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NEW QUESTION: 1
An ArcGIS user has two feature classes. One is spatially inaccurate but contains accurate tabular data, the other is spatially accurate but contains inaccurate tabular data. The ArcGIS user needs a single feature class that is spatially and tabularly accurate
Which tool should the ArcGIS user employ to accomplish this?
A. Attribute Transfer
B. Load Data
C. Copy Features
D. Join Field
Answer: D

NEW QUESTION: 2
サードパーティの認証システムを使用してユーザーがログオンできるようにするASP.NET MVCアプリケーションを開発しています。
Microsoft Azure Access Control Servicesとアプリケーションを構成する必要があります。
どの5つのアクションを順番に実行する必要がありますか? (答えるには、適切なアクションをアクションのリストから回答エリアに移動し、正しい順序に並べます。)

Answer:
Explanation:

1 - Create a servcie namespace.
2 - Register the application as the relying party.
3 - Add a Security Token Service (STS) reference in Visual Studio 2012.
4 - Add the third-party as the identity provider.
5 - Generate provider rules for claims.
Explanation:
Box 1: Create a service namespace
The first step is to create an ACS Namespace. This is your Security Token Services (STS) that will generate Signed Identity tokens to be consumed by WAP. This will also be the only STS that WAP will trust.
Box 2: Register the application as a relaying partner.
Now that the Namespace is created, you will have to tell it about the WAP Portals that is expecting tokens from it. We add the WAP Tenant Portal as a Relying Party to ACS (Access Control Services).
Box 3: Add a Security Token Service (STS) reference in Visual Studio 2012.
Now that the Namespace is created, you will have to tell it about the WAP Portals that is expecting tokens from it.
1. Click on Relying Party Applications and click on Add to add the Windows Azure Pack tenant Portal as a Relying Party to this namespace. This essentially tells the ACS namespace that the Tenant Portal is expecting it to provide user identities.
2. You will now go to the Add Relying Party Application page where you can enter details about the WAP tenant Portal.
3. The easier option is to provide the federation Metadata from the tenant portal. Save the XML file locally on your computer
4. Now back in the ACS management portal, Upload the federation metadata file and provide a Display Name for the Relying Party.
5. Scroll Down to the Token Format section and choose the token format to be 'JWT'. By Default, the Windows Live Identity Provider will be selected. Deselect it if you do not want to allow users to sign in using their Live id. Under the Token Signing Settings section, select X.509 Certificate as the Type. Click on Save.
Box 4: Add the third-party as the identity provider.
We have our ACS and WAP portals setup. We now have to find a source of Identities that can be flown in to the WAP Portals through ACS. We configure external services to act as Identity Providers
Box 5: Generate provider rules for claims
We now have our Relying Party and our Identity Providers set up. We should now tell ACS how to transform the incoming Claims from these Identity providers so that the Relying Party can understand it. We do that using Rule Groups which are a set of rules that govern Claim Transformation. Since, we have two identity Providers, we will have to create a rule for each of these.
References: https://blogs.technet.microsoft.com/privatecloud/2014/01/17/setting-up-windows-azure-active-directory-acs-to-provide-identities-to-windows-azure-pack/

NEW QUESTION: 3
Which two options are two of the built-in features of IPv6? (Choose two.)
A. controlled broadcasts
B. native IPsec
C. NAT
D. VLSM
E. mobile IP
Answer: B,E
Explanation:
http://www.cisco.com/en/US/docs/ios/ipv6/configuration/guide/ip6-tunnel.html
IPv6 IPsec Site-to-Site Protection Using Virtual Tunnel Interface The IPv6 IPsec feature provides IPv6 crypto site-to-site protection of all types of IPv6 unicast and multicast traffic using native IPsec IPv6 encapsulation. The IPsec virtual tunnel interface (VTI) feature provides this function, using IKE as the management protocol. An IPsec VTI supports native IPsec tunneling and includes most of the properties of a physical interface. The IPsec VTI alleviates the need to apply crypto maps to multiple interfaces and provides a routable interface.
The IPsec VTI allows IPv6 routers to work as security gateways, establish IPsec tunnels between other security gateway routers, and provide crypto IPsec protection for traffic from internal network when being transmitting across the public IPv6 Internet. http://www.cisco.com/en/US/docs/ios/ipv6/configuration/guide/ip6-mobile.html
Mobile IPv6 Overview Mobile IPv4 provides an IPv4 node with the ability to retain the same IPv4 address and maintain uninterrupted network and application connectivity while traveling across networks. In Mobile IPv6, the IPv6 address space enables Mobile IP deployment in any kind of large environment. No foreign agent is needed to use Mobile IPv6.
System infrastructures do not need an upgrade to accept Mobile IPv6 nodes. IPv6 autoconfiguration simplifies mobile node (MN) Care of Address (CoA) assignment. Mobile IPv6 benefits from the IPv6 protocol itself; for example, Mobile IPv6 uses IPv6 option headers (routing, destination, and mobility) and benefits from the use of neighbor discovery. Mobile IPv6 provides optimized routing, which helps avoid triangular routing. Mobile IPv6 nodes work transparently even with nodes that do not support mobility (although these nodes do not have route optimization). Mobile IPv6 is fully backward-compatible with existing IPv6 specifications. Therefore, any existing host that does not understand the new mobile messages will send an error message, and communications with the mobile node will be able to continue, albeit without the direct routing optimization.