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1Z0-1072 PDF DEMO:

QUESTION NO: 1
You need to transfer over 12 TB of data from on-premises to your cloud account. You started copying this data over the internet and noticed that it will take too long to complete.
Without increasing the costs of your subscription, what is the recommended way to send this amount of data to your cloud account?
A. Split the data into multiple parts and use the multipart tool.
B. Use a 10 GB FastConnect line to send the data.
C. Compress the data and use the multipart tool.
D. Use Data Transfer Service to send your data.
E. Send the data over a VPN IPsec tunnel.
Answer: D
Explanation
References:
Overview of Data Transfer ServiceOracle offers offline data transfer solutions that let you migrate data to Oracle Cloud Infrastructure. Moving data over the public internet is not always feasible due to high network costs, unreliable network connectivity, long transfer times, and security concerns. Our transfer solutions address these pain points, are easy to use, and provide significantly faster data upload compared to over-the-wire data
transfer.https://docs.cloud.oracle.com/iaas/Content/DataTransfer/Concepts/overview.htm

QUESTION NO: 2
Which two are NOT an image source when launching a new compute instance? (Choose two.)
A. custom image
B. Object Storage
C. boot volume
D. bare metal instance
Answer: B,D

QUESTION NO: 3
Which two features are offered natively on Oracle Cloud Infrastructure Database Cloud
Service (DBCS)?
(Choose two.)
A. Data Guard in Async mode within a region
B. backup to Object Storage
C. GoldenGate replication between two regions
D. Data Guard in Maximum Protection mode
Answer: A,B
Explanation
Data Guard in Maximum Performance protection mode is supported not simply Maximum Protection mode, however, you can configure additional protection modes and transport types by logging on to the DB system and accessing Data Guard command-line interface( DGMGRL).

QUESTION NO: 4
Your company has decided to move a few applications to Oracle Cloud Infrastructure and you have been asked to design it for Disaster Recovery (DR). One of the items of your design is to deploy the DR at least 300 miles from the home site and minimize the network latency as much as possible.
Based on that, what will be the recommended deployment?
A. Deploy applications in different regions and have them connected using VCN Remote Peering
B. Deploy applications in two separated VCNs in different Availability Domains and use VCN Remote
Peering
C. Deploy applications in two separated VCNs in different regions and use VCN Local Peering
D. Deploy applications on the same region splitting workloads across Availability Domains.
Answer: A

QUESTION NO: 5
You have an application deployed in Oracle Cloud Infrastructure running only in the Phoenix region. You were asked to create a disaster recovery (DR) plan that will protect against the loss of critical data. The DR site must be at least 500 miles from your primary site and data transfer between the two sites must not traverse the public Internet.
Which is the recommended disaster recovery plan?
A. Create a new virtual cloud network (VCN) in the Phoenix region and create a subnet in one availability domain (AD) that is not currently being used by your production systems. Establish VCN peering between the production and DR sites.
B. Create a DR environment in Ashburn. Associate a dynamic routing gateway (DRG) with the VCN in each region and configure an IPsec VPN connection between the two regions.
C. Create a DR environment in Ashburn and provision a FastConnect virtual circuit using DRG between the regions.
D. Create a DR environment in Ashburn. Associate a DRG with the VCN in each region and create a remote peering connection between the two VCNs.
Answer: D
Explanation
Remote VCN peering is the process of connecting two VCNs in different regions (but the same tenancy ). The peering allows the VCNs' resources to communicate using private IP addresses without routing the traffic over the internet or through your on-premises network. Without peering, a given
VCN would need an internet gateway and public IP addresses for the instances that need to communicate with another VCN in a different region.
At a high level, the Networking service components required for a remote peering include:
- Two VCNs with non-overlapping CIDRs, in different regions that support remote peering. The VCNs must be in the same tenancy.
- A dynamic routing gateway (DRG) attached to each VCN in the peering relationship. Your VCN already has a DRG if you're using an IPSec VPN or an Oracle Cloud Infrastructure FastConnect private virtual circuit.
A remote peering connection (RPC) on each DRG in the peering relationship.
A connection between those two RPCs.
Supporting route rules to enable traffic to flow over the connection, and only to and from select subnets in the respective VCNs (if desired).
Supporting security rules to control the types of traffic allowed to and from the instances in the subnets that need to communicate with the other VCN.

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Updated: May 28, 2022