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NEW QUESTION: 1
고객은 웹 사이트에 대해 매일 약 1,000 건의 요청을 수신하고 평균 응답 시간이 50ms 인 간단한 API를 소유합니다. 현재 하나의 c4.large 인스턴스에서 호스팅됩니다.
가장 저렴한 비용으로 아키텍처를 변경하면 고 가용성이 제공됩니까?
A. 최소 하나의 인스턴스와 최대 두 개의 인스턴스가 있는 Auto Scaling 그룹을 생성한 다음 Application Load Balancer를 사용하여 트래픽의 균형을 조정하십시오.
B. Amazon API Gateway를 사용하여 API를 다시 생성하고 새 API를 기존 백엔드 서비스와 통합하십시오.
C. 최대 2 개의 인스턴스가있는 Auto Scaling 그룹을 생성 한 다음 Application Load Balancer를 사용하여 트래픽의 균형을 조정하십시오.
D. Amazon API Gateway를 사용하여 API를 다시 생성하고 AWS Lambda를 서비스 백엔드로 사용하십시오.
Answer: D
Explanation:
Explanation
Amazon API Gateway is a fully managed service that makes it easy for developers to create, publish, maintain, monitor, and secure APIs at any scale. With a few clicks in the AWS Management Console, you can create REST and WebSocket APIs that act as a "front door" for applications to access data, business logic, or functionality from your backend services, such as workloads running on Amazon Elastic Compute Cloud (Amazon EC2), code running on AWS Lambda, any web application, or real-time communication applications. API Gateway handles all the tasks involved in accepting and processing up to hundreds of thousands of concurrent API calls, including traffic management, authorization and access control, monitoring, and API version management. API Gateway has no minimum fees or startup costs. You pay only for the API calls you receive and the amount of data transferred out and, with the API Gateway tiered pricing model, you can reduce your cost as your API usage scale
NEW QUESTION: 2
A. <iframe seamless="allowscripts" src="frame1.html"></iframe>
B. <iframe sandbox src="frame1.html"></iframe>
C. <iframe seamless src="frame1.html"></iframe>
D. <iframe sandbox="allowscripts" src"frame1.html"></iframe>
Answer: B
Explanation:
Explanation
The sandbox attribute enables an extra set of restrictions for the content in the iframe.
Syntax
<iframe sandbox="value">
Attribute Values
no value: Applies all restrictions
etc.
No attribute value: allowscripts (not D)
Reference: HTML <iframe> sandbox Attribute
NEW QUESTION: 3
You have an on-premises network that you plan to connect to Azure by using a site-to-site VPN.
In Azure, you have an Azure virtual network named VNet1 that uses an address space of 10.0.0.0/16. VNet1 contains a subnet named Subnet1 that uses an address space of 10.0.0.0/24.
You need to create a site-to-site VPN to Azure.
Which four actions should you perform in sequence? To answer, move the appropriate actions from the list of actions to the answer area and arrange them in the correct order.
NOTE: More than one order of answer choices is correct. You will receive credit for any of the correct orders you select.
Answer:
Explanation:
Explanation:
A Site-to-Site VPN gateway connection is used to connect your on-premises network to an Azure virtual network over an IPsec/IKE (IKEv1 or IKEv2) VPN tunnel. This type of connection requires a VPN device located on-premises that has an externally facing public IP address assigned to it. For more information about VPN gateways, see About VPN gateway.
1. Create a virtual network
You can create a VNet with the Resource Manager deployment model and the Azure portal
2. Create the gateway subnet :
The virtual network gateway uses specific subnet called the gateway subnet. The gateway subnet is part of the virtual network IP address range that you specify when configuring your virtual network. It contains the IP addresses that the virtual network gateway resources and services use.
3. Create the VPN gateway :
You create the virtual network gateway for your VNet. Creating a gateway can often take 45 minutes or more, depending on the selected gateway SKU.
4. Create the local network gateway:
The local network gateway typically refers to your on-premises location. You give the site a name by which Azure can refer to it, then specify the IP address of the on-premises VPN device to which you will create a connection. You also specify the IP address prefixes that will be routed through the VPN gateway to the VPN device. The address prefixes you specify are the prefixes located on your on-premises network. If your on-premises network changes or you need to change the public IP address for the VPN device, you can easily update the values later.
5. Configure your VPN device:
Site-to-Site connections to an on-premises network require a VPN device. In this step, you configure your VPN device. When configuring your VPN device, you need the following:
A shared key. This is the same shared key that you specify when creating your Site-to-Site VPN connection. In our examples, we use a basic shared key. We recommend that you generate a more complex key to use.
The Public IP address of your virtual network gateway. You can view the public IP address by using the Azure portal, PowerShell, or CLI. To find the Public IP address of your VPN gateway using the Azure portal, navigate to Virtual network gateways, then click the name of your gateway.
6. Create the VPN connection:
Create the Site-to-Site VPN connection between your virtual network gateway and your on-premises VPN device.
Reference:
https://docs.microsoft.com/en-us/azure/vpn-gateway/vpn-gateway-howto-site-to-site-resource-manager-portal
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