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Cisco 300-101 Exam Syllabus Topics:

Topic Details
Topic 1
  • Configure and Verify Static and Default Routing
  • Evaluate Routing Protocol Types

Topic 2
  • Describe Administrative Distance
  • Troubleshoot Passive Interfaces
  • Configure and Verify VRF Lite

Topic 3
  • Describe IP Operations
  • TCP Operations UDP Operations
  • Recognized Proposed Changes to the Network

Topic 4
  • Configure and Verify PPP
  • Authentication (PAP
  • CHAP) PPPoE

Topic 5
  • Identify Cisco Express Forwarding Concepts
  • Explain General Network Challenges

Topic 6
  • Configure and Verify OSPF Neighbor and Authentication

Topic 7
  • Configuration and Verify Device Access Control
  • Lines (VTY, AUX, Console)

Topic 8
  • Configure and Verify Logging
  • Network Time Protocol
  • IPv6 DHCP
  • Cisco NetFlow
  • Tracking Objects`

Topic 9
  • Configure and Verify GRE
  • Describe DMVPN (Signle Hub)
  • Easy Virtual Networking

Topic 10
  • Configure and Verify Loop Prevention Mechanisms
  • Route Tagging and Filtering
  • Split Horizen

Topic 11
  • Configure and Verify Device Management
  • Console and VTY
  • Telnet
  • HTTP
  • HTTPS
  • SSH
  • SCP
  • FTP

Topic 12
  • Configure and Verify RIPv2
  • Describe and Verify RIPng EIGRP Packet Types


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  • Number of Questions: 60-70
  • Length of Examination: 90 minutes
  • Format: Multiple choices, multiple answers

Cisco Implementing Cisco IP Routing Sample Questions (Q198-Q203):

NEW QUESTION # 198
An engineer has configured a router to use EUI-64, and was asked to document the IPv6 address of the router. The router has the following interface parameters:
mac address C601.420F.0007
subnet 2001:DB8:0:1::/64
Which IPv6 addresses should the engineer add to the documentation?

  • A. 2001:DB8:0:1:C601:42FF:FE0F:7
  • B. 2001:DB8:0:1:C601:42FE:800F:7
  • C. 2001:DB8:0:1:FFFF:C601:420F:7
  • D. 2001:DB8:0:1:FE80:C601:420F:7

Answer: A Explanation:
Explanation/Reference:
Explanation:
Extended Unique Identifier (EUI), as per RFC2373, allows a host to assign iteslf a unique 64-Bit IP Version
6 interface identifier (EUI-64). This feature is a key benefit over IPv4 as it eliminates the need of manual configuration or DHCP as in the world of IPv4. The IPv6 EUI-64 format address is obtained through the 48- bit MAC address. The Mac address is first separated into two 24-bits, with one being OUI (Organizationally Unique Identifier) and the other being NIC specific. The 16-bit 0xFFFE is then inserted between these two
24-bits to for the 64-bit EUI address. IEEE has chosen FFFE as a reserved value which can only appear in EUI-64 generated from the EUI-48 MAC address.
Here is an example showing how the Mac Address is used to generate EUI.

Next, the seventh bit from the left, or the universal/local (U/L) bit, needs to be inverted. This bit identifies whether this interface identifier is universally or locally administered. If 0, the address is locally administered and if 1, the address is globally unique. It is worth noticing that in the OUI portion, the globally unique addresses assigned by the IEEE has always been set to 0 whereas the locally created addresses has 1 configured. Therefore, when the bit is inverted, it maintains its original scope (global unique address is still global unique and vice versa). The reason for inverting can be found in RFC4291 section 2.5.1.
Reference: https://supportforums.cisco.com/document/100566/understanding-ipv6-eui-64-bit- address
NEW QUESTION # 199
What is the minimum log level for the event generated when an ACL drops a packet?

  • A. 0
  • B. 1
  • C. 2
  • D. 3

Answer: A
NEW QUESTION # 200
When use NPTv6 for IPV6 to IPV6 Address translation? (Choose two.)

  • A. Stateful address translation
  • B. Lack of overloading functionality
  • C. Mismatched prefix allocations
  • D. Identify all interface NAT inside or outside
  • E. One-to-one prefix rewrite
  • F. A limit of 32 1-to-1 translations

Answer: B,E
NEW QUESTION # 201
Refer to the exhibit.

Which option prevents routing updates from being sent to the DHCP router, while still allowing routing update messages to flow to the Internet router and the distribution switches?

  • A. Core(config-router)# passive-interface default Core(config-router)# no passive-interface Gi0/0 Core (config-router)# no passive-interface Gi3/1 Core(config-router)# no passive-interface Gi3/2
  • B. DHCP(config-router)# passive-interface default DHCP(config-router)# no passive-interface Gi1/0 Internet(config-router)# passive-interface Gi0/1 Internet (config-router)# passive-interface Gi0/2
  • C. Internet(config-router)# passive-interface default Core(config-router)# passive-interface default DSW1 (config-router)# passive-interface default DSW2(config-router)# passive-interface default
  • D. Core(config-router)# passive-interface Gi0/0 Core(config-router)# passive-interface Gi3/1 Core(config- router)# passive-interface Gi3/2 DHCP(config-router)# no passive-interface Gi1/0

Answer: A
NEW QUESTION # 202
A network engineer is considering enabling load balancing with EIGRP. Which consideration should be analyzed?

  • A. EIGRP unequal path load balancing can result in routing loops.
  • B. EIGRP allows a maximum of four paths across for load balancing traffic.
  • C. By default, EIGRP uses a default variance of 2 for load balancing.
  • D. By default, EIGRP performs equal cost load balancing at least across four equal cost paths.

Answer: D
NEW QUESTION # 203
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