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2020 SAP-C01 Exam Sure, Amazon Web Services SAP-C01 DumpsSure

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AWS SAP-C01 Exam Summary:

Exam Name
AWS Solutions Architect Professional (AWS-SAP)
Exam Code
SAP-C01
Duration
170 minutes
Passing Score
75%
Recommended Training / Books
Advanced Architecting on AWS
Schedule Exam
PEARSON VUE
Sample Questions
AWS SAP-C01 Sample Questions
Recommended Practice
AWS Certified Solutions Architect - Professional Practice Test

AWS Certified Solutions Architect Professional
DEMO Questions:


Question #:1
A company is using an Amazon CloudFront distribution to distribute both static and dynamic content from a web application running behind an Application Load Balancer. The web application requires user authorization and session tracking for dynamic content. The CloudFront distribution has a single cache behavior configured to forward the Authorization, Host, and User-Agent HTTP whitelist headers and a session cookie to the origin. All other cache behavior settings are set to their default value.
A valid ACM certificate is applied to the CloudFront distribution with a matching CNAME in the distribution settings. The ACM certificate is also applied to the HTTPS listener for the Application Load Balancer. The CloudFront origin protocol policy is set to HTTPS only. Analysis of the cache statistics report shows that the miss rate for this distribution is very high.
What can the Solutions Architect do to improve the cache hit rate for this distribution without causing the SSL/TLS handshake between CloudFront and the Application Load Balancer to fail?

A: Create two cache behaviors for static and dynamic content. Remove the User-Agent and Host HTTP headers from the whitelist headers section on both if the cache behaviors. Remove the session cookie from the whitelist cookies section and the Authorization HTTP header from the whitelist headers section for cache behavior configured for static content.
B: Remove the User-Agent and Authorization HTTP headers from the whitelist headers section of the cache behavior. Then update the cache behavior to use presigned cookies for authorization.
C: Remove the Host HTTP header from the whitelist headers section and remove the session cookie from the whitelist cookies section for the default cache behavior. Enable automatic object compression and use Lambda@Edge viewer request events for user authorization.
D: Create two cache behaviors for static and dynamic content. Remove the User-Agent HTTP header from the whitelist headers section on both of the cache behaviors. Remove the session cookie from the whitelist cookies section and the Authorization HTTP header from the whitelist headers section for cache behavior configured for static content.

Answer: D

Question #:2
A company is implementing a multi-account strategy; however, the Management team has expressed concerns that services like DNS may become overly complex. The company needs a solution that allows private DNS to be shared among virtual private clouds (VPCs) in different accounts. The company will have approximately 50 accounts in total.
What solution would create the LEAST complex DNS architecture and ensure that each VPC can resolve all AWS resources?

A: Create a shared services VPC in a central account, and create a VPC peering connection from the shared services VPC to each of the VPCs in the other accounts. Within Amazon Route 53, create a privately hosted zone in the shared services VPC and resource record sets for the domain and subdomains.
Programmatically associate other VPCs with the hosted zone.
B: Create a VPC peering connection among the VPCs in all accounts. Set the VPC attributes enableDnsHostnames and enableDnsSupport to “true” for each VPC. Create an Amazon Route 53 private zone for each VPC. Create resource record sets for the domain and subdomains.
Programmatically associate the hosted zones in each VPC with the other VPCs.
C: Create a shared services VPC in a central account. Create a VPC peering connection from the VPCs in other accounts to the shared services VPC. Create an Amazon Route 53 privately hosted zone in the shared services VPC with resource record sets for the domain and subdomains. Allow UDP and TCP port 53 over the VPC peering connections.
D: Set the VPC attributes enableDnsHostnames and enableDnsSupport to “false” in every VPC. Create an AWS Direct Connect connection with a private virtual interface. Allow UDP and TCP port 53 over the virtual interface. Use the on-premises DNS servers to resolve the IP addresses in each VPC on AWS.

Answer: A

Question #:3
A company runs an application on a fleet of Amazon EC2 instances The application requires low latency and random access to 100 GB of data The application must be able to access the data at up to 3.000 IOPS A Development team has configured the EC2 launch template to provision a 100-GB Provisioned IOPS (PIOPS) Amazon EBS volume with 3 000 IOPS provisioned A Solutions Architect is tasked with lowering costs without impacting performance and durability Which action should be taken?

A: Create an Amazon EFS file system with the performance mode set to Max I/O Configure the EC2 operating system to mount the EFS file system
B: Create an Amazon EFS file system with the throughput mode set to Provisioned Configure the EC2 operating system to mount the EFS file system
C: Update the EC2 launch template to allocate a new 1-TB EBS General Purpose SSO (gp2) volume
D: pdate the EC2 launch template to exclude the PIOPS volume Configure the application to use local instance storage

Answer: A

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