Showing posts with label NEW CCNA. Show all posts
Showing posts with label NEW CCNA. Show all posts

Monday, 13 April 2020

NEW CCNA PRACTICE LAB 1

Task :-


1)Give the Router a Hostname -"PUNE-01"

2)Verify System Clock and change to the current time.

3)Check IP related Information on all interfaces in brief.

4) Configure an interface with IP address 12.0.0.1/30, an description and unshut the interface.

5) Enter from Privilege mode to User mode and vice versa.

6)Check the current IOS version running on the Device.

7)Save the Configuration.

8)Check the running configuration & startup configuration on the Device.

9)Erase the nvram configuration i.e running configuration of the Device.

10)Reload the Device.

Router


========================================================================

1) Give the device a Hostname -"PUNE-01"

Router#config

Configuring from terminal, memory, or network [terminal]?

Enter configuration commands, one per line. End with CNTL/Z.

Router(config)#

Router(config)#hostname PUNE-01

PUNE-01(config)#

PUNE-01(config)#

PUNE-01(config)#^Z


2) Verify System Clock and change to the current time.

PUNE-01#sh clock

*0:14:57.249 UTC Mon Mar 1 1993

3) Check IP related Information on all interfaces in brief


PUNE-01#sh ip int brief

Interface                      IP-Address      OK? Method Status                        Protocol

GigabitEthernet0/0/0   unassigned      YES unset    administratively down down

GigabitEthernet0/0/1   unassigned      YES unset    administratively down down

Vlan1                           unassigned      YES unset    administratively down down

PUNE-01#



4) Configure an interface with IP address 12.0.0.1/30, an description and unshut the interface.


PUNE-01#config

Configuring from terminal, memory, or network [terminal]?

Enter configuration commands, one per line. End with CNTL/Z.

PUNE-01(config)#int GigabitEthernet0/0/0

PUNE-01(config-if)#ip address 12.0.0.1 255.255.255.0

PUNE-01(config-if)#description Connection to Mumbai

PUNE-01(config-if)#no shut

PUNE-01(config-if)#

%LINK-5-CHANGED: Interface GigabitEthernet0/0/0, changed state to up

PUNE-01(config-if)#^Z

PUNE-01#

%SYS-5-CONFIG_I: Configured from console by console.

5) Enter from Privilege mode to User mode and vice versa.


PUNE-01#disable

PUNE-01>enable

PUNE-01#


6)Check the current IOS version running on the Router


PUNE-01#show version

Cisco IOS XE Software, Version 03.16.05.S - Extended Support Release

Cisco IOS Software, ISR Software (X86_64_LINUX_IOSD-UNIVERSALK9-M), Version Version 15.5 (3)S5, RELEASE SOFTWARE (fc2)

Technical Support: http://www.cisco.com/techsupport

Copyright (c) 1986-2017 by Cisco Systems, Inc.

Compiled Thu 19-Jan-17 11:24 by mcpre

Cisco IOS-XE software, Copyright (c) 2005-2017 by cisco Systems, Inc.

All rights reserved.  Certain components of Cisco IOS-XE software are

licensed under the GNU General Public License ("GPL") Version 2.0.  The

software code licensed under GPL Version 2.0 is free software that comes

with ABSOLUTELY NO WARRANTY.  You can redistribute and/or modify such

GPL code under the terms of GPL Version 2.0.  For more details, see the

documentation or "License Notice" file accompanying the IOS-XE software,

or the applicable URL provided on the flyer accompanying the IOS-XE

software.

ROM: IOS-XE ROMMON

Router uptime is 44 minutes, 17 seconds

Uptime for this control processor is 44 minutes, 17 seconds

System returned to ROM by power-on

System image file is "bootflash:/isr4300-universalk9.03.16.05.S.155-3.S5-ext.SPA.bin"

Last reload reason: PowerOn

This product contains cryptographic features and is subject to United

States and local country laws governing import, export, transfer and

use. Delivery of Cisco cryptographic products does not imply

third-party authority to import, export, distribute or use encryption.

Importers, exporters, distributors and users are responsible for

compliance with U.S. and local country laws. By using this product you

agree to comply with applicable laws and regulations. If you are unable

to comply with U.S. and local laws, return this product immediately.

A summary of U.S. laws governing Cisco cryptographic products may be found at:

http://www.cisco.com/wwl/export/crypto/tool/stqrg.html


Technology Package License Information:



------------------------------------------------------------------------

Technology    Technology-package                  Technology-package

              Current              Type           Next reboot

------------------------------------------------------------------------

appxk9           None             None             None

uck9             None             None             None

securityk9       securityk9       Permanent        securityk9

ipbase           ipbasek9         Permanent        ipbasek9

security         securityk9       Permanent        securityk9

ipbase           ipbasek9         Permanent        ipbasek9



cisco ISR4321/K9 (1RU) processor with 1687137K/6147K bytes of memory.

Processor board ID FLM2041W2HD

2 Gigabit Ethernet interfaces

32768K bytes of non-volatile configuration memory.

4194304K bytes of physical memory.

3223551K bytes of flash memory at bootflash:.

Configuration register is 0x2102


7)Save the Configuration


PUNE-01#wr

Building configuration...

[OK]


8)Check the running configuration on the Device


PUNE-01#show running-config

Building configuration...



Current configuration : 564 bytes

!

version 15.4

no service timestamps log datetime msec

no service timestamps debug datetime msec

no service password-encryption

!

hostname PUNE-01

!

!

!

!

!

!

!

!

ip cef

no ipv6 cef

!

!

--More--


 PUNE-01#sh startup-config

Using 564 bytes

!

version 15.4

no service timestamps log datetime msec

no service timestamps debug datetime msec

no service password-encryption

!

hostname PUNE-01

!

!

!

!

!

!

!

!

ip cef

no ipv6 cef

!

!

!

!

--More--



9)Erase the nvram configuration i.e running configuration of the Device.


PUNE-01#write erase

Erasing the nvram filesystem will remove all configuration files! Continue? [confirm]

[OK]

Erase of nvram: complete

%SYS-7-NV_BLOCK_INIT: Initialized the geometry of nvram


10)Reload the Device

PUNE-01#reload

System configuration has been modified. Save? [yes/no]:

% Please answer 'yes' or 'no'.

System configuration has been modified. Save? [yes/no]:yes

Building configuration...

[OK]

Proceed with reload? [confirm]

Monday, 2 March 2020

New CCNA (200-301)

CCNA Exam v1.0 (200-301)

Duration 120-minutes





Topics

20% 1.0 Network Fundamentals

1.1 Explain the role and function of network components
1.1.a Routers
1.1.b L2 and L3 switches
1.1.c Next-generation firewalls and IPS
1.1.d Access points
1.1.e Controllers (Cisco DNA Center and WLC)
1.1.f Endpoints
1.1.g Servers
1.2 Describe characteristics of network topology architectures
1.2.a 2 tier
1.2.b 3 tier
1.2.c Spine-leaf
1.2.d WAN
1.2.e Small office/home office (SOHO)
1.2.f On-premises and cloud
1.3 Compare physical interface and cabling types
1.3.a Single-mode fiber, multimode fiber, copper
1.3.b Connections (Ethernet shared media and point-to-point)
1.3.c Concepts of PoE
1.4 Identify interface and cable issues (collisions, errors, mismatch duplex, and/or speed)
1.5 Compare TCP to UDP
1.6 Configure and verify IPv4 addressing and subnetting
1.7 Describe the need for private IPv4 addressing
1.8 Configure and verify IPv6 addressing and prefix
1.9 Compare IPv6 address types
1.9.a Global unicast
1.9.b Unique local
1.9.c Link local
1.9.d Anycast
1.9.e Multicast
1.9.f Modified EUI 64
1.10 Verify IP parameters for Client OS (Windows, Mac OS, Linux)
1.11 Describe wireless principles
1.11.a Nonoverlapping Wi-Fi channels
1.11.b SSID
1.11.c RF
1.11.d Encryption
1.12 Explain virtualization fundamentals (virtual machines)
1.13 Describe switching concepts
1.13.a MAC learning and aging
1.13.b Frame switching
1.13.c Frame flooding
1.13.d MAC address table

20% 2.0 Network Access

2.1 Configure and verify VLANs (normal range) spanning multiple switches
2.1.a Access ports (data and voice)
2.1.b Default VLAN
2.1.c Connectivity
2.2 Configure and verify interswitch connectivity
2.2.a Trunk ports
2.2.b 802.1Q
2.2.c Native VLAN
2.3 Configure and verify Layer 2 discovery protocols (Cisco Discovery Protocol and LLDP)
2.4 Configure and verify (Layer 2/Layer 3) EtherChannel (LACP)
2.5 Describe the need for and basic operations of Rapid PVST+ Spanning Tree Protocol and
identify basic operations
2.5.a Root port, root bridge (primary/secondary), and other port names
2.5.b Port states (forwarding/blocking)
2.5.c PortFast benefits
2.6 Compare Cisco Wireless Architectures and AP modes
2.7 Describe physical infrastructure connections of WLAN components (AP, WLC,
access/trunk ports, and LAG)
2.8 Describe AP and WLC management access connections (Telnet, SSH, HTTP, HTTPS,
console, and TACACS+/RADIUS)
2.9 Configure the components of a wireless LAN access for client connectivity using GUI only
such as WLAN creation, security settings, QoS profiles, and advanced WLAN settings

25% 3.0 IP Connectivity

3.1 Interpret the components of routing table
3.1.a Routing protocol code
3.1.b Prefix
3.1.c Network mask
3.1.d Next hop
3.1.e Administrative distance
3.1.f Metric
3.1.g Gateway of last resort
3.2 Determine how a router makes a forwarding decision by default
3.2.a Longest match
3.2.b Administrative distance
3.2.c Routing protocol metric
3.3 Configure and verify IPv4 and IPv6 static routing
3.3.a Default route
3.3.b Network route
3.3.c Host route
3.3.d Floating static
3.4 Configure and verify single area OSPFv2
3.4.a Neighbor adjacencies
3.4.b Point-to-point
3.4.c Broadcast (DR/BDR selection)
3.4.d Router ID
3.5 Describe the purpose of first hop redundancy protocol

10% 4.0 IP Services

4.1 Configure and verify inside source NAT using static and pools
4.2 Configure and verify NTP operating in a client and server mode
4.3 Explain the role of DHCP and DNS within the network
4.4 Explain the function of SNMP in network operations
4.5 Describe the use of syslog features including facilities and levels
4.6 Configure and verify DHCP client and relay
4.7 Explain the forwarding per-hop behavior (PHB) for QoS such as classification, marking,
queuing, congestion, policing, shaping
4.8 Configure network devices for remote access using SSH
4.9 Describe the capabilities and function of TFTP/FTP in the network

15% 5.0 Security Fundamentals

5.1 Define key security concepts (threats, vulnerabilities, exploits, and mitigation
techniques)
5.2 Describe security program elements (user awareness, training, and physical access
control)
5.3 Configure device access control using local passwords
5.4 Describe security password policies elements, such as management, complexity, and
password alternatives (multifactor authentication, certificates, and biometrics)
5.5 Describe remote access and site-to-site VPNs
5.6 Configure and verify access control lists
5.7 Configure Layer 2 security features (DHCP snooping, dynamic ARP inspection, and port
security)
5.8 Differentiate authentication, authorization, and accounting concepts
5.9 Describe wireless security protocols (WPA, WPA2, and WPA3)
5.10 Configure WLAN using WPA2 PSK using the GUI

10% 6.0 Automation and Programmability

6.1 Explain how automation impacts network management
6.2 Compare traditional networks with controller-based networking
6.3 Describe controller-based and software defined architectures (overlay, underlay, and
fabric)
6.3.a Separation of control plane and data plane
6.3.b North-bound and south-bound APIs
6.4 Compare traditional campus device management with Cisco DNA Center enabled device
management
6.5 Describe characteristics of REST-based APIs (CRUD, HTTP verbs, and data encoding)
6.6 Recognize the capabilities of configuration management mechanisms Puppet, Chef, and
Ansible
6.7 Interpret JSON encoded data

 BEST OF LUCK !!!!!!