Composite Exam
Exam Number: 642-892
Associated Certifications: CCNP, CCDP
Duration: 120 minutes
Available Languages: English
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Exam Description Introduction
The Composite exam (642-892) is the quickest way for currently certified Cisco Certified Network Professionals (CCNP®) and Cisco Certified Design Professionals (CCDP®) to obtain recertification. The exam tests skills and knowledge pertaining to the Building Scalable Cisco Internetworks (BSCI) and Building Cisco Managed Switched Networks (BCMSN) courses. Composite may be taken to recertify CCNP and CCDP certifications; it may also be taken in place of the BSCI and BCMSN exams required for CCNP and CCDP certifications. Candidates must successfully pass both routing and switching subsections of the Composite exam to successfully pass the exam.
Exam Topics
The following information provides general guidelines for the content likely to be included on the exam. However, other related topics may also appear on any specific delivery of the exam. In order to better reflect the contents of the exam and for clarity purposes the guidelines below may change at any time without notice.
Implement EIGRP operations
Explain the functions and operations of EIGRP (e.g., DUAL)
Configure EIGRP routing. (e.g., Stub Routing, authentication, etc.)
Verify or troubleshoot EIGRP routing configurations
Implement multi-area OSPF operations
Explain the functions and operations of multiarea OSPF
Configure multiarea OSPF routing. (e.g., Stub, NSSA, authentication, etc.)
Verify or troubleshoot multiarea OSPF routing configurations
Describe integrated IS-IS
Describe the features and benefits of integrated IS-IS
Configure and verify integrated IS-IS
Implement Cisco IOS routing features
Describe, configure or verify route redistribution between IP routing IGPs. (e.g., route-maps, default routes, etc.)
Describe, configure or verify route filtering (i.e., distribute-lists and passive interfaces)
Describe and configure DHCP services (e.g., Server, Client, IP helper address, etc.)
Implement BGP for enterprise ISP connectivity
Describe the functions and operations of BGP
Configure or verify BGP operation in a non-transit AS (e.g., authentication)
Configure BGP path selection. (i.e., Local Preference, AS Path, Weight or MED attributes)
Implement multicast forwarding
Describe IP Multicast (e.g., Layer-3 to Layer-2 mapping, IGMP, etc.)
Describe, configure, or verify IP multicast routing (i.e., PIM Sparse-Dense Mode)
Implement IPv6
Describe IPv6 addressing operations
Describe IPv6 interoperation with IPv4
Describe, configure or verify OSPF routing with IPv6 addressing
Implement VLANs
Explain the functions of VLANs in a hierarchical network
Configure VLANs (e.g., Native, Default, Static and Access)
Explain and configure VLAN trunking (i.e., IEEE 802.1Q and ISL)
Explain and configure VTP
Verify or troubleshoot VLAN configurations
Conduct the operation of Spanning Tree protocols in a hierarchical network
Explain the functions and operations of the Spanning Tree protocols (i.e., RSTP, PVRST, MISTP)
Configure RSTP (PVRST) and MISTP
” Describe and configure STP security mechanisms (i.e., BPDU Guard, BPDU Filtering, Root Guard)
Configure and Verify UDLD and Loop Guard
Verify or troubleshoot Spanning Tree protocol operations
Configure and verify link aggregation using PAgP or LACP
Implement Inter-VLAN routing
Explain and configure Inter-VLAN routing (i.e., SVI and routed ports)
Explain and enable CEF operation
Verify or troubleshoot InterVLAN routing configurations
Implement gateway redundancy technologies
Explain the functions and operations of gateway redundancy protocols (i.e., HSRP, VRRP, and GLBP)
Configure HSRP, VRRP, and GLBP
Verify High Availability configurations
Describe and configure wireless client access
Describe the components and operations of WLAN topologies (i.e., AP and Bridge)
Describe the features of Client Devices, Network Unification, and Mobility Platforms (i.e., CCX, LWAPP)
Configure a wireless client (i.e., ADU)
Describe and configure security features in a switched network
Describe common Layer 2 network attacks (e.g., MAC Flooding, Rogue Devices, VLAN Hopping, DHCP Spoofing, etc.)
Explain and configure Port Security,802.1x, VACLs, Private VLANs, DHCP Snooping, and DAI
Verify Catalyst switch (IOS-based) security configurations (i.e., Port Security, 802.1x, VACLs, Private VLANs, DHCP Snooping, and DAI)
Configure support for voice
Describe the characteristics of voice in the campus network
Describe the functions of Voice VLANs and trust boundaries
Configure and verify basic IP Phone support (i.e. Voice VLAN, Trust and CoS options, AutoQoS for voice)
“Composite”, also known as 642-892 exam, is a Cisco certification.
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With the complete collection of questions and answers Q&as with Expert Explanations, Pass4sure has assembled to take you through 321 Q&As to your 642-892 Exam preparation. In the 642-892 exam resources, you will cover every field and category in CCNP helping to ready you for your successful Cisco Certification.
16. Which statement is true about Protocol Independent Multicast Dense Mode (PIM DM) multicast routing?
A. PIM DM supports shared distribution trees.
B. If a port is pruned, the administrator must reenable the port to support multicast traffic.
C. The (S,G) state exists in every router, regardless of the presence of an RPF interface.
D. Flooding of traffic only occurs in the beginning stages of routing. Afterwards, all necessary ports are pruned and multicast traffic is not sent across those interfaces.
Answer: C
17. Which command displays statistics on EIGRP hello, updates, queries, replies, and acknowledgments?
A. debug eigrp packets
B. show ip eigrp traffic
C. show ip eigrp topology D. show ip eigrp neighbors Answer: B
18. Refer to the exhibit. All multilayer switches are running PIM dense mode. Recipient A and Recipient B
are sending IGMPv2 join messages to their respective multilayer switches. Which statement is true?
A. The Multicast Server is the root of the multicast tree. Switches 4 and 5 will participate in the multicast
tree once pruning has taken place.
B. The Multicast Server is the root of the multicast tree. Switches 1,3,4, and 5 will participate in the multicast tree once pruning has taken place.
C. Switch 3 is the root of the multicast tree. Switches 3,4, and 5 will participate in the multicast tree once
pruning has taken place.
D. Switch 1 is the root of the multicast tree. Switches 1,4, and 5 will participate in the multicast tree once pruning has taken place.
E. Switch 1 is the root of the multicast tree. Switches 1,3,4, and 5 will participate in the multicast tree once
pruning has taken place.
F. Switch 3 is the root of the multicast tree. Switches 1,3,4, and 5 will participate in the multicast tree once pruning has taken place.
Answer: B
19. Which statement is true about utilizing a data network for voice traffic?
A. Adding bandwidth to the data network is the primary solution to provide for the needs of voice traffic.
B. Because voice traffic volume cannot be calculated, network bandwidth requirements must be determined from an existing installation.
C. Voice traffic will require some form of QoS mechanisms in most networks.
D. Voice traffic will require some form of QoS implementation only in congested networks.
E. Network congestion must be totally eliminated to provide proper voice traffic performance. Answer: C
20. Refer to the exhibit. Routers R1 and R2 are running EIGRP and have converged. On the basis of the information that is presented, which statement is true?
A. All outgoing routing updates from router R1 to router R2 will be suppressed, but the inbound updates
will continue to be received.
B. All incoming routing updates from R2 will be suppressed, but the outgoing updates will continue to be sent.
C. Both outgoing and incoming routing updates on R1 will be stopped because of the passiveinterface
Serial0/0 configuration statement.
D. Both outgoing and incoming routing updates on R1 will be permitted because the distributelist 20 out
Serial0/0 command cannot be used with association with the outgoing interface. Answer: C
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