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Intro To ISCW
Network Modeling
Remote Connectivity Methods
Basic (and Not-So-Basic) Security
Authentication, Authorization, and Accounting (AAA)
MultiProtocol Label Switching (MPLS)
Virtual Private Networks (VPNs)
Firewalls
Intrusion Prevention System (IPS)
Network Modeling
The Cisco Three-Layer Model
The Cisco Enterprise Architecture
Cisco IIN and SONA
Teleworking: Questions to Ask Before Implementing
Remote Connectivity Method
Intro to Broadband
DSL Delivery Options
Cable Modem Boot Process
PPPoE, PPPoA, and RFC 1483/2684 Bridging
Basic Troubleshooting
Hybrid Fiber-Coaxial
Basic (and Not-So-Basic) Security
Password Basics
NTP and Router Clocks
Telnet and SSH
Banners
TCP Intercept
IP Spoofing and 3704 Filtering
Views and Superviews
SNMP Security Basics
Autosecure (CLI and SDM)
Basic Logging Commands
Authentication, Authorization, and Accounting (AAA)
Authentication and Authentication Lists
Configuring AAA at the CLI
Configuring AAA with SDM
Debugging AAA
Authorization
Privilege Levels
Account
MultiProtocol Label Switching (MPLS)
Types, Modes, and Router Roles
“push, swap, pop”
Labels, the Control Plane, and the Data Plane
The MPLS Process
Penultimate Hop Popping
The FIB, LIB, and LFIB
Basic MPLS Configuration
MPLS VPNs
Route Distinguishers and VRFs
MTU Sizing
Virtual Private Networks (VPNs)
Terminology
Tunneling Protocols
Data and Key Encryption Methods
IPSec Architecture
Configuring Site-to-Site VPNs, Policies, and Transform Sets
Crypto ACLs
Configuring GRE over IPSec (Using SDM)
GRE Tips
Easy VPN Theory and Configuration
Stateless and Stateful VPN Failover Methods
Firewalls
Intro to Firewalls
Stateless and Stateful Filtering
IOS Firewall Feature Set Components
Extended ACL Review
CBAC Operation and Benefits
Firewall Configuration at the CLI
Firewall Configuration with SDM – Basic and Advanced
SDM Basics
Direction of Your Lists
Disabling IP Inspection
Intrusion Prevention System (IPS)
Comparing IPS and IDS
Approaches to Intrusion Prevention
Signatures and Signature Types
SDFs
Signature Actions
SDEE and Syslog
“False Positives”
Configuring IPS with SDM
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QUESTION 47:
Certkiller is an MPLS provider connecting multiple customer VPN’s. Which three
statements below are correct concerning MPLS-based VPNs? (Select three)
A. A VPN client is required for client-initiated deployments.
B. An MPLS-based VPN is highly scalable because no site-to-site peering is required.
C. Scalability becomes challenging for a very large, fully meshed deployment.
D. Route Targets (RTs) are attributes attached to a VPNv4 BGP route to indicate its VPN
membership.
E. A VPN client is not required for users to interact with the network.
F. Authentication is done using a digital certificate or pre-shared key.
Answer: B, D, E
Explanation:
With the introduction of Multiprotocol Label Switching (MPLS), which combines the
benefits of Layer 2 switching with Layer 3 routing and switching, it became possible to
construct a technology that combines the benefits of an overlay VPN (such as security
and isolation among customers) with the benefits of simplified routing that a peer-to-peer
VPN implementation brings. The new technology, called MPLS/VPN, results in simpler
customer routing and somewhat simpler service provider provisioning, and makes
possible a number of topologies that are hard to implement in either the overlay or
peer-to-peer VPN models. MPLS also adds the benefits of a connection-oriented
approach to the IP routing paradigm, through the establishment of label-switched paths,
which are created based on topology information rather than traffic flow.
QUESTION 48:
All Certkiller remote locations connect via a fully meshed MPLS WAN. Which three
statements regarding MPLS are true? (Select three)
A. Frame-mode MPLS inserts a 32-bit label between the Layer 3 and Layer 4 headers.
B. The control plane is responsible for forwarding packets.
C. The two major components of MPLS include the control plane and the data plane.
D. Cisco Express Forwarding (CEF) must be enabled as a prerequisite to running MPLS
on a Cisco router.
E. MPLS is designed for use with frame-based Layer 2 encapsulation protocols such as
Frame Relay, but is not supported by ATM because of ATM fixed-length cells.

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