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NEW QUESTION: 1
Which of the following would MOST likely involve GPS?
A. Protocol analyzer
B. WPS attack
C. Replay attack
D. Wardriving
Answer: D
Explanation:
Section: Threats and Vulnerabilities
Explanation/Reference:
Explanation:
War driving, also called access point mapping, is the act of locating and possibly exploiting connections to
wireless local area networks while driving around a city or elsewhere. To do war driving, you need a
vehicle, a computer (which can be a laptop), a wireless Ethernet card set to work in promiscuous mode,
and some kind of antenna which can be mounted on top of or positioned inside the car. A GPS (Global
Positioning System) system can be used to accurately map your location while detecting the wireless
networks.
NEW QUESTION: 2
A company is building a media-sharing application and decides to use Amazon S3 for storage. When a media file is uploaded the company starts a multi-step process to create thumbnails, identify objects in the images, transcode videos into standard formats and resolutions and extract and store the metadata to an Amazon DynamoDB table. The metadata is used for searching and navigation.
The amount of traffic is variable The solution must be able to scale to handle spikes in load without unnecessary expenses.
What should a solutions architect recommend to support this workload?
A. Build the processing into the website or mobile app used to upload the content to Amazon S3 Save the required data to the DynamoDB table when the objects are uploaded
B. Trigger an AWS Lambda function to store an initial entry in the DynamoDB table when an object is uploaded to Amazon S3. Use a program running on an Amazon EC2 instance in an Auto Scaling group to poll the index for unprocess use the program to perform the processing
C. Trigger AWS Step Functions when an object is stored in the S3 bucket Have the Step Functions perform the steps needed to process the object and then write the metadata to the DynamoDB table
D. Trigger an AWS Lambda function when an object is stored in the S3 bucket Have the Lambda function start AWS Batch to perform the steps to process the object Place the object data in the DynamoDB table when complete
Answer: B
NEW QUESTION: 3
A. Option A
B. Option C
C. Option D
D. Option B
Answer: C
NEW QUESTION: 4
SIMULATION
You need to configure network connectivity between a virtual network named VNET1 and a virtual network named VNET2. The solution must ensure that virtual machines connected to VNET1 can communicate with virtual machines connected to VNET2.
To complete this task, sign in to the Azure portal and modify the Azure resources.
A. You need to configure VNet Peering between the two networks. The questions states, "The solution must ensure that virtual machines connected to VNET1 can communicate with virtual machines connected to VNET2". It doesn't say the VMs on VNET2 should be able to communicate with VMs on VNET1. Therefore, we need to configure the peering to allow just the one-way communication.
1. In the Azure portal, type Virtual Networks in the search box, select Virtual Networks from the search results then select VNET1. Alternatively, browse to Virtual Networks in the left navigation pane.
2. In the properties of VNET1, click on Peerings.
3. In the Peerings blade, click Add to add a new peering.
4. In the Name of the peering from VNET1 to remote virtual network box, enter a name such as VNET1-VNET2 (this is the name that the peering will be displayed as in VNET1)
5. In the Virtual Network box, select VNET2.
6. In the Name of the peering from remote virtual network to VNET1 box, enter a name such as VNET2-VNET1 (this is the name that the peering will be displayed as in VNET2).
There is an option Allow virtual network access from VNET to remote virtual network. This should be left as Enabled.
7. For the option Allow virtual network access from remote network to VNET1, click the slider button to Disabled.
8. Click the OK button to save the changes.
B. You need to configure VNet Peering between the two networks. The questions states, "The solution must ensure that virtual machines connected to VNET1 can communicate with virtual machines connected to VNET2". It doesn't say the VMs on VNET2 should be able to communicate with VMs on VNET1. Therefore, we need to configure the peering to allow just the one-way communication.
1. In the Azure portal, type Virtual Networks in the search box, select Virtual Networks from the search results then select VNET1. Alternatively, browse to Virtual Networks in the left navigation pane.
2. In the properties of VNET1, click on Peerings.
3. In the Peerings blade, click Add to add a new peering.
4. In the Name of the peering from remote virtual network to VNET1 box, enter a name such as VNET2-VNET1 (this is the name that the peering will be displayed as in VNET2).
There is an option Allow virtual network access from VNET to remote virtual network. This should be left as Enabled.
5. For the option Allow virtual network access from remote network to VNET1, click the slider button to Disabled.
6. Click the OK button to save the changes.
Answer: A
Explanation:
Reference:
https://docs.microsoft.com/en-us/azure/virtual-network/virtual-network-manage-peering