Question 1 |
The switch has no MAC address table | |
The user's IP address must be incorrect | |
STP has definitely failed | |
The user's local connection to the gateway is working | |
The Ethernet cable must be faulty |
Question 2 |
display interface ip brief | |
show ip interface brief | |
display ip brief | |
show interface brief | |
display ip interface brief |
Question 3 |
ip-check | |
connect
| |
reach | |
test-ip | |
ping |
Question 4 |
48 bits | |
24 bits | |
128 bits | |
32 bits | |
16 bits |
Question 5 |
VRP | |
IOS | |
JUNOS | |
TIMOS | |
IOS XR |
Question 6 |
172.105.176.1 | |
172.105.180.1 | |
172.105.172.1 | |
172.105.175.1 | |
172.105.170.1 |
Question 7 |
Physical | |
Data Link | |
Network | |
Tranport | |
Application |
Question 8 |
186 | |
190 | |
122 | |
126 | |
182 |
Question 9 |
OPENFLOW | |
RESTCONF | |
TFTP | |
YAML | |
LACP |
Question 10 |
interface vlan 20 | |
ip address 10.10.10.1 255.255.255.0 | |
ip address 10.10.10.1 0.0.0.255 | |
interface Vlanif 20 | |
ip address 10.10.10.1 24 |
Question 11 |
quit | |
up | |
exit | |
go | |
back |
Question 12 |

Provide wireless clients with access to the network | |
Assign MPLS labels | |
Aggregate WAN links | |
Translate private IP addresses | |
Calculate OSPF routes |
Question 13 |

Centralized network management and automation | |
Wireless signal generation | |
Manual cable testing | |
Physical Ethernet frame transmission | |
IPv4-to-IPv6 address conversion only |
Question 14 |
IEEE 802.11 | |
IEEE 802.1 | |
IEEE 802.1X | |
IEEE 802.1Q | |
IEEE 802.3 |
Question 15 |
10 Mbps | |
1 | |
1000 Mbps | |
10000 Mbps | |
100 Mbps |
Question 16 |
display snmp sys-info | |
display snmp-agent info | |
display snmp-agent sys-info | |
display agent sys-info | |
display snmp agent-sys |
Question 17 |
2001:FFCA:0008:0012:10BB:00AA:0008 | |
2001:FFCA:8:12:10BB:AA:8:01:1 | |
2001:FFCA:8:12:10BB:AA::8::1 | |
2001:FFCA::8::12:10BB:AA:8:1 | |
2001:FFCA:8:12:10BB:AA:8:1 |
Question 18 |
port mode access | |
switchport mode access | |
interface-mode access | |
port access enable | |
port link-type access |
Question 19 |
ICMP | |
STP | |
ARP | |
LLDP | |
CDP |
Question 20 |

Internet layer | |
Core layer | |
Access layer | |
Transport layer | |
WAN layer |
Question 21 |
access vlan-id 20 | |
port default vlan 20 | |
vlan access 20 | |
switchport access vlan 20 | |
port vlan 20 |
Question 22 |
Fast
| |
Connection Oriented | |
Has a longer header than TCP | |
Slow | |
Connectionless |
Question 23 |

Connect computing, storage, and network resources within a data center | |
Prevent all broadcast traffic | |
Replace operating systems on servers | |
Replace IPv4 with IPv6 on the Internet | |
Provide only wireless connectivity |
Question 24 |

LACP | |
OSPF | |
CAPWAP | |
STP | |
SNMP |
Question 25 |

None of them | |
ASBR | |
DR | |
ABR | |
BDR |
Question 26 |
Anycast | |
All of them | |
Unicast | |
Multicast | |
Broadcast |
Question 27 |
IPv6 address assignment | |
Increased bandwidth | |
NAT translation | |
Load balancing | |
Increased reliability |
Question 28 |
ARP | |
FTP | |
SNMP | |
STP | |
DHCP |
Question 29 |

Creating VLAN tags | |
Capturing wireless frames | |
Calculating OSPF cost | |
Establishing SSH connections to network devices | |
Providing DHCP addresses |
Question 30 |

JSON | |
ELF | |
PCAP | |
JPEG | |
MP3 |
Gokhan Kosem is a Network Engineer, Instructor and the Founder of IPCisco.com with 15+ years of experience in Cisco, Nokia, Huawei, Juniper, Linux, Service Provider Networks, Routing and Switching technologies.
He has worked on the backbone networks of major service providers and network vendors including Nortel, Alcatel-Lucent (Nokia) and has extensive hands-on experience with Cisco, Huawei, Juniper and Nokia networking technologies.
He has trained thousands of networking students worldwide through IPCisco.com, Udemy, books, labs, quizzes, and educational content across multiple social media platforms.
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