Friday, May 1, 2020

MCIA - Level 1 MuleSoft Certified Integration Architect - Level 1 Exam

Description
MuleSoft Certified Integration Architect - Level 1 A MuleSoft Certified Integration Architect should be able to drive and be responsible for an organization’s Anypoint Platform implementation and the technical quality, governance (ensuring compliance), and operationalization of the integration solutions. The MCIA - Level 1 exam validates that an architect has the required knowledge and skills to work with technical and non-technical stakeholders to translate functional and non-functional requirements into integration interfaces and implementations. S/he should be able to:

Create the high-level design of integration solutions and guide implementation teams on the choice of Mule components and patterns to use in the detailed design and implementation.
Select the deployment approach and configuration of Anypoint Platform with any of the available deployment options (MuleSoft-hosted or customer-hosted control plane and runtime plane).
Design Mule applications for any of the available deployment options of the Anypoint Platform runtime plane.
Apply standard development methods covering the full development lifecycle (project preparation, analysis, design, development, testing, deployment, and support) to ensure solution quality.
Advise technical teams on performance, scalability, reliability, monitoring and other operational concerns of integration solutions on Anypoint Platform.
Design reusable assets, components, standards, frameworks, and processes to support and facilitate API and integration projects.

Note: Approximately 10% of the exam is specific to Mule 4.

A downloadable data sheet for the exam can be found here.

Format: Multiple-choice, closed book, proctored online or in a testing center
Length: 58 questions
Duration: 120 minutes (2 hours)
Pass score: 70%
Language: English

The exam can be taken a maximum of 5 times, with a 24 hour wait between each attempt.

The exam can be purchased with one of the following. Each includes a coupon for one free retake.

1.5 Flexible Training Credits (FTC)

A voucher obtained by attending the instructor-led Anypoint Platform Architecture: Integration Solutions course

Additional retakes (attempts 3 to 5) are $250 or 1 FTC and do not come with a free retake.

The certification expires two years from the date of passing.

The best preparation for the exam is to take the instructor-led Anypoint Platform Architecture: Integration Solutions course. Candidates should be familiar with all of the content in the course and be able to apply the concepts.

The following resources are available to assist in a candidate’s preparation:

Instructor-led training: Anypoint Platform Architecture: Integration Solutions

Recommended as the most effective and efficient method of preparation
5-day class
Private and public classes available
Onsite and online classes available
Includes a certification voucher for this exam
Practice quiz
20+ multiple-choice questions
Comparable difficulty to the proctored exam

Topics
The exam validates that the candidate can perform the following tasks.

Note: ARC:INT is the acronym for the Anypoint Platform Architecture: Integration Solutions course.

Configuring and Provisioning Anypoint Platform
Configure business groups, roles, and permissions within an Anypoint Platform organization
Select Anypoint Platform identity management vs client management for the correct purpose
Identify common and distinguishing features and usage scenarios for CloudHub VPCs and public worker cloud
Suggest number of Mule runtimes for a Mule application given performance targets and HA requirements
Define a performant and HA deployment architecture for Mule applications in on-prem deployments
Select monitoring options for all available Anypoint Platform deployment options

ARC:INT Module 5
ARC:INT Module 7
ARC:INT Module 9
ARC:INT Module 10

Selecting Integration Styles

Given a description of an integration problem, identify the most appropriate integration style
When designing an integration solution, select the most appropriate interface/data technology and interface definition language for all integration interfaces
Design parts of an integration solution using general message-based integration or event-driven architecture (EDA) using message brokers or streaming technologies
Recognize scenarios where message correlation is necessary

ARC:INT Module 2
ARC:INT Module 3
ARC:INT Module 4
ARC:INT Module 5
ARC:INT Module 7

Designing and Documenting Enterprise Integration Architecture
For a given organization and their preferences and constraints, select the most appropriate Anypoint Platform deployment option
Design parts of an integration solution using any SOA-based integration approach
Identify the information that should be included in any integration solution architecture document
Simplify a large-scale enterprise-wide integration architecture so that it can be effectively communicated to semi-technical stakeholders
Identify the persistence mechanism and durability used for watermarks in different Mule runtime deployment options
Identify integrations scenarios for which the use of batch would be beneficial
Design for short or long retries using reconnection strategies
Identify common and distinguishing features and usage scenarios for CloudHub DLBs and public CloudHub LBs

ARC:INT Module 1
ARC:INT Module 3
ARC:INT Module 7
ARC:INT Module 8

Architecting Resilient and Performant Integration Solutions
Recognize requirements that are best addressed using transactions (single-resource and XA)
Define transaction considerations where needed in a solution design including the requirement for an external transaction coordinator
Specify the connectors that can participate in the different types of transactions
Recognize the purpose of various fault-tolerance strategies for remote calls
Design parts of an integration solution using general batch-oriented integration or ETL to/from files or databases
Determine if horizontal scaling will help a Mule application meet its performance targets

ARC:INT Module 5
ARC:INT Module 7
ARC:INT Module 8
ARC:INT Module 11
ARC:INT Module 12
ARC:INT Module 13
ARC:INT Module 14

Handling Events and Messages

Identify scenarios in which to use different storage mechanisms including persistent and non-persistent ObjectStore, in-memory ObjectStore, cluster-replicated in-memory OS, hashtables, and disk-persisted OS
Select suitable storage mechanisms for IDs (correlation IDs, message IDs, transaction IDs) in Mule applications deployed to CloudHub or on-prem
Use Mule 4 constructs to make effective use of Enterprise Integration Patterns
Use streaming to handle large payloads within Mule applications
Predict the runtime behavior of messages queued internally for processing for load balancing or to achieve reliability
Predict the runtime load balancing behavior of messages sent to the public URL of a Mule application deployed to multiple CloudHub workers

ARC:INT Module 8
ARC:INT Module 9
ARC:INT Module 12
ARC:INT Module 13
ARC:INT Module 14

Designing Applications with Anypoint Connectors
For a given Mule 4 connector (Premium, Select, and MuleSoft Certified), identify its purpose, the network protocol it uses, and whether it supports incoming or outgoing types of connections
Specify the requirements that would require the use of domain-level connectors
Specify when a Mule application would require persistence and select an appropriate persistence solution
Identify possible failures when a component (such as an API client) invokes a remote component (such as an API implementation)

ARC:INT Module 2
ARC:INT Module 3
ARC:INT Module 4
ARC:INT Module 8
ARC:INT Module 10
ARC:INT Module 12

Designing Networks for Anypoint Connectors
For a given connector, recognize whether it will typically connect to/from an external system across organizational boundaries
Use transport protocols and connectors correctly and coherently when and where applicable
Match protocols with networking constraints and API layers
When incoming and outgoing HTTPS connections with mutual authentication are used, identify what certificates are needed in what stores in different environments

ARC:INT Module 3
ARC:INT Module 7
ARC:INT Module 8
ARC:INT Module 15
ARC:INT Module 16

Handling Integration Implementation Lifecycles
Identify the Anypoint Platform components where various types of API-related assets and artifacts are maintained or published
Recognize the advantages and disadvantages of storing and managing properties in properties files in Mule applications
For a given API or integration, identify the steps that need to be taken in order for testing to occur

ARC:INT Module 6
ARC:INT Module 7
ARC:INT Module 10

Implementing DevOps
Specify the purpose of various MuleSoft products in the area of DevOps/CI/CD
Identify differences, advantages, and disadvantages of DevOps based on deployable Mule applications versus container images
Formulate an effective source code management strategy including branching and merging
Specify testing strategies that use both mocking and invoking of external dependencies

ARC:INT Module 6
ARC:INT Module 7
ARC:INT Module 10

Operating and Monitoring Integration Solutions
Specify the type of metrics for API invocations and API implementations that can be monitored with Anypoint Platform
Identify metrics and operations exposed by default via JMX
Identify differences in monitoring and alerting between customer-hosted and MuleSoft-hosted Anypoint Platform
Identify ways of transmitting IDs between components in remote interactions and capture this in the interface design of the remote interaction

QUESTION 1
A global organization operates datacenters in many countries. There are private network links between these
datacenters because all business data (but NOT metadata) must be exchanged over these private network
connections.
The organization does not currently use AWS in any way.
The strategic decision has just been made to rigorously minimize IT operations effort and investment going forward.
What combination of deployment options of the Anypoint Platform control plane and runtime plane(s) best
serves this organization at the start of this strategic journey?

A. MuleSoft-hosted Anypoint Platform control plane CloudHub Shared Worker Cloud in multiple AWS regions
B. MuleSoft-hosted Anypoint Platform control plane Customer-hosted runtime plane in multiple AWS regions
C. MuleSoft-hosted Anypoint Platform control plane Customer-hosted runtime plane in each datacenter
D. Anypoint Platform - Private Cloud Edition Customer-hosted runtime plane in each datacenter

Correct Answer: B

QUESTION 2
Anypoint Exchange is required to maintain the source code of some of the assets committed to it, such as
Connectors, Templates, and API specifications.
What is the best way to use an organization's source-code management (SCM) system in this context?

A. Organizations need to point Anypoint Exchange to their SCM system so Anypoint Exchange can pull source code when requested by developers and provide it to Anypoint Studio
B. Organizations need to use Anypoint Exchange as the main SCM system to centralize versioning and avoid code duplication
C. Organizations can continue to use an SCM system of their choice for branching and merging, as long as they follow the branching and merging strategy enforced by Anypoint Exchange
D. Organizations should continue to use an SCM system of their choice, in addition to keeping source code for these asset types in Anypoint Exchange, thereby enabling parallel development, branching, and merging

Correct Answer: B

QUESTION 3
An organization is designing an integration solution to replicate financial transaction data from a legacy system into a data warehouse (DWH).
The DWH must contain a daily snapshot of financial transactions, to be delivered as a CSV file. Daily
transaction volume exceeds tens of millions of records, with significant spikes in volume during popular shopping periods.
What is the most appropriate integration style for an integration solution that meets the organization's current requirements?

A. API-led connectivity
B. Batch-triggered ETL
C. Event-driven architecture
D. Microservice architecture

Correct Answer: D
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Thursday, April 30, 2020

PCNSE6 Palo Alto Networks Certified Network Security Engineer 6

A Palo Alto Networks Certified Network Security Engineer (PCNSE) is capable of designing, deploying, configuring, maintaining and trouble-shooting the vast majority of Palo Alto Networks Operating Platform implementations.

Benefits
PCNSE certification validates your knowledge of the Security Operating Platform, ensuring you can make use of its full functionality to benefit your company and showcase your expertise.

The Palo Alto Networks Certified Cybersecurity Associate (PCCSA) possesses knowledge of cutting-edge technology available today to manage the cyber threats of tomorrow. The PCCSA certification should be pursued by students and individuals new to cybersecurity to validate up-to-date knowledge on cyber-threats and cyber-security.

The Palo Alto Networks Certified Network Security Administrator (PCNSA) recognizes individuals with the knowledge to operate Palo Alto Networks next-generation firewalls to protect networks from cutting edge cyber threats.

The Palo Alto Networks Certified Network Security Engineer (PCNSE) recognizes individuals with in-depth knowledge and abilities to design, install, configure, maintain and troubleshoot the vast majority of implementations based on the Palo Alto Networks platform. The PCNSE exam should be taken by anyone who wishes to demonstrate a deep understanding of Palo Alto Networks technologies, including customers who use Palo Alto Networks products, value-added resellers, pre-sales system engineers, system integrators, and support staff.

For detailed information on individual Certification requirements, please visit the Palo Alto Networks Certification web site.

New! Palo Alto Networks Launches Online Proctored Exams!

Your exam, your location
Here at Palo Alto Networks we know it’s tough studying for exams. We get it. So travelling to a testing center and scheduling appointments shouldn’t be. That’s why we are now offering Online Proctored (OP) Exams, allowing you to conveniently and easily take exams from anywhere.

We’re eliminating travel time and going the extra mile for you, so you can test from your home or office space at your convenience, while being monitored by an offsite proctor. Starting January 2019, Palo Alto Networks candidates will now have the option to take exams whenever or wherever desired. Learn more.

Palo Alto Networks Certification Exams Preparation
The exams are currently computer-based assessments of knowledge and skills. There are multiple choice, matching and ordering questions. As preparation for Palo Alto Networks Certification exams, recommended courses and/or study materials are available.

How To Register For An Exam
Exam appointments may be made in advance or on the day you wish to test, subject to availability. The exam/appointment testing time limit noted on Pearson VUE web pages reflects the total appointment time, including an NDA, exam time, and survey.

Sign in or Create an Account with Pearson VUE. Please use your Legal name as displayed on your government issued IDs. Please also use your Business email address as your primary address. Not using business email address can negatively impact your company’s partner status. Login to your account, select an exam, select a location, and then register for a seat.

Palo Alto Networks Certification Program Agreement

All certification candidates are required to accept and agree to the terms of the Palo Alto Networks Certification Candidate Agreement before taking a certification exam. Palo Alto Networks encourages candidates to download and carefully review the agreement before their exam appointment. The Agreement will not be available at the testing center. It will be provided with the exam confirmation email from Pearson VUE. The Agreement is between Palo Alto Networks and each individual candidate and not with the employer of those candidates.

The Palo Alto Networks Certification Candidate Agreement contains nondisclosure obligations, trademark license rights, termination rights, indemnification obligations, limitations of liability and other responsibilities.

Each time the candidate takes a Palo Alto Networks certification exam, they will be required to assent to the agreement by clicking “Accept”. By clicking “Accept” they acknowledge they have read, accept, and agree to be bound by the terms of the agreement. Read the agreement.

Certification Exam Retake Policy
In the event a candidate fails their first attempt to pass any Palo Alto Networks certification exam, Palo Alto Networks requires the candidate to wait five business days. If a candidate fails their second attempt Palo Alto Networks requires the candidate to wait 15 business days before than can attempt to pass the exam again. After the third attempt a candidate will be required to wait an additional 15 business days prior to attempting to pass the exam again. If the candidate is unsuccessful after the third attempt, candidate will need to contact certification@paloaltonetworks.com prior to any additional attempts.
Exam Rescheduling and Cancellation Policies

If candidate needs to reschedule or cancel their exam the must contact Pearson VUE 48 hours prior to the exam appointment. Rescheduling an exam less than 48 hours in advance is subject to the same day forfeit of exam fee. Exams scheduled with ADA accommodations need to reschedule or cancel their exam 72 hours in advance or will be subject to the same day forfeit exam fee.

ID Requirements

Photo Capture and Digital Signature Requirements

To maintain the highest level of security and authentication, all Palo Alto Networks score reports provided at Pearson VUE testing center will include a photo of the candidate. Test Center Administrators are required to take a photograph of each candidate prior to testing. Candidates who do not wish to have their picture taken will need to contact certification@paloaltonetworks.com 14 business days in advance of the exam.

Testing Center Administrators will also capture Digital Signatures during the sign in process at the testing centers.

QUESTION
1
Configuring a pair of devices into an Active/Active HA pair provides support for:

A. Higher session count
B. Redundant Virtual Routers
C. Asymmetric routing environments
D. Lower fail-over times

Answer: B


QUESTION 2
As a Palo Alto Networks firewall administrator, you have made unwanted changes to the Candidate configuration. These changes may be undone by Device > Setup > Operations
>
Configuration Management>....and then what operation?

A. Revert to Running Configuration
B. Revert to last Saved Configuration
C. Load Configuration Version
D. Import Named Configuration Snapshot

Answer: A


QUESTION 3
Wildfire may be used for identifying which of the following types of traffic?

A. URL content
B. DHCP
C. DNS
D. Viruses

Answer: D


QUESTION 4
In PAN-OS 5.0, how is Wildfire enabled?

A. Via the "Forward" and "Continue and Forward" File-Blocking actions
B. A custom file blocking action must be enabled for all PDF and PE type files
C. Wildfire is automatically enabled with a valid URL-Filtering license
D. Via the URL-Filtering "Continue" Action.

Answer: A
QUESTION 5
Administrative Alarms can be enabled for which of the following except?

A. Certificate Expirations
B. Security Violation Thresholds
C. Security Policy Tags
D. Traffic Log capacity

Answer: A
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Wednesday, April 29, 2020

C1000-042 IBM Certified Support Professional - TSS

Number of questions: 100
Number of questions to pass: 80
Time allowed: 120 mins
Status: Live

The TSS Academy is available to IBM Business Partners and IBM employees that are, or plan to be part of the IBM Technology Support Services Business.

This test is designed to validate the understanding of the modules presented in the TSS Academy (www.tssacademy.biz)

This test consist of one section that covers all knowledge areas presented in the TSS Academy.

To prepare for the test follow the link to the TSS Academy: www.tssacademy.biz

It is highly recommended to complete all mandatory modules and earn the TSS Academy Graduate Badge prior to this test. (https://www.youracclaim.com/org/ibm/badge/tss-academy-graduate)

The TSS Academy is available to IBM Business Partners and IBM employees that are, or plan to be part of the IBM Technology Support Services Business.

To prepare for the test follow the link to the TSS Academy: www.tssacademy.biz

In the TSS Academy you will be able to learn everything you need to pass this Test. There is an option "Preparing for a certificate" where you can practice a full test.

It is highly recommended to complete all mandatory modules and earn the TSS Academy Graduate Badge prior to this test. (https://www.youracclaim.com/org/ibm/badge/tss-academy-graduate)
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Tuesday, April 28, 2020

Exam MB-400 Microsoft Power Apps + Dynamics 365 Developer

The content of this exam will be updated on May 22, 2020. Please download the skills measured document below to see what will be changing.

Candidates for this exam are Developers who work with Microsoft Power Apps model-driven apps in Dynamics 365 to design, develop, secure, and extend a Dynamics 365 implementation. Candidates implement components of a solution that include application enhancements, custom user experience, system integrations, data conversions, custom process automation, and custom visualizations.

Candidates must have strong applied knowledge of Power Apps model-driven apps in Dynamics 365, including in-depth understanding of customization, configuration, integration, and extensibility, as well as boundaries and constraints. Candidates should have a basic understanding of DevOps practices for Power Apps model-driven apps in Dynamics 365. Candidates must expose, store, and report on data.

Candidates should have development experience that includes JavaScript, TypeScript, C#, HTML, .NET, Microsoft Azure, Office 365, RESTful Web Services, ASP.NET, and Power BI.

Skills measured
The content of this exam will be updated on May 22, 2020. Please download the skills measured document below to see what will be changing.
Create a technical design (10-15%)
Configure Common Data Service (CDS) (15-20%)
Create and configure Power Apps (10-15%)
Configure business process automation (10-15%)
Extend the user experience (15-20%)
Extend the platform (15-20%)
Develop integrations (10-15%)

Audience Profile Candidates for this exam are developers who work with Microsoft Power Apps model-driven apps in Dynamics 365 to design, develop, secure, and extend a Dynamics 365 implementation. Candidates implement components of a solution that include application enhancements, custom user experience, system integrations, data conversions, custom process automation, and custom visualizations. Candidates must have strong applied knowledge of Power Apps model-driven apps in Dynamics 365, including in-depth understanding of customization, configuration, integration, and extensibility, as well as boundaries and constraints. Candidates should have a basic understanding of DevOps practices for Power Apps model-driven apps in Dynamics 365. Candidates must expose, store, and report on data. Candidates should have development experience that includes JavaScript, TypeScript, C#, HTML, .NET, Microsoft Azure, Office 365, RESTful Web Services, ASP.NET, and Power BI. Skills Measured

NOTE: The bullets that appear below each of the skills measured are intended to illustrate how we are assessing that skill. This list is not definitive or exhaustive.

NOTE: In most cases, exams do NOT cover preview features, and some features will only be added to an exam when they are GA (General Availability).

Create a Technical Design (10-15%)
Validate requirements and design technical architecture
 design and validate technical architecture
 design authentication and authorization strategy
 determine whether requirements can be met with out-of-the-box functionality
 determine when to use Logic Apps versus Microsoft Flow
 determine when to use serverless computing vs. plug-ins
 determine when to build a virtual entity data source provider vs. when to use connectors Create a data model
 design a data model Configure Common Data Service (CDS) (

15-20%) Configure security to support development
 troubleshoot operational security issues
 create or update security roles and field-level security profiles Implement entities and fields
 configure entities
 configure fields
 configure relationships Create and maintain solutions
 configure solutions
 import and export solutions
 manage solution dependencies Create and Configure Power Apps

(10-15%) Create model-driven apps
 configure a model-driven app
 configure forms
 configure views
 configure visualizations Create Canvas Apps
 configure a Canvas App
 develop complex expressions Configure business process automation

(10-15%) Configure Microsoft Flow
 configure a Flow
 configure actions to use CDS connectors
 develop complex expressions Implement processes
 create and configure business process flows
 create and configure business rules

Extend the user experience

(15-20%) Apply business logic using client scripting
 configure supporting components
 create JavaScript or Typescript code
 register an event handler
 use the Web API from client scripting

Create a Power Apps Component Framework (PCF) component
 initialize a new PCF component
 configure a PCF component manifest
 implement the component interfaces
 package, deploy, and consume the component
 use Web API device capabilities and other component framework services

Create a command button function
 create the command function
 design command button triggers, rules, and actions
 edit the command bar using the Ribbon Workbench
 modify the form JavaScript library dependencies

Extend the platform (15-20%)


Create a plug-in
 debug and troubleshoot a plug-in
 develop a plug-in
 use the Organization Service
 optimize plug-ins for performance
 register custom assemblies by using the Plug-in Registration Tool
 create custom actions

Configure custom connectors for Power Apps and Flow
 create a definition for the API
 configure API security
 use policy templates

Use platform APIs
 interact with data and processes using the Web API
 optimize for performance, concurrency, transactions, and batching
 perform discovery using the Web API
 perform entity metadata operations with the Web API
 use OAuth with the platform APIs

Develop Integrations (10-15%)
Publish and consume events
 publish an event by using the API
 publish an event by using the Plug-in Registration Tool
 register a webhook
 create an Azure event listener application

Implement data synchronization
 configure and use entity change tracking
 configure the data export service to integrate with Azure SQL Database
 create and use alternate keys

The exam guide below shows the changes that will be implemented on May 22, 2020. Audience Profile Candidates for this exam are developers who work with Microsoft Power Apps model-driven apps in Dynamics 365 to design, develop, secure, and extend a Dynamics 365 implementation. Candidates implement components of a solution that include application enhancements, custom user experience, system integrations, data conversions, custom process automation, and custom visualizations. Candidates must have strong applied knowledge of Power Apps model-driven apps in Dynamics 365, including in-depth understanding of customization, configuration, integration, and extensibility, as well as boundaries and constraints. Candidates should have a basic understanding of DevOps practices for Power Apps model-driven apps in Dynamics 365. Candidates must expose, store, and report on data. Candidates should have development experience that includes JavaScript, TypeScript, C#, HTML, .NET, Microsoft Azure, Office 365, RESTful Web Services, ASP.NET, and Power BI.

Skills Measured NOTE:
The bullets that appear below each of the skills measured are intended to illustrate how we are assessing that skill. This list is not definitive or exhaustive.
NOTE: In most cases, exams do
NOT cover preview features, and some features will only be added to an exam when they are GA (General Availability). Create a Technical Design

(10-15%) Validate requirements and design technical architecture
 design and validate technical architecture
 design authentication and authorization strategy
 determine whether requirements can be met with out-of-the-box functionality
 determine when to use Logic Apps versus Microsoft FlowPower Automate flows
 determine when to use serverless computing vs. plug-ins
 determine when to build a virtual entity data source provider vs. when to use connectors Create a data model
 design a data model Configure Common Data Service (CDS)

(15-20%) Configure security to support development
 troubleshoot operational security issues
 create or update security roles and field-level security profiles Implement entities and fields
 configure entities
 configure fields
 configure relationships Create and maintain solutions
 configure solutions
 import and export solutions
 manage solution dependencies Create and Configure Power Apps

(10-15%) Create model-driven apps
 configure a model-driven app
 configure forms
 configure views
 configure visualizations Create Canvas Apps
 configure a Canvas App
 develop complex expressions Configure business process automation

(10-15%) Configure Microsoft FlowPower Automate
 configure a Flow
 configure actions to use CDS Common Data Service connectors
 develop complex expressions Implement processes
 create and configure business process flows
 create and configure business rules

Extend the user experience (15-20%)
Apply business logic using client scripting

 configure supporting components
 create JavaScript or Typescript code
 register an event handler
 use the Web API from client scripting

Create a Power Apps Component Framework (PCF) component
 initialize a new PCF component
 configure a PCF component manifest
 implement the component interfaces
 package, deploy, and consume the component
 use Web API device capabilities and other component framework services

Create a command button function
 create the command function
 design command button triggers, rules, and actions
 edit the command bar using the Ribbon Workbench
 modify the form JavaScript library dependencies

Extend the platform (15-20%)
Create a plug-in
 debug and troubleshoot a plug-in
 develop a plug-in
 use the Organization Service global Discovery Service endpoint
 optimize plug-ins for performance
 register custom assemblies by using the Plug-in Registration Tool
 create custom actions

Configure custom connectors for Power Apps and Flow
 create a definition for the API
 configure API security
 use policy templates

Use platform APIs
 interact with data and processes using the Web API
 optimize for performance, concurrency, transactions, and batching
 perform discovery using the Web API
 perform entity metadata operations with the Web API
 use OAuth with the platform APIs

Develop Integrations (10-15%)
Publish and consume events
 publish an event by using the API
 publish an event by using the Plug-in Registration Tool
 register a webhook
 create an Azure event listener application

Implement data synchronization
 configure and use entity change tracking
 configure the data export service to integrate with Azure SQL Database
 create and use alternate keys

QUESTION 1
You need to replace the bicycle inspection forms.
Which two solutions should you use? Each correct answer presents part of the solution.
NOTE: Each correct selection is worth one point.

A. a canvas app that guides the technician through the inspection
B. a logic app that guides the technician through the inspection
C. a flow that maps inspection data to Dynamics 365 for Field Service
D. a model-driven app based on customer service entities

Correct Answer: C,D


QUESTION 2
Note: This question is part of a series of questions that present the same scenario. Each question in
the series contains a unique solution that might meet the stated goals. Some question sets might have
more than one correct solution, while others might not have a correct solution.
After you answer a question in this section, you will NOT be able to return to it. As a result, these
questions will not appear in the review screen.

A Common Data Service (CDS) environment has two custom entities named Building code and Work item.
Building code has a code date custom field and Work item has an elapsed time custom field. Construction
workers use a consolidated custom form with data from both entities to fill.in their daily work items.
A JavaScript library is used with these custom entities and fields to apply complex logic.
You need to ensure that the JavaScript library continues to function as originally designed if other developers
expand the environment.
Solution: In form properties of the consolidated form, add the JavaScript library in the events tab and add the
two custom fields to the dependent fields section of the non-event dependencies tab.
Does the solution meet the goal?

A. Yes
B. No

Correct Answer: B

QUESTION 3
Note: This question is part of a series of questions that present the same scenario. Each question in
the series contains a unique solution that might meet the stated goals. Some question sets might have
more than one correct solution, while others might not have a correct solution.
After you answer a question in this section, you will NOT be able to return to it. As a result, these
questions will not appear in the review screen.

A Common Data Service (CDS) environment has two custom entities named Building code and Work item.
Building code has a code date custom field and Work item has an elapsed time custom field. Construction
workers use a consolidated custom form with data from both entities to fill.in their daily work items.
A JavaScript library is used with these custom entities and fields to apply complex logic.
You need to ensure that the JavaScript library continues to function as originally designed if other developers
expand the environment.
Solution: In the JavaScript library, add Building code with Code date and Work item with Elapsed time in the dependencies tab.
Does the solution meet the goal?

A. Yes
B. No

Correct Answer: A
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Thursday, April 23, 2020

AZ-220 Microsoft Azure IoT Developer Exam

The Azure IoT Developer is responsible for the implementation and the coding required to create and maintain the cloud and edge portion of an IoT solution. In addition to configuring and maintaining the devices by using cloud services, the IoT Developer also sets up the physical devices. The IoT Developer is responsible for maintaining the devices throughout the life cycle.

The IoT Developer implements designs for IoT solutions, including device topology, connectivity, debugging and security. The IoT Developer deploys compute/containers and configures device networking. The IoT Developer implements designs for solutions to manage data pipelines, including monitoring and data transformation as it relates to IoT. The IoT Developer works with data engineers and other stakeholders to ensure successful business integration.

IoT Developers should have a good understanding of how to implement the Azure services that form an IoT solution, including data storage options, data analysis, data processing, and platform-as-a-service options. IoT Developers must be able to recognize Azure IoT service configuration settings within the code portion of an IoT solution and perform specific IoT coding tasks in at least one Azure-supported language, including C#, Node, C, or Python.

Part of the requirements for: Microsoft Certified: Azure IoT Developer Specialty

Related exams: none
Exam AZ-220: Microsoft Azure IoT Developer
Languages: English
This exam measures your ability to implement the IoT solution infrastructure; provision and manage devices; implement solutions on Azure IoT Edge devices; process and manage data; monitor, troubleshoot, and optimize IoT solutions; and implement security.

Skills measured
Implement the IoT solution infrastructure (15-20%)
Provision and manage devices (20-25%)
Implement Edge (15-20%)
Process and manage data (15-20%)
Monitor, troubleshoot, and optimize IoT solutions (15-20%)

Implement security (15-20%)

create an IoT Hub
 register a device
 configure a device twin
 configure IoT Hub tier and scaling

Build device messaging and communication
 build messaging solutions by using SDKs (device and service)
 implement device-to-cloud communication
 implement cloud-to-device communication
 configure file upload for devices

Configure physical IoT devices
 recommend an appropriate protocol based on device specifications
 configure device networking, topology, and connectivity

Provision and manage devices (20-25%)
Implement the Device Provisioning Service (DPS)
 create a Device Provisioning Service
 create a new enrollment in DPS
 manage allocation policies by using Azure Functions
 link an IoT Hub to the DPS

Manage the device lifecycle
 provision a device by using DPS
 deprovision an autoenrollment
 decommission (disenroll) a device

Manage IoT devices by using IoT Hub
 manage devices list in the IoT Hub device registry
 modify device twin tags and properties
 trigger an action on a set of devices by using IoT Hub Jobs and Direct Methods
 set up Automatic Device Management of IoT devices at scale

Build a solution by using IoT Central
 define a device type in Azure IoT Central
 configure rules and actions in Azure IoT Central
 define the operator view
 add and manage devices from IoT Central
 monitor devices

Implement Edge (15-20%)

Set up and deploy an IoT Edge device
 create a device identity in IoT Hub
 deploy a single IoT device to IoT Edge
 create a deployment for IoT Edge devices
 install container runtime on IoT devices
 define and implement deployment manifest
 update security daemon and runtime

Develop modules
 create and configure an Edge module
 deploy a module to an Edge device
 publish an IoT Edge module to an Azure Container Registry

Configure an IoT Edge device
 select and deploy an appropriate gateway pattern
 implement module-to-module communication
 implement and configure offline support

Process and manage data (15-20%)

Configure routing in Azure IoT Hub
 implement message enrichment in IoT Hub
 configure routing of IoT Device messages to endpoints
 define and test routing queries
 integrate with Event Grid

Configure stream processing
 create ASA for data and stream processing of IoT data
 process and filter IoT data by using Azure Functions
 configure Stream Analytics outputs

Configure an IoT solution for Time Series Insights (TSI)
 implement solutions to handle telemetry and time-stamped data
 create an Azure Time Series Insights (TSI) environment
 connect the IoT Hub and the Time Series Insights (TSI)

Monitor, troubleshoot, and optimize IoT solutions (15-20%)

Configure health monitoring
 configure metrics in IoT Hub
 set up diagnostics logs for Azure IoT Hub
 query and visualize tracing by using Azure monitor

Troubleshoot device communication
 establish maintenance communication
 verify device telemetry is received by IoT Hub
 validate device twin properties, tags and direct methods
 troubleshoot device disconnects and connects

Perform end-to-end solution testing and diagnostics
 estimate the capacity required for each service in the solution
 conduct performance and stress testing
 set up device D2C message tracing by using Azure Distributed Tracing

Implement security (15-20%)

Implement device authentication in the IoT Hub
 choose an appropriate form of authentication
 manage the X.509 certificates for a device
 manage the symmetric keys for a device

Implement device security by using DPS
 configure different attestation mechanisms with DPS
 generate and manage x.509 certificates for IoT Devices
 configure enrollment with x.509 certificates
 generate a TPM endorsements key for a device
 configure enrollment with symmetric keys

Implement Azure Security Center (ASC) for IoT
 enable ASC for IoT in Azure IoT Hub
 create security modules
 configure custom alerts

QUESTION 1
Note: This question is part of a series of questions that present the same scenario. Each question in
the series contains a unique solution that might meet the stated goals. Some question sets might have
more than one correct solution, while others might not have a correct solution.
After you answer a question in this question, you will NOT be able to return to it. As a result, these
questions will not appear in the review screen.
You have an Azure IoT solution that includes an Azure IoT hub, a Device Provisioning Service instance, and 1,000 connected IoT devices.
All the IoT devices are provisioned automatically by using one enrollment group.
You need to temporarily disable the IoT devices from the connecting to the IoT hub.
Solution: From the Device Provisioning Service, you disable the enrollment group, and you disable device
entries in the identity registry of the IoT hub to which the IoT devices are provisioned.
Does the solution meet the goal?

A. Yes
B. No

Correct Answer: A

QUESTION 2
Note: This question is part of a series of questions that present the same scenario. Each question in
the series contains a unique solution that might meet the stated goals. Some question sets might have
more than one correct solution, while others might not have a correct solution.
After you answer a question in this question, you will NOT be able to return to it. As a result, these
questions will not appear in the review screen.
You have an Azure IoT solution that includes an Azure IoT hub, a Device Provisioning Service instance, and
1,000 connected IoT devices.
All the IoT devices are provisioned automatically by using one enrollment group.
You need to temporarily disable the IoT devices from the connecting to the IoT hub.
Solution: You delete the enrollment group from the Device Provisioning Service.
Does the solution meet the goal?

A. Yes
B. No

Correct Answer: B

QUESTION 3
Note: This question is part of a series of questions that present the same scenario. Each question in
the series contains a unique solution that might meet the stated goals. Some question sets might have
more than one correct solution, while others might not have a correct solution.
After you answer a question in this question, you will NOT be able to return to it. As a result, these
questions will not appear in the review screen.
You have an Azure IoT solution that includes an Azure IoT hub, a Device Provisioning Service instance, and
1,000 connected IoT devices.
All the IoT devices are provisioned automatically by using one enrollment group.
You need to temporarily disable the IoT devices from the connecting to the IoT hub.
Solution: From the IoT hub, you change the credentials for the shared access policy of the IoT devices.
Does the solution meet the goal?

A. Yes
B. No

Correct Answer: B
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Wednesday, April 15, 2020

1z0-083 Oracle Database Administration II Exam

Oracle Database Administration II | 1Z0-083
An Oracle Database Administration 2019 Certified Professional has proven theoretical understanding of and the practical skills required to configure and manage Oracle Databases up to and including Oracle 19c. Passing this 2nd exam in a 2 exam path proves your skills in: installation, upgrades, patching, SQL programming skills, database and network administration and backup and recovery. This person also demonstrates fluency with some advanced skills such as multi-tenant, SQL performance monitoring and problem determination.

Audience:
Production Database Administrators (DBAs)
Development DBAs
DB Architects
DB designers and analysts.

Exam Title: Oracle Database Administration II
Exam Number: 1Z0-083
Exam Price: Rs.22,584 More on exam pricing
Format:  Multiple Choice
Duration: 150 Minutes
Number of Questions: 85
Passing Score: 57%
Validated Against:

Associated Certification Paths

Passing this exam is required to earn these certifications. Select each certification title below to view full requirements.

Oracle Database Administration 2019 Certified Professional
Oracle Database Administration 2019 Certified Professional (Upgrade from 10g,11g, 12c, 12cR2 OCP)

Review Exam Topics
Creating CDBs and Regular PDBs - Oracle Database: Managing Multitenant Architecture Ed 1

Configure and create a CDB
Create a new PDB from the CDB seed
Explore the structure of PDBs

Backup and Duplicate - Oracle Database: Managing Multitenant Architecture Ed 1
Perform Backup and Recover CDBs and PDBs
Duplicate an active PDB
Duplicate a Database

Manage Application PDBs - Oracle Database: Managing Multitenant Architecture Ed 1
Explain the purpose of application root and application seed
Define and create application PDBs
Install, upgrade and Patch applications
Create and administer Application PDBS
Clone PDBs and Application containers
Plug and unplug operations with PDBs and application containers
Comparing Local Undo Mode and Shared Undo Mode

Recovery and Flashback - Oracle Database: Managing Multitenant Architecture Ed 1
Restore and Recovering Databases with RMAN
Perform CDB and PDB flashback

Backup Strategies and Terminology - Oracle Database: Backup and Recovery Workshop
Perform Full and Incremental Backups and Recoveries
Compress and Encrypt RMAN Backups
Use a media manager
Create multi-section backups of very large files
Create duplexed backup sets
Create archival backups
Backup of recovery files
Backup non database files
Back up ASM meta data

Restore and Recovery Concepts - Oracle Database: Backup and Recovery Workshop

Employ the best Oracle Database recovery technology for your failure situation
Describe and use Recovery technology for Crash, Complete, and Point-in-time recovry

Using Flashback Technologies - Oracle Database: Backup and Recovery Workshop
Configure your Database to support Flashback
Perform flashback operations

Duplicating a Database - Oracle Database: Backup and Recovery Workshop
Duplicate Databases

Diagnosing Failures - Oracle Database: Backup and Recovery Workshop
Detect and repair database and database block corruption
Diagnosing Database Issues

Transporting Data - Oracle Database: Backup and Recovery Workshop
Transport Data

Install Grid Infrastructure and Oracle Database - Oracle Database: Deploy, Patch and Upgrade Workshop
Install Grid Infrastructure for a Standalone server
Install Oracle Database software

Patching Grid Infrastructure and Oracle Database - Oracle Database: Deploy, Patch and Upgrade Workshop
Patch Grid Infrastructure and Oracle Database

Upgrading to Oracle Grid Infrastructure - Oracle Database: Deploy, Patch and Upgrade Workshop
Upgrade Oracle Grid Infrastructure

Oracle Database 18c: New Features - Oracle Database: Deploy, Patch and Upgrade Workshop
Image and RPM based Database Installation

Oracle Restart - Oracle Database: Deploy, Patch and Upgrade Workshop
Configure and use Oracle Restart to manage components

Install Grid Infrastructure for a Standalone server - Oracle Database: Deploy, Patch and Upgrade Workshop
Rapid Home Provisioning

Using Availability Enhancements - Oracle Database 19c: New Features for Administrators
Use an RMAN recovery catalog
Use Flashback Database

Monitoring and Tuning Database Performance - Oracle Database: Administration Workshop
Managing Memory Components
Understanding The Automatic Workload Repository (AWR)
Understanding The Advisory Framework
Monitoring Wait Events, Sessions, and Services
Managing Metric Thresholds and Alerts
Understanding and Using The Performance Tuning Methodology
Performing Performance Planning
Understanding The Automatic Database Diagnostic Monitor (ADDM)

Manage CDBs and PDBs - Oracle Database: Managing Multitenant Architecture Ed 1
Manage PDB service names and connections
Manage startup, shutdown and availability of CDBs and PDBs
Change the different modes and settings of PDBs
Evaluate the impact of parameter value changes
Performance management in CDBs and PDBs
Control CDB and PDB resource usage with the Oracle Resource Manager

Upgrading and Transporting CDBs and Regular PDBs - Oracle Database: Managing Multitenant Architecture Ed 1
Upgrade an Oracle Database
Transport Data

Manage Security in Multitenant databases - Oracle Database: Managing Multitenant Architecture Ed 1
Manage Security in Multitenant databases
Manage PDB lockdown profiles
Audit Users in CDBs and PDBs
Manage other types of policies in application containers

Configuring and Using RMAN - Oracle Database: Backup and Recovery Workshop
Configure RMAN and the Database for Recoverability
Configureand Using an RMAN recovery catalog

Performing Recovery - Oracle Database: Backup and Recovery Workshop
Restore and Recovering Databases with RMAN
Perform Non RMAN database recovery

RMAN Troubleshooting and Tuning - Oracle Database: Backup and Recovery Workshop
Interpret the RMAN message output
Diagnose RMAN performance issues

Creating an Oracle Database by using DBCA - Oracle Database: Deploy, Patch and Upgrade Workshop
Create, Delete and Configure Databases using DBCA

Upgrade the Oracle Database - Oracle Database: Deploy, Patch and Upgrade Workshop
Plan for Upgrading an Oracle Database
Upgrade an Oracle Database
Perform Post-Upgrade tasks

Using General Overall Database Enhancements - Oracle Database 19c: New Features for Administrators
Install Oracle Database software
Create, Delete and Configure Databases using DBCA
Creating CDBs and Regular PDBs
Use Miscellaneaous 19c New Features

Using Diagnosibility Enhancements - Oracle Database 19c: New Features for Administrators
Use new Diagnoseability Features

Tuning SQL Statements - Oracle Database: Administration Workshop
Understanding The Oracle Optimizer
Using The SQL Tuning Advisor
Managing Optimizer Statistics
Using The SQL Access Advisor
Understanding The SQL Tuning Process

QUESTION 1
Which three are true about thresholds, metrics, and server-generated alerts? (Choose three.)

A. All metrics are instance related.
B. Cleared stateful alerts are displayed by querying DBA_ALERT_HISTORY.
C. A space usage management alert is automatically cleared after the underlying problem is resolved.
D. They are generated by SMON when a tablespace is 97% full.
E. Metrics are statistical counts for a specific unit.
F. STATISTICS_LEVEL must be set to ALL to generate alerts.

Correct Answer: C,E,F

QUESTION 2
While backing up to an SBT channel, you determine that the read phase of your compressed Recovery Manager (RMAN) incremental level 0 backup is a bottleneck.
FORCE LOGGING is enabled for the database.
Which two could improve read performance? (Choose two.)

A. Increase the size of tape I/O buffers.
B. Disable FORCE LOGGING for the database.
C. Increase the size of the database buffer cache.
D. Enable asynchronous disk I/O.
E. Increase the level of RMAN multiplexing.

Correct Answer: C,E

QUESTION 3
For which two requirements can you use the USER_TABLESPACE clause with the CREATE PLUGGABLE DATABASE command? (Choose two.)

A. to specify a default tablespace in a PDB cloned from another PDB in the same CDB.
B. to exclude all tablespaces except SYSTEM, SYSAUX, and TEMP when plugging in a PDB
C. to include specific user tablespaces only when relocating a PDB
D. to specify the list of user tablespaces to include when moving a non-CDB to a PDB
E. to exclude a temp tablespace when plugging in a PDB
F. to specify the list of tablespaces to include when creating a PDB from the CDB seed

Correct Answer: E,F


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Tuesday, April 14, 2020

300-410 Implementing Cisco Enterprise Advanced Routing and Services (ENARSI) Exam

Duration: 90 minutes
Available languages: English, Japanese

Exam overview
This exam tests your knowledge of implementation and troubleshooting for advanced routing technologies and services, including:

Layer 3
VPN services
Infrastructure security
Infrastructure services
Infrastructure automation

What you’ll learn in this course
The Implementing Cisco Enterprise Advanced Routing and Services (ENARSI) v1.0 gives you the knowledge you need to install, configure, operate, and troubleshoot an enterprise network. This course covers advanced routing and infrastructure technologies, expanding on the topics covered in the Implementing and Operating Cisco Enterprise Network Core Technologies (ENCOR) v1.0 course.

This course helps prepare you to take the exam, Implementing Cisco® Enterprise Advanced Routing and Services (300-410 ENARSI), which leads to the new CCNP® Enterprise and Cisco Certified Specialist – Enterprise Advanced Infrastructure Implementation certifications. The exam will be available beginning February 24, 2020.

Course duration
Instructor-led training: 5 days with hands-on lab practice
Virtual instructor-led training: 5 days of web-based classes with hands-on lab practice
E-learning: Equivalent of 5 days of instruction with hands-on lab practice

How you'll benefit

This course will help you:
Gain the knowledge you need to install, configure, operate, and troubleshoot an enterprise network
Qualify for professional-level job roles in advance routing and services
Prepare for the Implementing Cisco Enterprise Advanced Routing and Services (300-410 ENARSI) exam, which will be available beginning February 24, 2020

What to expect in the exam
This course will help you prepare for the Implementing Cisco Enterprise Advanced Routing and Services (300-410 ENARSI) exam. This exam tests your knowledge of implementation and troubleshooting for advanced routing technologies and services. The exam will be available beginning February 24, 2020.

After you pass 300-410 ENARSI:
You earn the Cisco Certified Specialist – Enterprise Advanced Infrastructure Implementation certification.
You satisfy the concentration requirement for the new CCNP Enterprise certification. To complete your CCNP Enterprise certification, pass the Enterprise core exam, Implementing Cisco Enterprise Network Core Technologies (350-401 ENCOR).

Who should enroll
Enterprise network engineers
System engineers
System administrators
Network administrators

Technology areas
Enterprise networking
Routing and switching

Course details
Objectives

After taking this course, you should be able to:
Configure classic Enhanced Interior Gateway Routing Protocol (EIGRP) and named EIGRP for IPv4 and IPv6
Optimize classic EIGRP and named EIGRP for IPv4 and IPv6
Troubleshoot classic EIGRP and named EIGRP for IPv4 and IPv6
Configure Open Shortest Path First (OSPF)v2 and OSPFv3 in IPv4 and IPv6 environments
Optimize OSPFv2 and OSPFv3 behavior
Troubleshoot OSPFv2 for IPv4 and OSPFv3 for IPv4 and IPv6
Implement route redistribution using filtering mechanisms
Troubleshoot redistribution
Implement path control using Policy-Based Routing (PBR) and IP service level agreement (SLA)
Configure Multiprotocol-Border Gateway Protocol (MP-BGP) in IPv4 and IPv6 environments
Optimize MP-BGP in IPv4 and IPv6 environments
Troubleshoot MP-BGP for IPv4 and IPv6
Describe the features of Multiprotocol Label Switching (MPLS)
Describe the major architectural components of an MPLS VPN
Identify the routing and packet forwarding functionalities for MPLS VPNs
Explain how packets are forwarded in an MPLS VPN environment
Implement Cisco Internetwork Operating System (IOS®) Dynamic Multipoint VPNs (DMVPNs)
Implement Dynamic Host Configuration Protocol (DHCP)
Describe the tools available to secure the IPV6 first hop
Troubleshoot Cisco router security features
Troubleshoot infrastructure security and services

Before taking this course, you should have:
General understanding of network fundamentals
Basic knowledge of how to implement LANs
General understanding of how to manage network devices
General understanding of how to secure network devices
Basic knowledge of network automation

These Cisco courses are recommended to help you meet these prerequisites:
Implementing and Operating Cisco Enterprise Network Core Technologies (ENCOR) v1.0
Interconnecting Cisco Networking Devices, Part 1 (ICND1) v3.0
Interconnecting Cisco Networking Devices, Part 2 (ICND2) v3.0

Outline
Implementing EIGRP
Optimizing EIGRP
Troubleshooting EIGRP
Implementing OSPF
Optimizing OSPF
Troubleshooting OSPF
Implementing Internal Border Gateway Protocol (IBGP)
Optimizing BGP
Implementing MP-BGP
Troubleshooting BGP
Configuring Redistribution
Troubleshooting Redistribution
Implementing Path Control
Exploring MPLS
Introducing MPLS L3 VPN Architecture
Introducing MPLS L3 VPN Routing
Configuring Virtual Routing and Forwarding (VRF)-Lite
Implementing DMVPN
Implementing DHCP
Troubleshooting DHCP
Introducing IPv6 First Hop Security
Securing Cisco Routers
Troubleshooting Infrastructure Security and Services

Lab Outline
Configure EIGRP Using Classic Mode and Named Mode for IPv4 and IPv6
Verify the EIGRP Topology Table
Configure EIGRP Stub Routing, Summarization, and Default Routing
Configure EIGRP Load Balancing and Authentication
LAB: Troubleshoot EIGRP Issues
Configure OSPFv3 for IPv4 and IPv6
Verify the Link-State Database
Configure OSPF Stub Areas and Summarization
Configure OSPF Authentication
Troubleshoot OSPF
Implement Routing Protocol Redistribution
Manipulate Redistribution
Manipulate Redistribution Using Route Maps
Troubleshoot Redistribution Issues
Implement PBR
Configure IBGP and External Border Gateway Protocol (EBGP)
Implement BGP Path Selection
Configure BGP Advanced Features
Configure BGP Route Reflectors
Configure MP-BGP for IPv4 and IPv6
Troubleshoot BGP Issues
Implement PBR
Configure Routing with VRF-Lite
Implement Cisco IOS DMVPN
Obtain IPv6 Addresses Dynamically
Troubleshoot DHCPv4 and DHCPv6 Issues
Troubleshoot IPv4 and IPv6 Access Control List (ACL) Issues
Configure and Verify Control Plane Policing
Configure and Verify Unicast Reverse Path Forwarding (uRPF)
Troubleshoot Network Management Protocol Issues: Lab 1
Troubleshoot Network Management Protocol Issues: Lab 2

QUESTION 1
Automatic 6-to-4 tunnels exist between dual-stack routers (A, B, and C). One router has the IPv6 address,
Which of the following addresses is the IPv4 address of the router with the IPv6 address

A. 10.176.15.131
B. 10.200.80.67
C. 208.48.107.192
D. 208.138.16.110

Correct Answer: C

Explanation:
The IPv4 address of the IPv6 router is 208.48.107.192. In an automatic 6-to-4 tunnel, IPv6 addresses have the
2002::/16 prefix. The 32-bit IPv4 address of the IPv6 router is then embedded into the IPv6 address. The 32
bits of the IPv4 address is embedded in the second and third quartet of the IPv6 address. The second and
third quarters in the IPv6 address correspond to D030:6BC0. The conversion of these hexadecimal digits into
decimal is given as follows:
The IPv6 router does not have 10.176.15.131 as its IPv4 address. The 10.176.15.131 address is the IPv4
equivalent of the second and third quarter (05B0:0F81) in the source IPv6 address.
The other two IPv4 addresses are incorrect as they pertain to neither of the two IPv6 hosts.
Objective:
Network Principles
Sub-Objective:
Recognize proposed changes to the network
References:
Cisco IOS IPv6 Implementation Guide > Implementing Tunneling for IPv6

QUESTION 2
You have recently joined a company as the network administrator. You have been asked to complete the
configuration on the border routers for an automatic 6-to-4 tunnel between several IPv6 network domains. The
commands that are currently configured on the routers are as follows:
ipv6 route tunnel
interface tunnel
ipv6 address
tunnel source
Which of the following additional commands is required to complete the configuration of automatic 6-to-4 tunnel on the border routers?

A. tunnel mode ipv6ip
B. tunnel mode ipv6ip 6to4
C. tunnel mode ipv6ip auto-tunnel
D. tunnel mode ipv6ip isatap

Correct Answer: B

QUESTION 4
An automatic IPv4-compatible IPv6 tunnel exists between two IPv6 networks. The two IPv6 networks belong to
different BGP autonomous systems (AS). The tunnel source has the IPv4 address 172.168.111.65/24 and the
tunnel destination has the IPv4 address 172.168.222.80/24.
Which of the following statements is TRUE about the tunnel source and tunnel destination IPv6 addresses?
(Choose two.)

A. the IPv6 address of the tunnel source is 172.168.111.65::
B. the IPv6 address of the tunnel source is ::172.168.111.65
C. the IPv6 address of the tunnel destination is 172.168.222.80::
D. the IPv6 address of the tunnel destination is ::172.168.222.80

Correct Answer: BD

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