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NEW QUESTION: 1
회사는 온 프레미스 데이터 센터에서 AWS로 마케팅 웹 사이트 및 콘텐츠 관리 시스템을 마이그레이션하고 있습니다. 이 회사는 웹 서버에 사용되는 Amazon EC2 인스턴스와 데이터베이스에 대한 Amazon RDS 인스턴스가있는 VPC에서 AWS 애플리케이션을 개발하기를 원합니다.
회사에는 온-프레미스 시스템의 설치 프로세스를 설명하는 Runbook 문서가 있습니다. 이 회사는 Runbook 문서에서 참조 된 프로세스를 기반으로 AWS 시스템을 구축하려고합니다. Runbook 문서는 서버의 운영 체제, 네트워크 설정, 웹 사이트 및 콘텐츠 관리 시스템 소프트웨어의 설치 및 구성에 대해 설명합니다. 마이그레이션이 완료된 후 회사는 다른 AWS 기능을 활용하기 위해 빠르게 변경할 수 있기를 원합니다.
향후 변경을 허용하면서 AWS에서 애플리케이션과 환경을 어떻게 배포하고 자동화 할 수 있습니까?
A. AWS 콘솔을 사용하여 애플리케이션의 VPC, EC2 인스턴스 및 RDS 인스턴스를 생성하는 방법을 설명하도록 Runbook을 업데이트하십시오. Runbook의 나머지 단계가 AWS 마이그레이션에서 발생할 수있는 변경 사항을 반영하도록 업데이트되었는지 확인하십시오.
B. 애플리케이션의 VPC, EC2 인스턴스 및 RDS 인스턴스를 생성하는 AWS CloudFormation 템플릿을 작성하십시오. 소프트웨어를 설치 및 구성하려면 AWS CloudFormation 템플릿에 EC2 사용자 데이터를 포함하십시오.
C. AWS API를 사용하여 애플리케이션의 VPC, EC2 인스턴스 및 RDS 인스턴스를 생성하는 Python 스크립트를 작성하십시오. Runbook의 나머지 단계를 구현하는 셸 스크립트를 작성하십시오. Python 스크립트가 새로 작성된 인스턴스에서 쉘 스크립트를 복사하고 실행하여 설치를 완료하도록하십시오.
D. 애플리케이션의 VPC, EC2 인스턴스 및 RDS 인스턴스를 생성하는 AWS CloudFormation 템플릿을 작성하십시오. Runbook의 나머지 단계가 AWS 마이그레이션에서 발생할 수있는 변경 사항을 반영하도록 업데이트되었는지 확인하십시오.
Answer: A
NEW QUESTION: 2
You Execute the Following command to create a password file in the database server:
$ orapwd file = '+DATA/PROD/orapwprod entries = 5 ignorecase = N format = 12'
Which two statements are true about the password file?
A. It supports the SYSBACKUP, SYSDG, and SYSKM system privileges.
B. It records the usernames and passwords of all users when they are added to the OSDBA or OSOPER operating system groups.
C. Is used by Oracle to authenticate users for remote database administration.
D. It contains the usernames and passwords of users for whom auditing is enabled.
E. It records the usernames and passwords of users when granted the DBA role.
Answer: B,C
Explanation:
C: Creating a password file via orapwd enables remote users to connect with
administrative privileges through SQL*Net.
D, not A, Not B: When SYSDBA or SYSOPER privileges are granted to a user, that user's name
and privilege information are added to the password file.
Incorrect:
Not E: The Oracle orapwd command line utility assists the DBA with granting SYSDBA and
SYSOPER privileges to other users.
Note:
*You can create a password file using the password file creation utility, ORAPWD. For some
operating systems, you can create this file as part of your standard installation.
*ORAPWD FILE=filename [ENTRIES=numusers] [FORCE={Y|N}] [IGNORECASE={Y|N}] [NOSYSDBA={Y|N}]
FILEName to assign to the password file. See your operating system documentation for name
requirements. You must supply a complete path. If you supply only a file name, the file is written to
the current directory.
ENTRIES(Optional) Maximum number of entries (user accounts) to permit in the file.
FORCE(Optional) If y, permits overwriting an existing password file.
IGNORECASE(Optional) If y, passwords are treated as case-insensitive.
NOSYSDBA(Optional) For Data Vault installations. See the Data Vault installation guide for your
platform for more information.
NEW QUESTION: 3
Refer to the exhibit.
What two results would occur if the hub were to be replaced with a switch that is configured with one Ethernet VLAN? (Choose two.)
A. The number of broadcast domains would decrease.
B. The number of collision domains would increase.
C. The number of collision domains would remain the same.
D. The number of broadcast domains would increase.
E. The number of collision domains would decrease.
F. The number of broadcast domains would remain the same.
Answer: B,F
Explanation:
Basically, a collision domain is a network segment that allows normal network traffic to flow back and forth. In the old days of hubs, this meant you had a lot of collisions, and the old CSMA/CD would be working overtime to try to get those packets re-sent every time there was a collision on the wire (since Ethernet allows only one host to be transmitting at once without there being a traffic jam). With switches, you break up collision domains by switching packets bound for other collision domains. These days, since we mostly use switches to connect computers to the network, you generally have one collision domain to a PC.
Broadcast domains are exactly what they imply: they are network segments that allow broadcasts to be sent across them. Since switches and bridges allow for broadcast traffic to go unswitched, broadcasts can traverse collision domains freely. Routers, however, don't allow broadcasts through by default, so when a broadcast hits a router (or the perimeter of a VLAN), it doesn't get forwarded. The simple way to look at it is this way:
switches break up collision domains, while routers (and VLANs) break up collision domains and broadcast domains. Also, a broadcast domain can contain multiple collision domains, but a collision domain can never have more than one broadcast domain associated with it.
Collision Domain: A group of Ethernet or Fast Ethernet devices in a CSMA/CD LAN that are connected by repeaters and compete for access on the network. Only one device in the collision domain may transmit at any one time, and the other devices in the domain listen to the network in order to avoid data collisions. A collision domain is sometimes referred to as an Ethernet segment.
Broadcast Domain: Broadcasting sends a message to everyone on the local network (subnet). An example for Broadcasting would be DHCP Request from a Client PC. The Client is asking for a IP Address, but the client does not know how to reach the DHCP Server. So the client sends a DHCP Discover packet to EVERY PC in the local subnet (Broadcast). But only the DHCP Server will answer to the Request.
How to count them?
Broadcast Domain:
No matter how many hosts or devices are connected together, if they are connected with a repeater, hub, switch or bridge, all these devices are in ONE Broadcast domain (assuming a single VLAN). A Router is used to separate Broadcast-Domains (we could also call them Subnets - or call them VLANs).
So, if a router stands between all these devices, we have TWO broadcast domains.
Collision Domain:
Each connection from a single PC to a Layer 2 switch is ONE Collision domain. For example, if 5 PCs are connected with separate cables to a switch, we have 5 Collision domains. If this switch is connected to another switch or a router, we have one collision domain more.
If 5 Devices are connected to a Hub, this is ONE Collision Domain. Each device that is connected to a Layer 1 device (repeater, hub) will reside in ONE single collision domain.
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