure the LDP Layer 2 circuit with the no-control-word command on PE1 and PE2.
Answer: C
Explanation:
Explanation/Reference:
The output-vlan-map swap parameter specifies the VLAN rewrite operation to replace a VLAN tag. The outer VLAN tag of the frame is overwritten with the user-specified VLAN tag information. We do this on both interfaces.
References: http://www.juniper.net/techpubs/en_US/junos15.1/topics/reference/configuration-statement/ swap-edit-interfaces.html

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