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← Enterprise Network Design practice sets

CCNP Enterprise Network Design • Complete Question Bank

CCNP Enterprise Network Design — All Questions With Answers

Complete CCNP Enterprise Network Design question bank — all 0 questions with answers and detailed explanations.

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Certifications/CCNP/Practice Test/Enterprise Network Design/All Questions
Question 1mediummultiple choice
Open the full STP breakdown →

A large enterprise is redesigning its campus network to support 5000 users across three buildings. The design must provide high availability and fast convergence in case of a link failure. The network engineer is considering using Spanning Tree Protocol (STP) in the access layer. What is the primary design concern with using STP in this scenario?

Question 2mediummultiple choice
Study the full virtualization explanation →

A company is deploying a new data center and needs to choose between a three-tier (core, aggregation, access) and a spine-leaf architecture. The network engineer is concerned about east-west traffic patterns for server virtualization. Which architecture is most suitable and why?

Question 3hardmultiple choice
Open the full VLAN trunking answer →

An enterprise network is experiencing high CPU utilization on the distribution layer switches. The design uses VLANs with SVIs for inter-VLAN routing, and HSRP for first-hop redundancy. The engineer notices that the standby switch is also experiencing high CPU. What is the most likely cause?

Question 4mediummultiple choice
Read the full Enterprise Network Design explanation →

A network engineer is designing a WAN connection for a branch office that requires high availability and bandwidth aggregation. The branch has two internet connections from different ISPs. The engineer wants to use both links actively for load balancing and failover. Which design approach should be used?

Question 5mediummultiple choice
Read the full Enterprise Network Design explanation →

A campus network uses a collapsed core design with two distribution switches and multiple access switches. The engineer wants to ensure that if one distribution switch fails, the access switches can still reach the core. The access switches are connected to both distribution switches. What additional configuration is required on the access switches?

Question 6hardmultiple choice
Read the full wireless explanation →

An enterprise is migrating from a traditional three-tier campus design to a software-defined access (SD-Access) fabric. The engineer needs to ensure that the existing wireless infrastructure integrates seamlessly. Which component of SD-Access is responsible for integrating wireless and wired policies?

Question 7hardmultiple choice
Read the full Enterprise Network Design explanation →

A network engineer is designing a data center network using Cisco ACI. The design must support multiple tenants with isolated policies. The engineer needs to ensure that traffic between endpoints in different tenants is blocked by default. Which ACI construct provides this isolation?

Question 8easymultiple choice
Review the full routing breakdown →

A company is deploying a new branch office with 50 users. The branch needs to connect to the headquarters via a WAN link. The engineer wants to use a design that minimizes the need for routing protocol configuration at the branch while still providing redundancy. Which design is most appropriate?

Question 9easymultiple choice
Review the full OSPF breakdown →

An enterprise network uses OSPF in the core and EIGRP in the campus distribution layer. The engineer needs to redistribute routes between the two protocols. Which design consideration is most important to prevent routing loops?

Question 10mediummultiple choice
Study the full SD-Access breakdown →

An architect is designing an SD-Access fabric for a campus network that must support dynamic endpoint grouping based on user identity and device type. The design must minimize manual policy configuration and allow the fabric to enforce access policies at the edge. Which combination of components and protocols is required to meet these requirements?

Question 11mediummultiple choice
Read the full VPN explanation →

A network team is designing an SD-WAN overlay for a multinational enterprise with 500+ branch sites. The design must ensure that control plane traffic (e.g., OMP updates) is encrypted and authenticated between all vSmart controllers and vEdge routers, while allowing data plane traffic to use IPsec tunnels between branch sites directly. Which architectural element is responsible for orchestrating the initial authentication and certificate enrollment of all SD-WAN devices?

Question 12mediummultiple choice
Study the full QoS explanation →

An enterprise is redesigning its WAN QoS architecture to support real-time voice, video, and critical data applications over a limited bandwidth link. The architect must ensure that voice traffic receives strict priority queuing and that video traffic is guaranteed a minimum bandwidth, while allowing best-effort traffic to use remaining capacity. Which queuing strategy should be deployed on the WAN edge routers?

Question 13mediummultiple choice
Study the full virtualization explanation →

A service provider is deploying NFV to host virtual network functions (VNFs) such as firewalls, routers, and WAN optimizers on a single server. The design must support service chaining, where traffic flows through multiple VNFs in a specific order, and must allow dynamic insertion of new VNFs without re-cabling. Which technology should be used to implement the service chain?

Question 14mediummultiple choice
Study the full virtualization explanation →

A data center architect is designing a virtualized environment to host critical applications. The design must maximize performance by allowing virtual machines (VMs) to directly access physical CPU cores and memory without hypervisor overhead for latency-sensitive workloads. Which hypervisor configuration should be used?

Question 15mediummultiple choice
Read the full Enterprise Network Design explanation →

A network architect is designing a campus network for a large university with 10,000+ users. The design must provide high availability, minimize failure domains, and allow for easy scaling of the access layer. The core layer should be resilient and support fast convergence. Which hierarchical design model best meets these requirements?

Question 16mediummultiple choice
Read the full VPN explanation →

An enterprise is deploying Cisco SD-WAN and must ensure that data plane traffic between branch sites is encrypted and authenticated. The design must also allow the use of application-aware routing to steer traffic based on real-time performance metrics. Which component is responsible for establishing and managing the IPsec tunnels between branch routers?

Question 17mediummultiple choice
Study the full QoS explanation →

A network architect is designing QoS for a converged network carrying voice, video, and data. The design must use the DiffServ model and ensure that voice traffic is marked with the highest priority and that video traffic is marked with a lower priority but still above data. Which DSCP markings should be assigned to voice and video traffic, respectively, to comply with the standard Per-Hop Behavior (PHB) definitions?

Question 18mediummultiple choice
Read the full Enterprise Network Design explanation →

An enterprise is migrating its data center to a leaf-spine architecture to support high east-west traffic between servers. The design must provide non-blocking forwarding and allow for easy scaling by adding more spines. Which characteristic is essential for the spine switches in this design?

Question 19mediummultiple choice
Review the full OSPF breakdown →

Examine the following configuration snippet:

interface GigabitEthernet0/1
 ip address 192.168.1.1 255.255.255.0
 ip ospf network point-to-point
 ip ospf hello-interval 10
 ip ospf dead-interval 40

!

router ospf 1
 network 192.168.1.0 0.0.0.255 area 0

What is the effect of this configuration?

Question 20mediummultiple choice
Open the full VLAN trunking answer →

Consider this configuration:

interface GigabitEthernet0/2
 switchport mode trunk
 switchport trunk native vlan 10
 switchport trunk allowed vlan 10,20,30

!

interface Vlan10
 ip address 192.168.10.1 255.255.255.0

Which statement is true about this configuration?

Question 21mediummultiple choice
Study the full EIGRP explanation →

Given the following configuration:

router eigrp TEST
 network 10.0.0.0 0.255.255.255
 network 192.168.1.0

!

interface GigabitEthernet0/0
 ip address 10.1.1.1 255.255.255.0
 ip summary-address eigrp TEST 10.0.0.0 255.0.0.0 5

What is the effect of the ip summary-address command?

Question 22mediummultiple choice
Study the full QoS explanation →

Examine this configuration: policy-map QOS_POLICY

class VOICE

priority percent 10

class VIDEO

bandwidth percent 30

class class-default

fair-queue !

interface GigabitEthernet0/0

service-policy output QOS_POLICY

What is the effect of this policy-map?

Question 23mediummultiple choice
Open the full BGP breakdown →

Consider the following configuration:

router bgp 65000

bgp router-id 192.168.0.1

neighbor 10.0.0.2 remote-as 65001
 neighbor 10.0.0.2 ebgp-multihop 2
 neighbor 10.0.0.2 update-source Loopback0

!

interface Loopback0
 ip address 192.168.0.1 255.255.255.255

What is missing for this BGP session to establish?

Question 24mediummultiple choice
Study the full multicast explanation →

Given this configuration:

interface GigabitEthernet0/0
 ip address 172.16.1.1 255.255.255.0
 ip pim sparse-mode

!

interface GigabitEthernet0/1
 ip address 172.16.2.1 255.255.255.0
 ip pim sparse-mode

!

ip pim rp-address 172.16.1.1

What is the effect of this configuration?

Question 25easymultiple choice
Review the full OSPF breakdown →

What is the default OSPF hello interval on an Ethernet broadcast network?

Question 26mediummultiple choice
Open the full BGP breakdown →

Which BGP attribute is preferred when the local preference is equal?

Question 27easymultiple choice
Study the full EIGRP explanation →

What is the maximum hop count for EIGRP?

Question 28mediumdrag order
Read the full Enterprise Network Design explanation →

Drag and drop the steps of the PPDIOO network lifecycle into the correct order, from first to last.

Question 29mediumdrag order
Read the full Enterprise Network Design explanation →

Drag and drop the steps of the hierarchical campus network design process into the correct order, from first to last.

Question 30mediumdrag order
Study the full SD-Access breakdown →

Drag and drop the steps of the SD-Access fabric deployment sequence into the correct order, from first to last.

Question 31mediumdrag order
Read the full Enterprise Network Design explanation →

Drag and drop the steps of hierarchical LAN design implementation phases into the correct order, from first to last.

Question 32mediumdrag order
Read the full Enterprise Network Design explanation →

Drag and drop the steps of network documentation and change management workflow into the correct order, from first to last.

Question 33mediumdrag order
Review the full subnetting walkthrough →

Drag and drop the steps of IP addressing scheme design and subnetting steps into the correct order, from first to last.

Question 34mediumdrag order
Read the full Enterprise Network Design explanation →

Drag and drop the steps of disaster recovery failover process into the correct order, from first to last.

Question 35mediumdrag order
Read the full Enterprise Network Design explanation →

Drag and drop the steps of network audit and gap analysis steps into the correct order, from first to last.

Question 36mediummatching
Read the full Enterprise Network Design explanation →

Drag and drop each network design tier on the left to its matching function on the right.

Question 37mediummatching
Read the full Enterprise Network Design explanation →

Drag and drop each PPDIOO phase on the left to its matching activity on the right.

Question 38mediummatching
Read the full Enterprise Network Design explanation →

Drag and drop each First Hop Redundancy Protocol on the left to its matching function on the right.

Question 39mediummatching
Read the full Enterprise Network Design explanation →

Drag and drop each Cisco campus design model component on the left to its matching description on the right.

Question 40mediummatching
Read the full Enterprise Network Design explanation →

Drag and drop each WAN topology type on the left to its matching characteristic on the right.

Question 41mediummulti select
Read the full Enterprise Network Design explanation →

Which two statements about the Cisco Enterprise Campus Architecture are true? (Choose two.)

Question 42hardmulti select
Read the full Enterprise Network Design explanation →

Which three statements about the Cisco Enterprise WAN design principles are true? (Choose three.)

Question 43easymulti select
Read the full Enterprise Network Design explanation →

Which two statements about network design for high availability are true? (Choose two.)

Question 44hardmulti select
Study the full SD-Access breakdown →

Which three statements about Cisco SD-Access design are true? (Choose three.)

Practice tests

Scored 10-question sessions with instant feedback and explanations.

CCNP Practice Test 1 — 10 Questions→CCNP Practice Test 2 — 10 Questions→CCNP Practice Test 3 — 10 Questions→CCNP Practice Test 4 — 10 Questions→CCNP Practice Test 5 — 10 Questions→CCNP Practice Exam 1 — 20 Questions→CCNP Practice Exam 2 — 20 Questions→CCNP Practice Exam 3 — 20 Questions→CCNP Practice Exam 4 — 20 Questions→Free CCNP Practice Test 1 — 30 Questions→Free CCNP Practice Test 2 — 30 Questions→Free CCNP Practice Test 3 — 30 Questions→CCNP Practice Questions 1 — 50 Questions→CCNP Practice Questions 2 — 50 Questions→CCNP Exam Simulation 1 — 100 Questions→

Practice by domain

Each domain maps to a weighted exam section. Focus on the domain where you are weakest.

ArchitectureEnterprise Network DesignSD-Access ArchitectureSD-WAN ArchitectureQoS ArchitectureVirtualizationNetwork Function VirtualizationVirtual Machines and HypervisorsVRF and Path IsolationInfrastructureOSPFBGPEIGRPVLANs and TrunkingSpanning Tree ProtocolEtherChannelWireless InfrastructureMPLSWAN TechnologiesNAT and DHCPIP MulticastQoSNetwork AssuranceSNMP and SyslogNetFlow and TelemetrySPAN and RSPANIP SLASecurityAAA, RADIUS, and TACACS+ACLs and CoPP802.1X and TrustSecVPN TechnologiesInfrastructure SecurityAutomationPython for Network AutomationAnsible AutomationREST APIs and Data ModelsCisco DNA CenterModel-Driven Telemetry

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