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NEW QUESTION: 1
Which of the following is the recommended method of implementing a regular backup plan for a BI Application?
A. Copy the BI application to a duplicate environment.
B. Back up the production application into the test environment.
C. Integrate the BI application into existing production backup plans.
D. Implement a BI application backup plan separate from other production applications.
Answer: C

NEW QUESTION: 2
プログラムグローバル領域(PGA)とOracleデータベースインスタンスでのその管理について正しいのはどれですか? (2つ選択してください。)
A. 共有サーバーを使用する場合、プライベートSQL領域(UGA)はシステムグローバル領域(SGA)にあります。
B. PGA_AGGREGATE_LIMITは、任意の1つのセッションのPGAサイズに対するハード制限です。
C. ソートとハッシュ結合はPGAメモリを使用します。
D. 共有サーバーを使用する場合、PGA全体がシステムグローバル領域(SGA)に配置されます。
E. 専用サーバーを使用する場合、プライベートSQL領域(UGA)はシステムグローバル領域(SGA)にあります。
Answer: B,E

NEW QUESTION: 3
モバイルアプリケーションで販売注文を作成するためのストリートチームモバイルアプリケーションを設計する必要があります。
どのテクノロジーを使用する必要がありますか?回答するには、回答領域で適切なオプションを選択します。
注:正しい選択はそれぞれ1ポイントの価値があります。

Answer:
Explanation:

Explanation


NEW QUESTION: 4
You are developing a sorting algorithm that uses partitioning and comparison to arrange an array of numbers in the correct order.
You write a method that partitions the array so that the items less than pivot go to the left side, whereas the items greater than pivot go to the right side.
The partitioning method has the following signature:
- static int Partition (int[] numbers, int left,
- int right, int pivotIndex)
Which of the following algorithms should you use to sort the array using the Partition method?
A. static int[] QuickSort(int[] numbers,
int left, int right)
{
if (right > left)
{
int pivotIndex = left + (right - left) / 2;
pivotIndex = Partition(
numbers, left, right, pivotIndex);
QuickSort(
numbers, left, pivotIndex + 1);
QuickSort(
numbers, pivotIndex + 1, right);
}
return numbers;
}
B. static int[] QuickSort(int[] numbers,
int left, int right)
{
if (right > left)
{
int pivotIndex = left + (right - left) / 2;
pivotIndex = Partition(
numbers, left, right, pivotIndex);
QuickSort(
numbers, left, pivotIndex);
QuickSort(
numbers, pivotIndex + 1, right);
}
return numbers;
}
C. static int[] QuickSort(int[] numbers,
int left, int right)
{
if (right > left)
{
int pivotIndex = left + (right - left) / 2;
pivotIndex = Partition(
numbers, left, right, pivotIndex);
QuickSort(
numbers, left, pivotIndex - 1);
QuickSort(
numbers, pivotIndex + 1, right);
}
return numbers;
}
D. static int[] QuickSort(int[] numbers,
int left, int right)
{
if (right > left)
{
int pivotIndex = left + (right - left) / 2;
pivotIndex = Partition(
numbers, left, right, pivotIndex);
QuickSort(
numbers, left, pivotIndex - 1);
QuickSort(
numbers, pivotIndex, right);
}
return numbers;
}
Answer: C