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VMware vSphere 8.x Advanced Design

  • Exam Number/Code : 3V0-21.23
  • Exam Name : VMware vSphere 8.x Advanced Design
  • Questions and Answers : 213 Q&As
  • Update Time: 2019-01-10
  • Price: $ 99.00 $ 39.00

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NEW QUESTION: 1
You need to design the system for notifying law enforcement officers about speeding vehicles.
How should you design the pipeline? To answer, drag the appropriate services to the correct locations. Each service may be used once, more than once, or not at all. You may need to drag the split bar between panes or scroll to view content.
NOTE: Each correct selection is worth one point.

Answer:
Explanation:


NEW QUESTION: 2
HOTSPOT
Your company has several Windows RT 8.1 devices. The devices connect to Exchange Online in Microsoft Office 365 and to Windows Intune for device management.
The security policies of Office 365 and Windows Intune are configured as shown in the following table.

You need to identify the effective settings on the Windows RT devices.
What should you identify? (To answer, select the appropriate effective configuration for each setting in the answer area.)

Answer:
Explanation:


NEW QUESTION: 3
If RCF does not maintain a safety stock, the estimated total carrying costs for the computer chairs for the coming year based on their current schedule is:
A. US$6,250
B. US$12,500
C. US$5,000
D. US$4,000
Answer: A
Explanation:
Given four production runs and an annual demand of 5.000 units, each production run must generate 1,250 units. Inventory will total 1.250 units at the completion of each run but will decline to zero just prior to the next run. Thus, the average inventory is 625 units (1.250 + 2), and the total carrying cost is US $6,250 (625 units x $10).

NEW QUESTION: 4
POODLE攻撃は、MITMの不正利用であり、次のことに影響を及ぼします。
A. ECBモード暗号付きSSLv3.0
B. CBCモード暗号によるSSLv3.0
C. CBCモード暗号を使用したSSLv2.0
D. CBCモード暗号付きTLS1.0
Answer: B
Explanation:
A flaw was found in the way SSL 3.0 handled padding bytes when decrypting messages encrypted using block ciphers in cipher block chaining (CBC) mode.
How To Protect your Server Against the POODLE SSLv3 Vulnerability On October 14th, 2014, a vulnerability in version 3 of the SSL encryption protocol was disclosed. This vulnerability, dubbed POODLE (Padding Oracle On Downgraded Legacy Encryption), allows an attacker to read information encrypted with this version of the protocol in plain text using a man-in-the-middle attack.
Although SSLv3 is an older version of the protocol which is mainly obsolete, many pieces of software still fall back on SSLv3 if better encryption options are not available. More importantly, it is possible for an attacker to force SSLv3 connections if it is an available alternative for both participants attempting a connection.
The POODLE vulnerability affects any services or clients that make it possible to communicate using SSLv3.
Because this is a flaw with the protocol design, and not an implementation issue, every piece of software that uses SSLv3 is vulnerable.
To find out more information about the vulnerability, consult the CVE information found at CVE-2014-3566.
What is the POODLE Vulnerability?
The POODLE vulnerability is a weakness in version 3 of the SSL protocol that allows an attacker in a man-inthe-middle context to decipher the plain text content of an SSLv3 encrypted message.
Who is Affected by this Vulnerability?
This vulnerability affects every piece of software that can be coerced into communicating with SSLv3. This means that any software that implements a fallback mechanism that includes SSLv3 support is vulnerable and can be exploited.
Some common pieces of software that may be affected are web browsers, web servers, VPN servers, mail servers, etc.
How Does It Work?
In short, the POODLE vulnerability exists because the SSLv3 protocol does not adequately check the padding bytes that are sent with encrypted messages.
Since these cannot be verified by the receiving party, an attacker can replace these and pass them on to the intended destination. When done in a specific way, the modified payload will potentially be accepted by the recipient without complaint.
An average of once out of every 256 requests will accepted at the destination, allowing the attacker to decrypt a single byte. This can be repeated easily in order to progressively decrypt additional bytes. Any attacker able to repeatedly force a participant to resend data using this protocol can break the encryption in a very short amount of time.
How Can I Protect Myself?
Actions should be taken to ensure that you are not vulnerable in your roles as both a client and a server. Since encryption is usually negotiated between clients and servers, it is an issue that involves both parties.
Servers and clients should should take steps to disable SSLv3 support completely. Many applications use better encryption by default, but implement SSLv3 support as a fallback option.
This should be disabled, as a malicious user can force SSLv3 communication if both participants allow it as an acceptable method.