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NEW QUESTION: 1
ニューヨークオフィスの接続要件を満たす必要があります。
あなたは何をするべきか?回答するには、回答エリアで適切なオプションを選択します。
注:各正しい選択には1ポイントの価値があります。
Answer:
Explanation:
Explanation
Box 1: Create a virtual network gateway and a local network gateway.
Azure VPN gateway. The VPN gateway service enables you to connect the VNet to the on-premises network through a VPN appliance. For more information, see Connect an on-premises network to a Microsoft Azure virtual network. The VPN gateway includes the following elements:
* Virtual network gateway. A resource that provides a virtual VPN appliance for the VNet. It is responsible for routing traffic from the on-premises network to the VNet.
* Local network gateway. An abstraction of the on-premises VPN appliance. Network traffic from the cloud application to the on-premises network is routed through this gateway.
* Connection. The connection has properties that specify the connection type (IPSec) and the key shared with the on-premises VPN appliance to encrypt traffic.
* Gateway subnet. The virtual network gateway is held in its own subnet, which is subject to various requirements, described in the Recommendations section below.
Box 2: Configure a site-to-site VPN connection
On premises create a site-to-site connection for the virtual network gateway and the local network gateway.
Scenario: Connect the New York office to VNet1 over the Internet by using an encrypted connection.
Topic 4, Case Study
Overview
Existing Environment
A . Datum Corporation is a financial company that has two main offices in New York and Los Angeles. A.
Datum has a subsidiary named Fabrikam, Inc that share, Los Angeles office.
A . Datum is conducting an initial deployment. of Azure services to host new line-of business applications and is preparing to migrate its existing on-premises workloads to Azure.
A Datum uses Microsoft Exchange Online (or email
On-Premises Environment
The on-premises workloads run on virtual machines hosted in a VMware vSphere 6 infrastructure.
All the virtual machines and members of an Active Directory forest named adatum.com and run Windows Server 2016.
The New York office uses an IP address space of 10.0.0.0/16 The Los Angeles office uses an IP address space of 10.10.0.0/16.
The offices connect by using a VPN provided by an ISP. Each office has one Azure ExpressRoute circuit that provides access to Azure services and Microsoft Online Services. Routing is implemented by using Microsoft peering.
The New York office has a virtual machine named VM1 that has the vSphere console installed.
Azure Environment
You provision the Azure infrastructure by using the Azure portal. The infrastructure contains the resources shown in the following table.
AG1 has two backend pools named Pool 11 and Pool12. AG2 has two backend pools named Pool21 and Pool22.
Requirements
Planned Changes
A . Datum plans to migrate the virtual machines from the New York office to the East US Azure rec-on by using Azure Site Recovery.
Infrastructure Requirements
A . Datum identifies the following infrastructure requirements:
* A new web app named App1 that will access third-parties for credit card processing must be deployed
* A newly developed API must be implemented as an Azure function named App2. App2 will use a blob storage trigger. App2 must process new blobs immediately.
* The Azure infrastructure and the on-premises infrastructure must be prepared for the migration of the VMware virtual machines to Azure.
* The sizes of the Azure virtual machines that will be used to migrate the on-premises workloads must be identified,
* All migrated and newly deployed Azure virtual machines must be joined to the adatum.com domain.
* AG1must load balance incoming traffic in the following manner
* http://corporate.adatum.com/video/* will be load balanced across Pool11.
* http://corporate.adatum.com/images/* will be load balanced across Pool 12.
* AG2 must load balance incoming traffic in the following manner.
* http://www.adatum.com will be load balanced across Pool21.
* http://www.fabnkam.com will be load balanced across Pool22.
* ERl must route traffic between the New York office and the platform as a service (PaaS) services in the East US Azure region, as long as ER1 is available.
* ER2 must route traffic between the Los Angeles office and the PaaS services in the West US region, as long as ER2 is available.
* ERl and ER2 must be configured to fail over automatically
Application Requirements
App2 must be able to connect directly to the private IP addresses of the Azure virtual machines. App2 will be deployed directly to an Azure virtual network.
Inbound and outbound communications to App1 must be controlled by using NSGs.
Pricing Requirements
A . Datum identities the following pricing requirements:
* The cost of App1 and App2 must be minimized.
* The transactional charges of Azure Storage accounts must be minimized.
NEW QUESTION: 2
A company is planning to use Amazon S3 lo store images uploaded by its users The images must be encrypted at rest in Amazon S3 The company does not want to spend time managing and rotating the keys, but it does want to control who can access those keys What should a solutions architect use to accomplish this?
A. Server-Side Encryption with keys stored in an S3 bucket
B. Server-Side Encryption with AWS KMS-Managed Keys (SSE-KMS)
C. Server-Side Encryption with Amazon S3-Managed Keys (SSE-S3)
D. Server-Side Encryption with Customer-Provided Keys (SSE-C)
Answer: B
Explanation:
Link: https://docs.aws.amazon.com/AmazonS3/latest/dev/serv-side-encryption.html
"Server-Side Encryption with Customer Master Keys (CMKs) Stored in AWS Key Management Service (SSE-KMS) is similar to SSE-S3, but with some additional benefits and charges for using this service. There are separate permissions for the use of a CMK that provides added protection against unauthorized access of your objects in Amazon S3. SSE-KMS also provides you with an audit trail that shows when your CMK was used and by whom." Server-Side Encryption: Using SSE-KMS You can protect data at rest in Amazon S3 by using three different modes of server-side encryption: SSE-S3, SSE-C, or SSE-KMS.
SSE-S3 requires that Amazon S3 manage the data and master encryption keys. For more information about SSE-S3, see Protecting Data Using Server-Side Encryption with Amazon S3-Managed Encryption Keys (SSE-S3).
SSE-C requires that you manage the encryption key. For more information about SSE-C, see Protecting Data Using Server-Side Encryption with Customer-Provided Encryption Keys (SSE-C).
SSE-KMS requires that AWS manage the data key but you manage the customer master key (CMK) in AWS KMS.
The remainder of this topic discusses how to protect data by using server-side encryption with AWS KMS-managed keys (SSE-KMS).
You can request encryption and select a CMK by using the Amazon S3 console or API. In the console, check the appropriate box to perform encryption and select your CMK from the list. For the Amazon S3 API, specify encryption and choose your CMK by setting the appropriate headers in a GET or PUT request.
https://docs.aws.amazon.com/kms/latest/developerguide/services-s3.html#sse
NEW QUESTION: 3
Who is responsible for ensuring that information is classified?
A. Data owner
B. Security manager
C. Custodian
D. Senior management
Answer: A
Explanation:
The data owner is responsible for applying the proper classification to the data. Senior management is ultimately responsible for the organization. The security officer is responsible for applying security protection relative to the level of classification specified by the owner. The technology group is delegated the custody of the data by the data owner, but the group does not classify the information.