This document contains 20 multiple choice questions about Cisco's hierarchical network model and related networking concepts. The questions cover topics like the different layers of the model (core, distribution, access), features supported at each layer like QoS and link aggregation, and technologies like VLANs, link aggregation, and switch characteristics.
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Ccna exploration 3 lan switching and wireless
1. CCNA Exploration 3 LAN Switching and
Wireless Chapter 1 Exam
01. Which layer of the hierarchical network design model is refered to as the high-speed
backbone of the internetwork, where high availability and redundancy are critical?
access layer
core layer
data-link layer
distribution layer
network layer
physical layer
02. Which layer of the hierarchical design model provides a means of connecting devices to
the network and controlling which devices are allowed to communicate on the network?
application
access
distribution
network
core
03. Which hierarchical design model layer controls the flow of network traffic using
policies and delineates broadcast domains by performing routing functions between virtual
LANs (VLANs)?
application
access
distribution
network
core
04. What is the likely impact of moving a conventional company architecture to a
completely converged network?
Local analog phone service can be completely outsourced to cost-effective providers.
The Ethernet VLAN structure is less complex.
2. A shared infrastructure is created resulting in a single network to manage.
QoS issues are greatly reduced.
There is less bandwidth competition between voice and video streams.
05. Link aggregation should be implemented at which layer of the hierarchical network?
core only
distribution and core
access and distribution
access, distribution, and core
06. What statement best describes a modular switch?
a slim-line chassis
allows interconnection of switches on redundant backplane
defined physical characteristics
flexible characteristics
07. Which feature supports higher throughput in switched networks by combining multiple
switch ports?
convergence
redundant links
link aggregation
network diameter
08. Configuring communication between devices on different VLANs requires the use of
which layer of the OSI model?
Layer 1
Layer 3
Layer 4
Layer 5
09. Which two characteristics are associated with enterprise level switches? (Choose two.)
low port density
high forwarding rate
3. high latency level
support link aggregation
predefined number of ports
10. Which two features are supported at all three levels of the Cisco three-layer
hierarchical model? (Choose two.)
Power over Ethernet
load balancing across redundant trunk links
redundant components
Quality of Service
link aggregation
11. A network administrator is selecting a switch that will operate at the network core.
Which three features should the switch support for optimum network performance and
reliability? (Choose three.)
port security
security policies
10 Gigabit Ethernet
quality of service (QoS)
hot-swappable hardware
Power over Ethernet (PoE)
12. Which hierarchical design characteristic would be recommended at both the core and
distribution layers to protect the network in the case of a route failure?
PoE
redundancy
aggregation
access lists
13. At which heirarchical layer are switches normally not required to process all ports at
wire speed?
core layer
distribution layer
4. access layer
entry layer
14. For organizations that are implementing a voice over IP solution, what functionality
should be enabled at all three layers of the hierarchical network?
Power over Ethernet
quality of service
switch port security
inter-VLAN routing
15. Refer to the
exhibit. Beginning with HR servers and workstations, a network engineer is designing a
new security structure for the network. Which set of policies adheres to the hierarchical
network model design principles?
Implement Layer 3 switching on S1 to reduce the packet processing load on D1 and D2.
Install all security processing on S1 to reduce network traffic load.
Configure port security options on S1. Use Layer 3 access control features on D1 and D2
to limit access to the HR servers to just the HR subnet.
Move all HR assets out of the data center and connect them to S1. Use Layer 3 security
functions on S1 to deny all traffic into and out of S1.
Perform all port access and Layer 3 security functions on C1.
5. 16. A network technician is asked to examine an existing switched network. Following this
examination, the technician makes recommendations for adding new switches where
needed and replacing existing equipment that hampers performance. The technician is
given a budget and asked to proceed. Which two pieces of information would be helpful in
determining necessary port density for new switches? (Choose two.)
forwarding rate
traffic flow analysis
expected future growth
number of required core connections
number of hubs that are needed in the access layer to increase performance
17. A technician is attempting to explain Cisco StackWise technology to a client that is
setting up three stackable switches. Which explanation accurately describes StackWise
technology?
StackWise technology allows up to eight ports to be bound together to increase available
bandwidth.
StackWise technology allows the switch to deliver power to end devices by using
existing Ethernet cabling.
StackWise technology allows the switch capabilities and ports to be expanded by the
addition of line cards.
StackWise technology allows up to nine switches to be interconnected via the use of a
fully redundant backplane.
18. Which three features are commonly supported at the distribution layer of the Cisco
hierarchical network model? (Choose three.)
security policies
Power over Ethernet
switch port security
quality of service
Layer 3 functionality
end user access to network
19. Which layer of the OSI model does an access layer LAN switch use to make a
forwarding decision?
Layer 1
6. Layer 2
Layer 3
Layer 4
20. Refer to the exhibit. What
characteristic of hierarchical network designs is exhibited by having SW3 connected to
both SW1 and Sw2?
scalability
security
redundancy
maintainability