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NEW QUESTION: 1
Which of the following packets should NOT be dropped at a firewall protecting an organization's internal network?
A. Router information exchange protocols
B. Outbound packets with an external destination IP address
C. Inbound packets with Source Routing option set
D. Inbound packets with an internal address as the source IP address
Answer: B
Explanation:
Explanation/Reference:
Normal outbound traffic has an internal source IP address and an external destination IP address.
Traffic with an internal source IP address should only come from an internal interface. Such packets coming from an external interface should be dropped.
Packets with the source-routing option enabled usually indicates a network intrusion attempt.
Router information exchange protocols like RIP and OSPF should be dropped to avoid having internal routing equipment being reconfigured by external agents.
Source: STREBE, Matthew and PERKINS, Charles, Firewalls 24seven, Sybex 2000, Chapter 10: The Perfect Firewall.

NEW QUESTION: 2
Which two tasks should you perform to configure a pluggable database (POB) as a source for a Synchronize
Data task?
A. Associate the pluggable (POB) connection to a container database connection.
B. Create a container database connection before creating the PDB connection.
C. Configure the POB connection to use the system user.
D. Connect to a cloud database only.
Answer: A,B

NEW QUESTION: 3
Sie entwickeln eine App, mit der Benutzer für ein Videospiel verwaltet werden. Sie möchten die Region, die E-Mail-Adresse und die Telefonnummer des Players speichern. Einige Spieler haben möglicherweise keine Telefonnummer. Die Region des Spielers wird verwendet, um Daten auszugleichen.
Daten für die App müssen im Azure-Tabellenspeicher gespeichert werden.
Sie müssen Code entwickeln, um Daten für einen einzelnen Spieler abzurufen.
Wie solltest du den Code vervollständigen? Wählen Sie zum Beantworten die entsprechenden Optionen im Antwortbereich aus.
HINWEIS: Jede richtige Auswahl ist einen Punkt wert.


Answer:
Explanation:

Explanation:
Kasten 1: Region
Die Region des Spielers wird verwendet, um Daten auszugleichen.
PartitionKey auswählen.
Der Kern des Tabellenentwurfs basiert auf seiner Skalierbarkeit, den für den Zugriff verwendeten Abfragen und den Speicheranforderungen. Die von Ihnen ausgewählten PartitionKey-Werte bestimmen, wie eine Tabelle partitioniert wird und welche Art von Abfragen verwendet werden können. Speicheroperationen, insbesondere Einfügungen, können sich auch auf die Auswahl der PartitionKey-Werte auswirken.
Kasten 2: E-Mail
Keine Telefonnummer Einige Spieler haben möglicherweise keine Telefonnummer.
Kasten 3: CloudTable
Box 4: TableOperation-Abfrage = ..
Kasten 5: TableResult
Verweise:
https://docs.microsoft.com/en-us/rest/api/storageservices/designing-a-scalable-partitioning-strategy-for-azure-table-storage

NEW QUESTION: 4
A DevOps Engineer is working with an application deployed to 12 Amazon EC2 instances across 3 Availability Zones. New instances can be started from an AMI image. On a typical day, each EC2 instance has
30% utilization during business hours and 10% utilization after business hours. The CPU utilization has an immediate spike in the first few minutes of business hours. Other increases in CPU utilization rise gradually.
The Engineer has been asked to reduce costs while retaining the same or higher reliability.
Which solution meets these requirements?
A. Create an EC2 Auto Scaling group using the AMI image, with a scaling action based on the Auto Scaling group's CPU Utilization average with a target of 75%. Create a scheduled action to terminate nine instances each evening after the close of business.
B. Create an Amazon EC2 Auto Scaling group using the AMI image, with a scaling action based on the Auto Scaling group's CPU Utilization average with a target of 75%. Create a scheduled action for the group to adjust the minimum number of instances to three after business hours end and reset to six before business hours begin.
C. Create two Amazon CloudWatch Events rules with schedules before and after business hours begin and end. Create two AWS Lambda functions, one invoked by each rule. The first function should stop nine instances after business hours end, the second function should restart the nine instances before the business day begins.
D. Create two Amazon CloudWatch Events rules with schedules before and after business hours begin and end. Create an AWS CloudFormation stack, which creates an EC2 Auto Scaling group, with a parameter for the number of instances. Invoke the stack from each rule, passing a parameter value of three in the morning, and six in the evening.
Answer: D